Sélection de la langue

Search

Sommaire du brevet 2199019 

Énoncé de désistement de responsabilité concernant l'information provenant de tiers

Une partie des informations de ce site Web a été fournie par des sources externes. Le gouvernement du Canada n'assume aucune responsabilité concernant la précision, l'actualité ou la fiabilité des informations fournies par les sources externes. Les utilisateurs qui désirent employer cette information devraient consulter directement la source des informations. Le contenu fourni par les sources externes n'est pas assujetti aux exigences sur les langues officielles, la protection des renseignements personnels et l'accessibilité.

Disponibilité de l'Abrégé et des Revendications

L'apparition de différences dans le texte et l'image des Revendications et de l'Abrégé dépend du moment auquel le document est publié. Les textes des Revendications et de l'Abrégé sont affichés :

  • lorsque la demande peut être examinée par le public;
  • lorsque le brevet est émis (délivrance).
(12) Demande de brevet: (11) CA 2199019
(54) Titre français: COMPOSITION DETERGENTE
(54) Titre anglais: DETERGENT COMPOSITION
Statut: Réputée abandonnée et au-delà du délai pour le rétablissement - en attente de la réponse à l’avis de communication rejetée
Données bibliographiques
(51) Classification internationale des brevets (CIB):
  • C11D 17/00 (2006.01)
  • C11D 1/22 (2006.01)
  • C11D 1/66 (2006.01)
  • C11D 1/72 (2006.01)
  • C11D 1/825 (2006.01)
  • C11D 1/83 (2006.01)
(72) Inventeurs :
  • VAN DEN BERGH, CARLO JOHANNES (Royaume-Uni)
  • BIJL, DIRK JOHANNES
  • DUNCAN, DIANE (Royaume-Uni)
  • FALK, NANCY ANN (Etats-Unis d'Amérique)
  • DE GROOT, JEFFREY (Royaume-Uni)
  • VAN DER LINDEN, ERIK
  • MACHIN, DAVID (Royaume-Uni)
  • TOET, WILHELMINA KARIN
  • WALSH, MICHAEL FRANCIS (Royaume-Uni)
(73) Titulaires :
  • UNILEVER PLC
(71) Demandeurs :
  • UNILEVER PLC (Royaume-Uni)
(74) Agent: SMART & BIGGAR LP
(74) Co-agent:
(45) Délivré:
(86) Date de dépôt PCT: 1995-09-28
(87) Mise à la disponibilité du public: 1996-04-11
Requête d'examen: 1997-04-28
Licence disponible: S.O.
Cédé au domaine public: S.O.
(25) Langue des documents déposés: Anglais

Traité de coopération en matière de brevets (PCT): Oui
(86) Numéro de la demande PCT: PCT/EP1995/003859
(87) Numéro de publication internationale PCT: WO 1996010625
(85) Entrée nationale: 1997-03-03

(30) Données de priorité de la demande:
Numéro de la demande Pays / territoire Date
94307166.2 (Office Européen des Brevets (OEB)) 1994-09-30

Abrégés

Abrégé français

On décrit des compositions liquides, aqueuses, détergentes, comprenant une structure de gouttelettes lamellaires de tensioactifs, ces compositions comportant des taux relativement élevés de tensioactifs non ioniques. On décrit en outre un procédé de préparation de ces compositions liquides, aqueuses, détergentes, comprenant des gouttelettes lamellaires de tensioactifs.


Abrégé anglais


The present invention relates to aqueous liquid detergent compositions that
comprise a stucture of lamellar droplets of surfactant material, wherein said
composition comprises relatively high levels of nonionic surfactant material.
The invention further relates to a process of preparing aqueous liquid
detergent compositions that comprise lamellar droplets of surfactant material.

Revendications

Note : Les revendications sont présentées dans la langue officielle dans laquelle elles ont été soumises.


1
CLAIMS:
1. An aqueous structured liquid detergent composition comprising lamellar
droplets of surfactant material, characterised in that said lamellar droplets do not have
internal radial symmetry and comprise said surfactant material present in concentric
bi-layer form consisting of one or more bi-layers of surfactant material that have a joined
thickness which is smaller than the radius of the droplet, said composition comprising at
least 15% by weight of surfactant in a weight ratio of nonionic surfactant to anionic
surfactants that is smaller than 95:5 and that is higher than 50:50, said composition
comprising:
(i) a nonionic sugar stabilising agent containing a sugar unit selected from
apiose, arabinose, galactose, lyxose, mannose, gallose, altrose, idose,
ribose, talose, xylose, maltose, lactose, sucrose and sorbitan;
(ii) at least 10%, preferably at least 15% by weight of solid particles;
(iii) anionic surfactants selected from C12-C18 alkyl sulphate, sulphonate,
mono unsaturated fatty acids and mixtures thereof, wherein the anionic
sulphate or sulphonate comprises at least 3 C-atoms on both sides of the
C-atom to which the sulphate or sulphonate group is attached;
or
(iv) mixtures thereof.
2. An aqueous structured liquid detergent composition according to claim 1,
wherein the joined thickness is smaller than 50% of the radius, preferably smaller than
25% of the radius, most preferably less than 10% of the radius.

2
3. An aqueous structured liquid detergent composition according to either of
claims 1 or 2, wherein the one or more concentric bi-layers of surfactant form a shell
present on the outside of the droplet.
4. An aqueous structured liquid detergent composition according to claim 3,
wherein the droplet further comprises surfactant material present in a non-concentric
form inside the shell of concentric bi-layers of surfactant material.
5. A composition according to any one of the claims 1-4, wherein the composition
further comprises from 1.5 to 5% by weight of a decoupling polymer.
6. A composition according to any one of claims 1-5, wherein the Na+:K+ ratio is
from 10:1 to 1:10.
7. A composition according to any one of claims 1-6, wherein the composition
further comprises enzyme material.
8. A process of preparing aqueous liquid detergent compositions with lamellar
droplets that comprise surfactant material, wherein said lamellar droplets do not have
internal radial symmetry and comprises said surfactant material consisting of one or
more bi-layers of surfactant material that have a joined thickness which is smaller than
the radius of the droplet, said liquid comprising nonionic surfactants at a level of more
than 50% by weight of the total surfactant material, said process comprising the mixing
of water, electrolyte material and surfactant material to create a lamellar structure,
characterised in that thereafter the lamellar structure is subjected to a post-shear
operation.

9. A process of preparing aqueous liquid detergent compositions with lamellar
droplets that comprise surfactant material, wherein said lamellar droplets do not have
internal radial symmetry and comprise said surfactant material consisting of one or
more bi-layers of surfactant material that have a joined thickness which is smaller than
the radius of the droplet, said liquid comprising non-ionic surfactants at a level of more
than 50% by weight of the total surfactant.

Description

Note : Les descriptions sont présentées dans la langue officielle dans laquelle elles ont été soumises.


~0 ~Gl~a6~ ~9JtO3~g
2 1 990 1 ~ ~
D~ ;~r COM~O~}TIQ~
,
.
'r~c!hni~ lsld
.5 ~e ~z~e~enc i~tioJ~ ~la~e~ to ;L~uec~ uid d~t~
com~ i4~ ~ha~ comp~se a ~mc~ur~ o~ ~u~actant
n~te~al a~d to a proc~ o~ prc~a~ a~ueou~ li~L~d
d~t~ga~ co~ io~ that c~ e l~mellar ~ro~let~ o~
~u~Eac~a~t meL~erial.
lU
R~ ~kS~o~ Prio~, ~rt
L~ d~ter~ent co~q~oRi tion~ are w~ o~ che ar~ ~d
of ~ez~ ~reral ~rantages av~r sa~ id c~po~io~ or
ple, llgui~ ~o~,clc~ ar~ ea~lex ro meE~ur~, to
15 d~spe~se a~d to dissol~ o a l;~t~eri;lg llq~lor. Eu~thl~r,
llguid con~o5~t~4~9 ~i~e moro co~ o ~he co~u~or o~
being ~a~r ~nd les~ sh ~o th~ ~J~q~Pfl 4~ re~
textil~ th~c~ solid co~ ait~ ow . 'l~ -13e t~he r~a~on~
.Yhy h~a~y ~uty ar~d iight d~ty ~ullt 1~ A~ ~ i d
20 ~e~gen~ products h~Y~ ~een ga1n~n~ in p~ularlty si~
thei~ m2~ke~ i~t~oduc~lon a~ the ~xpe~s~ o~ powder~
dee~rg~n~ p~ a.
.
r~wo ger~e~al and sepa~ate clas~es o~ c~ ir,ion~
5 is~tropi~ a~ ~tsuctur~d li~ L3, ar~ the ar~
Isc~op~ c liqui~3 are lig~id~ h l ch a~ ingr~die~st~ ar~
di~olvPd and, 4antra~y tO ~truct~red l~id~, ~here 1~ rlo
struc~u~e present in i~ot~lc ll~i~l.
!
Struct~ri~g may be brough~ t to e~dow ~ 0p~rti~fi ~ch
as co.rlsu;~r pre~erre~ ~low properti~ d/or t~rbid
app~ ance. MaL~y structu~e~ ..l~i~ are al~o c~pa~l~ o~;
su~p~n~in~ paxt~cula~e solid, such as par~ic;Les o~ clay
that ~w~y be ~e~ to pro~ride a ~a~ric-~o~t~ ct to
3~ ~bric~ Les of scruc:t~red l~ d3 with~t suspez~d
~oli~s ara giYen i~ ~S-A~4,244, iB~O, whlï2t ~x ~ æ wh~rç.
AMENDED St~EEl

v~ 2 1 9 9 0 1 9 ~ 9
:
~alid p~ciclo~ axe 4u~p~ d 2~e ~clo~ed ln ~-A-~60
3~ A 3~ 10~ A~14~ 452 arld aL~o irl th~
a~'oramen~ozle~ US A~, a~ 4~,
,
5 9~2~c~r3~ }ic~ui~ can itho~ be ~tex~a~ly E~ t~red, ~n
~hich c~ss tbe ~cture i8 Co~d by prim~ ngredl~nt~,
p:~e~erably ~y surYacta~t m~L~erlal, ~ ehey can b~
ex~on:~ally ~tru~ur~d ~n w~ch ca~e ths ~ c~re ~
~ro~fided by ~ ~hree di ~ si~al matr~x ~t~ctu~s u~ln$
10 ~e~o~ary additi1~e3 liko pre~e~a~})ly ~olyme~ sll~c~e
mAterial. E~c~er~lly ~xuotu~ed llqui~ y how~fe~ pro~
~igh ~i~~ y, especially w~n 3tosa~ genoxally
ake~ t~rnally ~tructured li~ z~l o~er
excerrt~ cXuctu~
~o.~e c~ the di~fere~c ki~d-~ O~ lnter~ally ~t~;ctured
are d~Fcrlbed i~ t~e :~e~ere~e- ~tA~ Ba~3e~,
~D~te~ents", Ch.2. ~ X~ ~alter3 (~d), "~he~
r~L~stri~ 7plle~t~.0nsN, J. W~1~3y & ~ons, ~tc~wDr~h ,.9~0.
~0 ~n ge~ret.l, th~ d~gree o~ ordering ~ yst~
i~crea~ wiCh i~creaLs:lng surEacta~t andf~ el~cs~alyt~
C~C~nt:ratiO~I. At ~ low c~c~rltr~ios~ o~ ~u~ac~a~;~
arl~/or electr~lyte, ~ act~ can exl~t ~ ~ mc~lecula~
solu~iaP~, or a~ ~ solt:~tioP, o~ B~e~i~al mic~lle3, ~oth o~
25 th~ olutio~ b~i~g ~c~rap~ c, i ~ hey ar~ ~ot
~ ~ruc tu2 ed .
T~lth addit ~ ozl o~' ~4rt~ fiurra~ta~c an4/c)r ~lac~lyte,
~r~r~ous 3truature~ of ~ur~act~nt mate~lal ~ay ~orm, An
3 0 s~s~ple the2-eo~ a~e lyc~p~ uid ~ call~,ne ~ r~,
TheY~ pha~o~ may e.g. be pre~ent in ~he ~oml o~ lan~ell~r
~rwqture~ or ~n ~he ~on~ o~ ~y~al ~uct~re.
Altho~h ~en~ally ~ein8 d~lne~ aa two o~ a~ore bi-layor~
35 oS sur~c~an~ e~ o~ ~he purp~Je CJ~ ~nt;
~ell~;~ st~ucture3 ar~ ~e~i~eCl as o~ ar xore ~ aye~s o~
p~N;~Er) S~EE~ .

~lY9~19
WO 96~1U6
,
~Ea~t ant mar~r~al. Xawe~rar, pr~f~ra~ly, :L~ll~r
~cruc~ur~s a~rdin5 ro c~c in~entic~ c~tain at 1~ two
~i - layer3 oC aurtactas~ mZL~erial ~h~ce t*o ~i - lay~r~ wall
~o~m a ~ck. T~e l~m~llar ~t;:rUCtU2'1~ m~y exi~ ~n ~ar~ u~
5 ~o~ . l~ne~lar ~ ar structu:res a~ lamellar
dropl~s o~ ~ur~ac~ st bi lay~r~ ltl~e b,~-lay~rs~ ~e
~rlc~ntr~cally s~ack~d~. '
o~d tha~ ~rar~ou~ ter~ a~e u3e~ irl the ar~c ~or
~0 larne~ r 3~ u2~s. ~xas~le~ o~ ~uch t:e~9 aro a.~so~pl~
~ur~ac~n~ eha~ 15 a.g. ~e~cr~ed ln EP-~-57~,7Z3, as~
s~he~ulit~ o desc~lbed ia FtP-A-O, 151., 6a4.
I iquids wi~h la~nellar dre~1-t~ pro~ a. de~ra~1~
co~nbin~lb~ oE ~hy~lc~l 5ta~ility ~4 ~olid-~Usp~rt~na~ :
pro};e~t~ea ~h use~u~ ~low propor~o~, i.e. 1~ ~ o~ty
with ~ta~;Licy. Such li~ds ~re ~ ple l~een
de~rlbed in A. ;rurg~ , Mic~5~eruc~ure a~d Vi~ccsity Cl~
uid Det~ge~t, T~ ide 8urfacta~ t~y~t ~6 ~ 9)
~o 222 a~ ~.C~ le P~, hi~iA Dot~rgen~ e~61~e
Sur~actant~ ~Qc~rge~ a llg91~ 15~.
~h~ di~pex~ed structuring phl~e ln ll~id~ wltll la~llar
~ro~l~t~ of su:e~ac~a~ lal co~ o~ 103~1~ke
25 co~igurati~n cG~..p~l~lng c~ tric ~ y~r~ ~u~ c~t
molecul~3 ~et,we~n which wa~e~ i9 tsa~ed~ Pres~ and
ide~ y o~ bi-~ayer~ of ~ur~actant ~aterial in a l~id
may b~ nD~ aD,s ~c~; to t~.a,~ ~kill e~ 1~ the
a~t ~or ~ rle, ~ptical ~ec~ue8, va~lcu~ r~eor~lca~
~o~ ~naasurement~ ra~ ~r neutro~ dl~frac~ion ~d by ~lect~o~
mlc~cc~y. con~n~rl~ layer~ of sur:~ac~ca~ te~ial cat
be ea~ detec~d whk~ viewo~ un~e~ a t~n~ sY~o~ :
sn~cr~scol?e, ;~C~ ~s a thln ~ h~ es. Addit~onally,
~h~ b~ de~cted ~ing a mlcroscope ~ polarised .
35 ligh~ ~ mal~e~e ~ e~t~nc~lcn ~r~ pea~, th~y
c~nt~7n cos~c~ntric k~ ayer5~ ~on~"tric ~i-lay~ an
,. : .
AMENDED SHEET ! '. '
-
~ T ~ T ~ ~ . ~ . .~ r ~ --T T _ Q~ ~ T O ~.~lll--ll~l ~llW V~l~ O/~ A021

w~ ~ c~ 2 1 9 9 U 1 9 ;~ i~L~
;.
4u~th~r be detected ~ w?Ly o~ Frs~z~ ~'rac~on E~c~cr~
- M:ic~o~copy, a :~le~h~d wall~ own ~o th~ ~klll~ a~.
wo 91~0033~ di~cl~es a~u~au~ ~t~u~ur~ li~ld d~cer~e~t
5 composl~ coull?rl3i~ lamell~r dro~lcto ~f ~ur~cta~t
~r er~al . T~ co~o~ tlo~ co~ lse rela~ ly h~ gh
nc,n~on ls, e.g. 50~0Q~ by ~ei~ o~ ~h~ t~eal
~u~acca~t. The~e llquidc ~aY~ also ~een d~crl~
~h~slc~l ~t~b:LL~ty a~d ~nic~oYt2~cuxe o~ ~nGel7trate~ ;
0 ! dispersio~ r .~iauid-cr~rs~llin~ drople~o
cont;~ r~ no~ionic ~ur~cta~t~ ~n aqueou~ c~rolyte
~lution~ ch~p~rs, ~rO~ ~nd ~7an de Pa~, An~rlcan ~h~r~a
Scc~ty, ~rol. 9, 2Jo~4, ~933~ o~ th~ exemp~led
llqui~; c4~y~l~Q lamellar dxo~let~ ~o~is~i~g c: ~' a~
15 i~o~roplc co~e su~rounde~ ~y co~ce~t~icalïy J~acked
lay~r~, eb ~ p~icular ~lgur~ 4,
wo gl/09la7 d~6crtbes tha ~Y~ o~ hlgh shear ~ the
};;~e~?arae~or~ ~ a~zue~JU~ llqui~ 8oe~esge~t con~lt:lozJ
ompri.6ing~ ~ d~Floc~lt~ g pO~
~0 S~111640~ dl~tclo3e~ aqu~ou~ ul~ u~th la~ellas
~u~c~a~ ~rople~ 1 co~sing l?~ ulp~
ma~e~ial, ~a~y acid a~ ~o~onic 0ur~ata~t~.
~5
~P~A~ 3~6, 3~5 disclo~e~ a~eou~ li$~1~ dete~g~nt
c~T~o~ltio2~s com~ri~ Am~ r d~ ts3 o~ ~r;Cac~a~t
;nate~ial. a~d a d~loeculatin~ polymer h~LYlng hydzchyl~
back~ne ~d a h:ydr~ph~bic ~i~echiirl~ ~e ~y~ scla~e
scxuc~ur~ llquid~ whl~h c~r~t~;n la:mellat~ d~opl~ o~
urf~c~an~ meLt~ri~l.
.
EP~ 3ZB, ~ 7~ di~closos ~cturet li~uld dete~e~c
compo31~io~s whiC;h ~.o~y~l~eo ~0~-9~c~tJl3~d l~
35 ~rfact~ d~o~ pha~e b~ Exa~le~ XIY di~o~
liqui~l& wt ~ ~llar dtoplee~ o~ su~acta~ arlal
.
A~ENDED SHEET
,T~T~ T TC~l q~ T ~ T T -~ 0 .~H.')~13~ i Vd3: ~10.~ A0~1

219901~ ' .
(pha#e cl ~2' A so-called G-pha~e) asld a p~ue ~alle~ the
~isct~opi~ ~ece:~ge~t" which i~ ide~ti~ie~ as p~e 1~
he no.~icnlc ~u~actant ~ n ~ e XItt ~ 50~ ~y
wei~ o~ th~ total su~c~ant.
EP~ 28, ~77 di~clo~ wi ~h ~ms1 l ~r d~op~et~ a~
c~rnpri~l~g ~ n~-ou~ 3;3i3~ u~ra~tant ~late~ial wkich
i9 used as a st~bl lise~ in ~e ~ i~uid. ~lkylp~yg~uco~ld~
i9 ii~l eY ~n~ 2 Or sllch a SO~ sur~acta~c ma~e~al.
~ te~n~ te docume~ 623, ~70 disc~o~ ~id
c~n,pa3ition~ co~ri~ny ~tl~ul~r ~tabili~ors. ~e
de~c~ibed li~uid~ may compri~e hlgh ~ nic l~ ls
cont~;cioee ~al;lt~ piC dx~plets o~ sur~acta~t mate~lal
15 d-ls~r~d i~ a ~o~ uous i90troplc o~ a~iso~op~c pha~o.
~ e st;~uo~e o-~ d~o~let~ ~locculare~ and r~ o
pa~icular s~ oe~ in ar~er to be 1 r~le
;~ocu~ne~t ~' Phy~c~ o~ phiï~s M~cqll~, V~ic~e~ a~
ZC Mi~r~mul~ s" ~y ~e Gia~o ~ ~o~ 5, ~orth
;~lla:~d, di~cloae~ lc~ r l~ s w~th a la~ïlar
~L a~ ~ phase, s~e pages 17-19.
G~ 1, 06~, 554 dls~ , agueous es~l~lons ~ ln~
25 sur~zc~ant, pot~Y~i~m ~alts a~ 9'ca~ili8~ e~ial,
. .
~P A-35J, 01~ diseloa~s a~ueous li~d~ c~ ng a
ie p~se a~d ~ar~ ic ~u~ac~nt3.
~o BP-~-43~,33~ el^~s aqueou~ :Liqul~ with an aD,iso~croE;~e
~o~ ~eat) ~b4lJe wh~eh do ~ot cc2~ iso a ~ol~d ~h~se~
Ee-A-57~,723 diselc~es la~ella~ str~e~u~l c~ .yo~it~ons
eo~pr~3i~ a ~lyhy~ f;~tty ~eid ami~e a~ P-A-32~,177
~5 ~iselo~ses l~m~l 1 A~ ~t~uetu~d ~ d~ earnprl~ g
~a~llising surf ~c~a~s .
AMENDED SHEET
~ r~ ~T T.'~ T ~ _i T -Q~. ~ I n N~lH.')~ i Vd3 . NOA A~

6 j'~n3103959
~P~A-86,614 d$s~10~s a~ueou~ liquid deter~t cotn~o~i~io~
comvri~ing lamella~ droplet~ ur~act~t 3~a~esial th2l~
~y ca~ain n~o2~1c sur~acr~ 22~ oli~ -
p~:relcl~ l~e ~Ye~li~ ds ~c~at ~ ,in ~nion~c
S sux~ac~ wc~rer a~e dilu~d.
We ha~re ncw ~ a phyai~ or~ ~!o~ uld d~t~rge~t
c~po3itiot~g that ~ t O~l~y allGW~ ~re~ration o~ cally
~tabl~ uid~, b~t ~ t a'~ 94 ha~ hi~h ~or~mlati~n
~0 ~l~xibillty aAd ~a~iou9 i:~grad~t8 ~a~ i~cluded wi~hou~
advf~r~e:Ly e~c~ stab~lit~ A ~ur~e~ ad~r~t~ o~ th~ ~¦
li~id ~n iY ths h~gh e~z~ s~
~u~ r, wç h~re fau~2d ~hat l~ d ~e~rg~nt c~pa~t~o~ ~
15 .~om~ l~lla~ ~opleS~ o~ 5t~ri~act~t ~'cc;~:lal,
~er~in the ~ur~ac~ant n~erlal ~mpri~ high ;Lnrol# o~;
, ~oni~c ~ act~e, E~a~ 3h~w ~tabilicy p~b:l~, high
co~i~ies as~/or ~ drift i~ ~he ~ c~ ty u~n ~to~a~e,
isl particular at hlg~2et tem~o~atur~.
~0 :
W~ have ~ur~he~ ~u~ hlgh r~ni~;~: lit~lds cau be
r~pare~p~y~ically ~ le, lo~ cous atld/or havi~g low
~l~co~i~y ~x~l~t u~ to~ago, ~y ~nclu~ a ct;~lli~
age~t, Thu~, wo hd~ i~d tha~ ague~us ~ ete~g~t
~S co~o~it~o~ with la~nella~ draple~ co~"~,Ll~ hlg~
Oe ~ urfac~a~t zna~ca~.al c~ be ~ly ~ atQd 13y
i~cludtng a stab~lising ~o~ i~ the llc~uld. ~ e n~l~c
s~Ar~ac~a~nr CCD.t~-ring ~ id c~c51t~0n5 ~ay ~ither ha~re
an ints~aJ. ~ ial ~y~et~y ~r ~y l~X ~uch ~ ~t~ucture.
30 Th~ ~urf~c~ t in ~ne~e 1~ may ~ e ~ to 100% o~
~onios~ic ~u~acta~, i.e~ haut ~y a~ c ~ur~ac~ant
(x~io 1:0l, but ~nay ~l~o co~ n~t)ni~ and J~l~ lc
~r~ac~ he ra~lo a6 ~peci~'ie~ he~ews~or.
..
35 ~Lrthe~, w~ ha~o ~ound that ~he s~a~illty a~d/o~
de~lc~c~u~a~ lon o~ de~ge~ compositi~n co~ri~
AhlEHl)ED Stt~ET
~T ~ . r~ ' ~Tq~q~lT T~ I : ~ 1i: ()T : ~;-- [ r ~ o :~13HO\I:~W Vd3 . NO/~ A;~

WO ~C11~2~ 2 1 9 9 0 1 9
oplet~ o~ ~u~ q~ant ~aterl~l, ~4~ the
~ur f actant ~er~l ccmp~i~es hi~h levels o~ c
sur~actan~, ~ay be i~:~p~ ed ~y car6~ully adj~~ tho
~od~.um co ~ot~s~iu~ ratl~ he li~id. T~e~ onic l
~ur~ELctan~ con~F~i n~ g liq~id c~o~it~ ons ~aay e~t~r ha~re
an inte~nal ra~al ~Pet~y or choy ~ :Lae~c 3~C~ a
st:cueture. The ~u~7,e~an~ in thesq li~ds nuy eo~nprise up
to 100~ o~ no~ ie ~ aet~ . wi~ut a~y an~or.le
su~~e~ant (rae~o 1:0~ ~ut ~ay ~15~ eo~spr~s~ n~nt~ c ar~
~nl~ic ~ur~actant~ in ~h~ ~3tio a9 3~e~ d her~ex.
Fu~h~x, ~e ha~re ~oursd th;~t th~ illty a~aJor
de:~loeeul3~ion o~ uld dee~rge~t eon~o~ o~ 4c~ri~
lla~ a~oplet~ o~ sus~actan~ ~nat~rlal, w~e~in ths
1S ~u~ tan~ erlal compr~ hish le~.rols o~ nor~ ic
3ur~cta~c, sn~ be im~roved by ~130 ~clud~g ~i~h le~lg
of ~olid p~rticles in t~ 4.
Further, we have ~ou~d t~at ~he physic~Ll at~ll~y a~lor
~o de~locculati~;~, in partScular at hl~h~r t~er~uz~, o~
l~quld d3tez~ge~c con~o~ltlon campri~l~g lam~llar dro~lo~
ac~a~ ~ter~ h~ n t~a 8U~ ,Ct~ rl~l -
c~pris~ high le~ l8 0~ r~ C ~ act~t:, c~y b~
~ ro~d b~ care~ully c~o~ng the ca~diti~ o~ th~
pr~pa~atio~ p~ces~.
,
St~em~ o~ ~te~n~i o~
The ir~ve~tl~ r~r~es an a~uecus structu~e~ uid
~ rye~ cc;mp~ ion com~r~ fil l~,r ~oplets o~ ~ ~
~ur~accant m~ce~ial, ~id ~t1~7o~itio~ cc~rising a w~ht
ra~io o~ :~onloni~ ~u~cta~t t~ c ~ur~ac ~nt~ ~ha~ i~
~maller ~an g5:5 a-~d t~'c i9 hi~h~r tha~ 50:5~. 3aid
p~Yi~7 or~ catn~ri~i~g: :
i~ a ~o~io2~i~ s~ r s~b~lio~:ag ag~ c~neuirin~ a
A~ENDED SHEET

WO 96/1U62S _ P~
8 ''1990~9
suy2r u~ ool~c~ f~c~ ap~os~, ara~i~o~,
~ala~o~e, :Lyx03e, m-llnnce, gallo~, alt~o6e,
ido~e, ara~l3c~, r~oa~, tal~o, ~1~
- maltos~ c~o~e, ~ucro~ n;
ii~ a~ lea~t 1~, pr~i~rably ~t l~a~t ~ by weigh~
3f ~lid ~rticles;
iii) a~:ionic ~u_-~a~ta~t~ ~lect~d ~qm Cl~ al~l
~u:Lphate, sulpha~ate, mo~o ~a~curated ~t~y
acids ~d mix~ura~ th~eoE, w~er~ th~ ~ionlc
~0 sulphate ~ ~ulp~a~e a~ s a~ l~ast 3 c-
atGms on ~th s~dea o~ the C ~t~m ta whlch ths
Etu~p~ate or su~r~qn~t~ group 1~ att~
iv) ~n~ymes; or
Y j m ~ ~ctux~6 ~her~o~ .
The ~ ntio~ furt~r ~oYide~ a~ agweOUJ $t~c~red llgu~4
det~rgent co~po~ n cc~*rising l~ r droplets of
~u~act~nt, ~eln said su~ tant ~i~"~Llse~ e~al
20 presen~ in ~c~n~ric bi-l~ye~ ~o~n co~ ting ~ e ~r
~ore bi-~a~ o~ sur~acta~2t ~aterlal that ha~re a ~ol~o~
~ckne3R wh~ ch i# ~allsr than t~ r~dlu~ o~ ~he -~rople~,
whe~eln the cGxpo6~0n c~?ri~e~
~5 i~ a ~o~ u~a~ 9t.abili41~1g ugeD~ nt~.~n~n~ a
~u~ar ~ ec~e~ ~rom apio~
gal~c~o~ yxo~-, m~no~e, sallo~e, alt~s~,
i~l4~e, ~rabinose, ~ , t~l~g~, ~lo~o,
o3e, }actose, ~;cr~e ~ 90~1 tan7
0 ~ t le~St 10~, ~r~rably at l~t 15% by wei~ht
~ solid par~lcl~;
il~l a~l~nic ~r~acta~s ssl~c~e~ ~rGm Cl~ alkyl
su~phate, sul~hona~e, ~o~a ur~Lturate~ ~ae~
a~ds a:rld mlxtur~s t~r~o~, wher~in the a~ ic.
3 s sulyhac e o~ ~ulphonate ~o~&r~ 9 at lea~ ~ 3 ~ ~
atoms on bo~h s~le4 ~ ~- c-a~ hlch ~he
E~)E~
~_ T . ~ . r~ A~ A A ~ A~ . ~ T r. ~ ~ r r --
OT U ~ Qc~.~aac~-- ao ~ ~ , ~OT c~r~c~ T rc~ ~ Q~ ~ f~ T . c~a--T T--QZ'' ~ Tl~ !~!~LI'~,'~I~IlW V,l~ ~ AO~I

WO g~ltOG2S 2 1 9 9 o 1 9 JClJ~03~
g
,' ~ " '
3~11pha~e ~. 6ulphon~r~ gr~ 3 ~ ach~d;
~) ell2ymes; or
ixture~ r.hereof.
5 rhe ~ n~ion fu~e~ pro~ide~ a ~cc~ o~ pr~a~,g
3OUQ ~ 4~e~ge~t co~ tion~ ~ith ~a~ell~r
droE~le~s th~L~ c~m~r~ 3urfac~azQ~ ~e~rial, aid li~
c~ pri~i~g nonio~ic ~ acta~t~ at n le~tei o~ e th~n 50~s :
by wei~ht o~ 'che ~3tal 3u~ac~a~t ~atar~al, sa:~ pr~ce~3
10 co~ g t~e rn~ g o~ water, elo~roly~e ~at~2riAl a~
su~ tant mat~xial to creato a la~llar atruc~
ch~;~acteri~ed in tha~ therea~ter lamel~a~ srructux~
subjYcte~l co a ~r~shear. oper~ia~.
15 ~he Inv~lon fur~he~ 8 a pro~e~ re~2~1~y
aqu~au~ li~ia deter~e~t ca~osition~ w~h ~ lt~r
~roplets that compriYe ~ur~a~ t 2n~terlaJ, ca~
.o~ nl~ ~ur~a~tarltg a~ a 14~ol of ~nor~ th~ SO~ ~y weighc
bf r,h~ ~otal 3url~Lctan~ mater~al, who~ mixture o~
20 wa~r, ~l~c.~yt3 ma~erial and ~urf~c~ ~ate~ial
prep~re~ ~rom whi~h ~ ~liar ~t~uctux~ t8 cr~a~ed,
~:arac~rl~e~ in ~hat th~ Yi~cosity of t~ ~;Lxt~
i:~c~ea~ed ~y:
25 a~ a~ug~ g ~e Na:~ m~lar ~atio co a ra~lo o~ ~r~n 1~:1
CO 1:10;
b) by ~ n5 E;clytA~ ~:aterial;
c) ~y ~Atn~J at l~a~t S~ by weight 0~ ~oLid l~ar~icleg; a~;d
d) cotnbi~;atio~3 ~h~of.
r1~sc~ pt~on of the Irlrent~
S~ure tha~ la~ks inr~rnal r~dia~ w ~y
35 ~e li~5~ ~oxm o~ ~h3 pre~e~ Jentio~ ~ a~l96
f o~nulat ~ ~n o~ uld de~rg~nt ~osl~io~ co~pri~
AMENDED SHEET

wo~~ ]~90~9 P~
, ,,
relaci~rely high ~or~lonlc ~urfactant l~r~ i~ely
lcw anlonlc ~urZacta~t wit~o~t gi~n~ i~ on phy~ cal
5~ability, h~ g a hi~h ~o~mul~tlo~ ~lexibil~ty t~
varlous i~gr~die~c~ may in~lud~ wlthout; ad~3c~y
e~c~ing s~Lbiiity~ d ~u~ avl~ a high o~yme
s~abi} i~y ~
T~Q c~en~rl~ bi-lay~ for~ o~ the ~u~act~nt in the
dr~o~ o~ the 1~ 6 accordi~3g ~o tho i~ention con~l~t~ ~
10 o~ o~ or m~e ~ yer~ r~acran~ ~teria~ that ha~re a
j oi~ed ~c~es~ ~}sat iB smal~er tha;~ dlu~ o~ ~he
cl~opl~ . Prq~erab~y, ~he j oined ch~ ess ~ tha~
35~ the ~iu~, more pre~erably 53~ o~ ~he ~a~ , mco~
~r~xa~ly sma~er ~han 25% ~f ~he radiu3, irl ~?ar~icular:
15 ~malle~ th&n 10~; o~ the raeiu~.
.
P~era~ly, the ~;w~ ai~ accGrd~ to th~ t~o~
o~e or more conce~rric ~i~laye~ uC~Cta~é
material that ~o~ a shell whlch 13 ~e~nt o~ the ~u~8id~
2~ o ~he dro~ist. P~ferably, ~he droplet ~urt~le~c co~ri~s
sur~ac~a~ e~ial. pre~er~bly prea~nt i~ a ~ ec~n~
~o~ l~ld~ this ~hell o~ c~n~nt~ic bL~ayers o~
~u~a,ctaz-t mats~i~l. This sur4acta~t ma~c-x~zl st~y e.~, b~ ~
ent in ~he form o~ ~t~Ar ~t~tu~ec, mlc~ g,
~olutlon or li~uid ~u~ac~ant pha~. ot~er mat~r~al~, such
alt, ~/a~ and euxym~ Znay al~o he pr~ t iz~8ld~ t2~e
~ropl~t3. Px~e~ly, th~ la;nellar dro~le~s o~ r4aC~
~1~ ~ot con~ olid ~a~;icloa wi~h a ~ize la~ger ~ha~ 1~,.
Mo~ ~r~er~ly wl-~h ~ 5~,Zf~ larger than O.l}~n, mo~t
30 ~ bl~ h ~ siz~ large~ t ~2~
C~mpo~icion~ accordi~g to th:Ls a~p~ h* i~r~tion saay
contai~ ~onionic s~ acta~t~ el o~ 1~0~ by we~ght
of t:he total s~r~acta~t~. P~eE~ y, tha ~a~lc o~ ~o~on~c
35 to ~nionlc sur~ac~ s is 9~nal.1e~ tha~ 95:5 a~ ~.g. ~igher
c~ 50:50. ~o~e p~e~ex~ , eh~ o i~ ler th~
.
~.ENDEI~ ~n~tl:. :
- .

w~ 21 ~ t~
gO :13, most pra~era~ly ~ 5 ~15 . ~¢o~ pro~erably,
the ratio i~ r th~n 55:45, n~o~c pr~ra~ly highor t~a~
60;40. ~tio~ that are ln pBrt:lcul 'r ~re~rred are highe~
tha~ 65:3~, e~. xat~o9 tha~ are hl~ ~ha.n 7~:~0. Por
p~r~o~e O:e thi~ 1 nlrent~ o~ c ~o i?n'l ~nic
fiur~Ctzant ~ hC ~ io~ are ~ on th~ lonic ~o~m oe the
an~ o~ic sur~actar~,t.
P~e~ably, com}pgltion~ aceordir~ to ~~ sp~ee o~ th~ ~
10 in~ tion contain a ratlo d ~ ior~ u2~e~ , h~YiZ~y an
SO~ ~a~ ou~ re3igta~e~) o~ les~ t~ ~.4, ~o a¢~lo~la
` surfac~anta ~hat meec che ~Dnio~ie to ~ oJ~ie r~ti~. S~
d~firle~ hereu~der.
s P;~ferab~y, compo~ieioD, F~ord~g ~o t~ ;pe~ o~ ~he
illtre~ n ~urther c~,p~ X~o~ 1.5 ~o ~ ~y we~g~t o~ a
~coupl1~s p~ a3 ds~1~ed ~-reu~der. We ha~ 20un~ ~h~
li~uids with 1~ell~r ~rople~ a ~ c~ntP~ hig~ le~els o~
~o~ioni~ ~u~fac~ n ~ 3ta~ y us~g r~lati~ely
20 n~h leve1s o~ de~ polyT~er, A~Ch~a~h s~t w1dh~ to
~e ba~ d b~ an~ ch0cry, ~e~ ~olymers a~p~a~ ta s~ a
the a~ve ~ e~ iC ~'C~UctU~ . ha~ fur~he~ .
found th~t sal~d partic~6as~ n~y ~e s~pe~ded in ~ueh ll~ s
a~d the ;eormulaticn ~ y ~.~ th~C~ ~ids i~ hish.
~uldY c~nt~ r~ l~aell~ dreple~s whl~ lack a~ l~te~al
radi~l ~y~try, nlay ~ deteec~d. by way ~ ht o~
e;L~etron miero~co~y and preferably by way d~ n~asi~,
~e.g. ~ilm) or freeze ~rae~1Qnin~ P~q~ably palar$s~d
iJ ua~d ~or l~ght ~ L5~0~CC~ a~d 1~ thut ~a~ no bi-
x~rinye~c~ n in eh~ cor~ d,
depen~ ~ ng on t~ thlck~6s~ o~ th~ bilayers, bi - re~ n~e
ca~ be E~eer~`~n th~ out~id~ ~f the d~let~.
.,
We ha~r~ found tha~ by c~e~ully ad~u~t~ng ~he N~ r
r~tio, ~he a~a~illcy o~ th~ relati~ely hl~h ~C~iO~C
AMEN~EI~ SHEE~
r ~ ~ ~ o~ ~o c~ r. l ~o ~ t r c~ a ~ T ~ - T T ~ T r~ W V,~

WO ~11116:15 9 ~ Pc~rl~ui~Y
12
!14~ an be fur~her impro~ed, P~er~1y, e.~Q Na~
mola~ ~a i~ th~ llqu~ i8 at mo~t 1~ nor~ p:~e~e~ y
a~ moat 3:1, m~3~ ~re~ora:~ly at ~ t 5:1, ~ E~ar~icular
p~e~e~re~ ac l~las~ 3;~ lnC~5t; ;~ P:~e~e~abl~r, t}~e
5 Na~:~C+ molar ra~io 1~ a~ Lea~ , m5re pre~exa~ly at
ie~3~ l jB, ~.o~t pre~rably a~ lea~t 1~5. I~ p~rt~ula~
pr~ferrod i~ ~he malar ~atio o~ at lea~t 1:3. A suita~
mo~r r~Ltio i~ at l~ast
13 . .
gta~ l~g Aaer~ /t-
PreE~rablyl th~ 3ta~ilisln~ a~en~ 1~ a ~a~ionlc ~olyh~ u~
~ca~ilisiDg ag¢nt which con~ai2~ 1 ar 2 sugar u~it.s,
p~e~erahly 1 suyar ~t a~, pre~ ably, ttle M~ unt t
1~ a p~ntose or hexo6~ ring ~tructure~ ~he s~a~i$isi~g ag-~t
preFerably co~ai2~s ~se hydra~r group~,
P~e~ara~ly, ~he sugar unit is s~le~ed fro~ dl~locte~ ~uch a~
~pio~3, arabino~e, ~alactose, lyxaPe, ~n~e, galïose,
Z~ a~trose, idose, ar~ ose, rlbose, talo~"ylo~, maltc~,
l~cto~e, sucrose arld ~o~itan.
Preerab1y, ~h~ sugar ~tabilis-r co~ris~s a~ ~X~
~:id~-chai~ tha~ iB C6 or high;er, ~re~ 0 or ~Lig~r,,
25 mor~ preferabl~ C10 or hi~her; ~rom Q ~o 30 al~ylene ~e
g~oups, p~e~erably e~hylsn~ oxide groupB, may be p~os~
b~twee~ eha ~ugar ri~ a~d the alk~e~)yl ~ide ~hain; as~
th~ alXt~n)~l 9i~10 chain m~y ~e co~nected ~o the suga~ rl~y
or the ~0 g~ou~ ~y way o~ et~er or ~ter bon~g. 30
~re~err~d ~ta~llisi~ ~gencis axe 0the~fi, 6~ r~
of a~ acid ~o~ alcoho~) wi~h an alk~ yl' chaii~ a~l a ~ug~
u~ . ~ exaL~l~ of SuC~ a c~ 8 th~ ~on~ a R2~0-
NRl-Z, w~er~ln ~ a ~1~4 hydrocar~l~ 2~hydroxyet~yl,.
35 ~-hy~o~y ~yl, o~ a ~ixtu~e ~her~4, ~ CS~C~
hy~roca~byl a~d Z is a ~olyhy~o~h~oca~yl k3~1D,~ a
AM~I~DED SHEET
.
C~ Q ~ Q r c~f~q~o T r s~ c - ~ r ~ - T r - Q~ n~ V,I~ ~ N~

13 2 1 Y ~ ~.L~/~U3~'~
l.in~ar hydroc~byl cha~n, or an alkoxylatecl de~Y7,tit~
c~er~o~ es~ comp~u~d~ ~a~ .g. been de~crlbed ~n E~-A-
S7~, ,t~
5 ~ ~re~rr~ sta~ lli3'~g ag~l~t iS a ~or~i~an deri~ratlve,
m~r~ pre;~ra~lY an ~ter o~ ~o:~it~n a~e ~r~e 3r mor~ ~a~ .y
acid~ a~o;~ an et~ af oo~bi~an ~d on~ o~ moro e~
groul~s and/~r a ml~cku~ th2re4~ c ~e~ra~ly, ~he .
~o~bit ln ~ tiv~ haYa ~he ~ol~w~g ~t~u tu~e;
iO
OE~
. ' .
H~
'I I , .
H2C CX- CE~-CH~OR3
O OP.J. '.' '
~ne-rei~
- Rl 4 i~tC~2CH20) n~ 4
and wh~r~in: .
- rl i9 0 t:o 3a, px~ox~ïy to 20; and
- R'l-~ is ~ o~' C10-C20 ~a~t,y acid.
.
25 Sulta~le ccnr~o~ re polyso~ate 20 ~n ~a~, ~x ~c~;~ a
mo~lau~at0 with ES0-~0 ~ ~B~16.7~; Puly~ba~e ~1 fTw~
Zl~, ex ~CI; zL tr~ ate w.itl~ E0~4 a~13 . 3~ blcal
laura'~ ~Spa~ 20~ ex ~CI; a m~l~u:~a~e with an~ .5);
a~d Sorbltan trio~ea~e t9Qan ~5~, ~x ~CI; a trioleate with
30 ~ o~ 1.3).
Pre~era~ly, the ~n,~ohi.tion compri~e~ at lea5t 0.1%, ~x~
prefe:rably a~ l~a~ 0.5~, most pre~erably a~ l~a~e 1. 0~ by
, wol~ e,ablli~ng ~ger~c arld ~e~e~ t 20i,
35 ~n~ o~ bly ~ ~nosc lS9~ 8C ~ e~d~Ly z~ t 10~,
in p~xt~u:Lax at most 7.5~ ~y wei~ht o~ t~e e~ o~,
,,
EIJDED S~
~7.f~ ~ aq~ RR~7. RR R~ I --~7QT qOq~f~T r F~ I I r q: f ) r ~R - T r - ~7 T () N~H.'~N~nW V,~ A~2~

WC~ 0~ CI~/~g~3~,,
14 21 9~0 1 ~
.
..
e.g. a~ mo~t 5gc by wPigh~ of the c~po~t~o~,
~refera~ly, composltio~g ~ccordln~ to t~ a~ect o~ the
- ln~Ltion con~a~n a ra~io o~ ~a~ ic -~u~f~ctanc (ha~ing a~
S SOR of le~s tha~ ~,.) to dnionic ~ acrant5 ~a~ m~t th~
-s~o~iorLic to ~nion~c ~a~tio~ a~ de~ od hereu~der,
Sol:i.d Par~ ic~.es
ur~her e~b~dlment of ~he e~tio~ reLat~ to agueoua I
d deter~erLt ~o~ro~itio~s with larnel~r dro~l~t~ th~
~oznp~is~ high levels o:e nonic~ic: sur~act~t n~t:~r l ~1 a~
wel~ ~ at l~st 5~ by we~ o~ so~ p~rticl~s,
lS ~re~rera~ly, the le~rel ~ ~3ol~ part~ Cle8 '~ ac loa~t 10~ by
woigh~ r~ pre~erab~y a~ leaec 15~ by we~h~ and ~st
er~ly at l~ast 20~ ~ weigh~ P~e~ , th~ le~el
~olic;l particle~ i~ ac mo~ as~ by welghr, m~rs pro~s~a~ly
ar. m~t~ 35~ h~ wei~h~, rno~t pro~era~3ly ~ tno6t 30~ b~r I
2~ w~ig~t G~ t-h~ c~o~itio~.
Pre~era~ly, the ~oli~ p~tlc:le~ ~re 5~ rom; zealite,
s~rP, silica~ ma~ce~ial and~ r~r~ ~rq~ e
pre~e~ably zeol~te ~terlal and~o~ at~ ~;te~al,
yree~ab1y zeoli~e mate~ial.
, ' , ' .
~ ~h~u~h no~ w~ g t~ be ~und by ~y ~h~ory, it i3
b~l~e~ d that solid partlc~s noe o~ly ~*1 tc~ the
oturi~g o~ t~e li~i~ls, i3t~ als~ p~ tjY~ e
3~l, the mo~ar ratio o~ the lons 1~ the li~ o~ ec~
re~ult in ligu~.ds with l~nel~r ~roelets ~ ~ur~;~c~arl~ -
~n~tsr~al ~hat are ~no~s ~table. Mor20v r, we b~ rq that
~he ~ol~ pa~ticlss pro~lde ~ ~u~he~ ~t~:uctus~ng in ~h~
1 ~ quid which e~a~ces the p~y81cal st~1 11 ~y,
Pr~f era~ , aguo~u~ eterg~ c!~;~ it~9~9 ac~ard~g
AMEND~D SHEET
~ Cq T7 1,C~ Q ~ ( ~Q T af~q~ T r ~ T c: n T : qf~ - T r - Q7: ~ T o N~U~ V~.~: N()A A~21

wr~J~lu~zs ~ j 990 1 9 ~ J~
~o tniS ae~p~ he i~ nci~n c~e~-n r~lati~rely ~i~h,
le~ o~ nie ~Uri~5~:~CL~t mat~ri~l cen ;~0 ~o ~ta~le
by lneor~orati;l~ ~olid pa~tie~ d u~ hl~ly
eone~ra~ed 1~5~1d~. Pr~erably, ~he l~ d~ CC~ L~
5 water at ~ leYel e~ ~c ma~t ~0~, m~re p~e~ar~bly. at mo~t : -
~0~ b,~,~ weiç~he c~ ~h4 con~4itia~.
Anianic S~c .s
lq Pre~er~Lbly, c~pogiti~9 a~ca~d~ ta the i~Y~los~
comprise aA~ oni.r su~ac~es sele~ted ~ ClZ-Cl~ ~lkyl ~ .
~u~phate, C~-Cl~ al~cyl ~ r~t~, ~on4 U~CJ~U~ated ~at~
z~cldY ~ mi,x~ure~ th~e~, P~e~sraS~ly, a~oz~lc ~ur~ac~t~
are ~ ted ~rom ~Ar~da~ ~ Cl~ alkyl ~ulphata,
15 ~u:Lpho:aa~ d m~xtures ~herec~, ~o~ };re~era~ly ~ e
an~os~ic sur~a~ta~t~ molocul~ co,..~la~ ~t ~.oast 3 C-atam~
C7~5 ~oth ~1~10~7 ol~ thc C~ ~ to ~h~ t~ sulps~t~ o~
~u:l.ps~or~i7te ~rou~ is atca~ hout w~ g to 3~ ~ou~d,
beli3~0d thac the ~h~e o~ tb.e~e ~ur~ac~a~t~ a~ 9t
20 1~ ~rea~n~ th~ ~cructur~. Pro~rably, tha ra~
~onit~r~ics ~n~ these a~l~nic ~ur~7,c~s ~el~ctQ~ r~
~econ~ C12~C18 alkyl ~ te ~ ~ulpho~e a~ C~C2
-ltty aci~J i~ ~rcm 50.50 t:o 95~5. ~r~ 2rc~r~3.y,
ratio i9 ~malle;r ~an 90~0, ~7e~ ~e~
~5 as ls, Mo~c ~0~era~1y, the r~tlo ~ hl~r. ~haD. s55~S~ ~n
~ar~c~l~ar hi~her tha~ 60:40. ~Le~o~ tha~ ar~ ~r~ ~
par~icular pre~err~e ar~ hl~h~r than 65:s35, o~. ratios
~ha~ a~ra higher t~n 70: 3 0 . P~e~rably, the lelv~J. o~ e
ni~s ~ur~acta~ts i~ at le~c 5~c, mor~ p~e~ably a~
l~a~t ~o~, rnost pr~erably at 1ea3t lS~ ~y ~ igh~ he
c~pos~ior~. Pre~era~ly, ~he level c th~ 2~C~3 -
o~r~acta~ts 19 ak ~ $0%, ~o~o pre~xa~ly at mo~ S~,; -
mo~t ~r~erably a~ U~t 3~ .g~ at mo~t 30% ~y w~g~t o~ :
th~ co~Qqicion. o~n~ an~o~ic 3u~ct~ts nay also be
5 ~r~sent .
AMENDED SHEET
,
~_~ . , . A, AAAL_A~ . T _ r ~ T ~ _ ~ A . . _r~ . A r . ~ r T r~,, T A 1~ U~l~lnl~ ~l A

WO 96~10G25 16 2 1 9 9 0 1 9 ~
P~ep;~lr;~ 7tl P~O~11~9
su~prisi:~gly, we have ~ou~d tha~ a~p7 y~ pa~t ~h~x t~ th~
1 i5~uids of ~he i~rsnti~n lead~ to ~ta~ y up~ ~torage,
even upon ~t~rage ~t hi5her temperatur-~. iar t~e~ ~ur~o~e
5 of thi~ im~entlo~, "po~t-~hear" i~ de~l~ed al~o to i3c~u~;e
"e~n$ian", tenni~olo~y wsll ~ to the ~ki~led man,.
.
P~ hea~ may 5e 2~pl~d ~y wa~ xtn;~ar~ :
plel~com~cer, ~ 3h~a~ l~al~re, a col~oid ~11 or c~ ati~n~
lC the:~eo~, Shs~r rates i~xe pxef~ably a~ le~ 3, 000/~ ar~ ~ ~
pre~era~ly ~ a~ 5, aoo~ a~d pre~era}~ly ~c nlO8t ~0, 000
~o~ an ext~ la~tcrnoter, the l~acX pr~ur~
pre~er~ly ~rom 0.1 to 10 bar ~or a ~ear ~ e and th~
she~ ra~ prsf~ra;~ly ~:co~ 1,0~0~9 to 100, 300~ ~or
15 col' old mll:L .
~uxpri~ ly, ie. ~as ~een ~o~nd that the ~tabllity upon ~ -
~to~ag~ o~ ~elat~y high no~lo~ic llquld~ with ~m 1
droE~lets oan ~e im~v~d ~r creati~g a hlgh ~ coslty
~0 es~ri;ro~ms~t dur~ry th~ natio~ of lam~ d~plet~ c~ : -
s~r~a~can~ mate~ial. Without ~ hlng to b~ bou~d by any
~eorf, tt is ~ell~vo~ c~ he ll~utd ha~ a h~gh
~$scosi~y, the r~ulting li~uld-~ wlth ~amellar d~oplat~ '
will bs mo~ st~bls. It is ~th~r b~ hac ~he
~i~cosity o~ the conti~uou~ phase ~ ~he ~ wltb,
lac~a~l~r dropl~r~ o~ ~u~acca~t materlal, whi~ ~o~ Or
a :~ix~u~e of ~te~ eLe~2olyt~ ~nat~rial witho~t ~he
~urfacta~ t ~e a~ l~?o~ta~e ~ o~ ealiJ1~ ~hi5
stabili~y lmpro~ram~t.
r~lhe ~is~08ie~ oc the coIlti~uc~us ~ha~e. ;~.e. w~r a~
electrolyte zna~erial with3u~ ~urfacca~e ~L~ l, a.~d
ca~e~ue~ly the ~ Llity o;~ th~ re~ulting ll~id. w~t~ ~ ~
lam~llar draplets o~ ~urXd~ t~lal c~n b~ increased
35 :by a mochod select~d Srcm:
.'.
~ AMENDEDSHEET
~Z~:g9*~66Z ~8 fi~*+ ~*81909*01 1~+ : 9:01 36-[T-8Z îo N3H~N31-~W V,~3.NOA-A~

~oY6~1L4~ 2 ~ Y ~0 1 q
~) adj~sting the Na:X n~ol2~r ratio tO a ~atio o~ m 10 1
t'o 1:10;
b) ~ d ing polyrTIer mae~rlal;
c~ by ~ at l~a~ 5~ ~y weigh~ o~ s~ particle~ d
S ~) com~ s ~h~rec7f.
Pref sra~ y, ~h~ ~a~ nolar ra~io in th~ mix~ure o~ w~ter,
~sct~r41y~e a~ ~ura~ t i~ adiu~t~ed to a r~ o~ at '
mo~t ~: 1, more l~e~er~b~y ac mo8t 5;1~ mC~r p~e~rably ~t
1~ mo~ 3:1, e.g. at mo~t 2:1~ P~ rabl~, ~h~ ~a~:Xt~ r~t~
~t :Least 1:8, ~ore l?re~e~ably at ~eao~ 1:5 ~d mo~t
pre~ bly a~ lease 1:3. ~ a~ eio ~g ~r ~ea~t
1:2.
15 Pre~e~ably, ~olyme~ mate~ial ~9 ~dcl~d to ~h~ m~ r~ o~
water, sl~crro}yt~ and ~u~a~ant at a 10~Ye1 0~ f~n o.~ t~
by ~el~ht o~ tk~ mixtu~.
~re~ra~y, ~olid ~rticlos a~e added ~to ~he ~nix~ure ~ ~
wa~er, ~lec~roly~e ~a~erial ~ ~u~a¢ta~t ~Lte~i~ at a
l~re~ o~ at l~a~t lO~r ~y w~ght o~ ~411d ~rial, ~no2~e:
~ ly at leagt 15g~ by w3'~sht, ~ t ~o~e~a~ly at lea~
zo~ ~y w~l~ht, i~ prt~cula~ ~t l~a~t ~3~ ~y welgh~
a~ l~ast 30~ ~y we$ght. Pr~rably ~t ~no~t, SO~ ~y wei$h~ o~
th~ C~CQpCl~ait'l arl.
Pr~erably, ~h~ ~olld m~eriz~l is s~lec~d ~ro~ z~oli~,
ca~e and m~xt~r~ ~he~oo~.
~0
nr. M~
Ce~06irion~ o~ the i ~vention also co~pri3e sur~actax~e
- ma~er~at~ pre~r~:bly ~t a le~v~l 34 a~ lea~ 10~ by wei~h~
oE tho co~po~it~on, ~or~ p~rer~od ~Lt l~ast 15% by welyhc,
35 mo~t prefsrr~d at least 20~ by we~ght ~ the conpoEitl~n;
a~d pre~erably at ~ mo~t 70~ by w~igh~, mor~
AMENDED SHEET

wn 96J1062S 2 ~ 9 9 o I q ~ll~J~!~
~s
.
pre~era~ly ~t r~wo~ ~0%, ~nos~ p~e~erably at moG~ $0~ by
- w~lyht,
~rh~ surfaceaD,'c ~ erial ~y ~c~rl~e ~e o~ ~nar~ :
a-u~acta~t~ s~lect~cl ~rom ~2~ionic, c~ttonic:, ~orlon~
zwitt~rloDic a~d ~q?ho~srlc ~p~ci~, and ~nlxture!~ ther~o~.
~ ?le, they ~y be cho~ any o~ ~he cla~
cl~ea an~ spec~c ~ateria~s ~s~2ibqd i~ ISu~ce
Ac~e Agent~ ' Vol . ~, by Sc~wa~tz ~ er~ nce
~o 1~4~ a~ ~au~ac~ Acti~re Ag~T~t~' ~al.II by Schwart~, Pe~
~3e~ch (I~te~r~ e ~g5~ the ~.i4~ d~ion o~ ; J
~McCu~ch40n~s F~l~t~i~r~ te~gene~n T~uibli~hed by ~he
McC~tc~eQr dit~s3io~ ~ Manu~c~url~g Cc;~ctian~ss ~:~an,y
or ~ e~id-Ta~c~ h ', ~ . Stache , 2~ 2dD, ,, C~rl ~e~
15 ~ ~rlag, ~che~ 4 ~ie;~ sa
Suitabl~ ~o~lo;t~ ur~t~n'cs ~clude, l~ ~aztlcula
~eaccion 2roduct~ o ~otnpo~dfi ha~r~n~ a hydl~h~ e 52
a~d a xeaeri~re hydxoge~; atc~ or ~1~ hat~ c
2~ ohol~, 3ci~, ~ 9 or alk~l ~h~ w~th al~ o~t~q,
~5pl~Ciall~ ethyle~e c~5c~ ithe~ alo~e c~z with propylo~
oxide. ~p~cl~ic nor~ionic dsterge~ cor~F~un~ alkyl ~C~
Cll) p~ y o~ ~scrn~ry ~e~ o~ b~ q~Y ~;lcohols wlt~
et~yle~ oxi~e, and pr~Cu~ y c~ lo~2 c~
2s et~yle2le ~cid~ wi~h the reactlon produc~ ro~ n-
ox~d~ ~ e~:hy~Gn~-di-amine. Othe~ ~o-calle~ r~ Q~C
de~er~o2lt co~aunds ~lude lo~g cha~n ~rtlary ~1
n~i~Q~, Lo~g~chain t~r~iaxy pho~in,~ d di~yI
$ulph~des .
No2^~i.0~ Su~actant~ -
Pre~ ly, con~positio~ acc~rding ~o ~h~ Ln~r~ti~
comprise h gh 1~ 13 o~ noni~nia ~ acta~t w~ a 1
electrolyt~ ~olara~c~. It }~ n fc~d tha~ it .~S
ad~ran~ag~us to u~ ~hese ki~d o~ ~on~ u~act~nts ~o
AMENDED SHEET : :
T ~ ~ T T r~ . . T_~7 . ~ T . r~ T T _ r~~ . T ~ I~ I--r~ rnr~l U_l _r ' I~ n A

W~ U6:~j 21~'~ ol 9 pc~r~Jr~
1 9
~a~ cture oE c~e l i~ s ~E the p2~e~t
e~tio2~.
Compc~ ician ~ ~he lnvention pr~era~y c~lnpri~ no~ios~lc
S ~ ct~r~ h~Ying a:~ ~OR o~ leR~ 6.4, ~rsfesa~ly le~
tn~ 6.~ herein pr9~c~ d ~or electroly~e
~lexa~c~ e:~aed ~he mea~ure~nt of ~ul'clng~out
~5 ~s~anc~ ~S02~. ~or thi~ t~gt, 200 ~ LS pre~r~d o~ a 5%
~y w~ight 3~IU~o~s ~plutio~ ~f e~ ~3U~;3C~U~t ~n ~eee ~ cn .
10 ~riso~ n~ra~o~ri~cetate ~A) 1~ added ~t ~oom
t~ps~a~u~e ~c~ a5~c~ untiï ~ha3e ~epa~aticn ~ccur~, as
c:tbE~e;~r~:d rh0 o~et o~ clou~ h~ o~ NTA adde~
at thl~ pc7~t, ~5 oxprR~0ed ~;c~ gra~ e~alent~ ~dtsd t,4 1
lit~e 3~ ~he ~u~ac~t~ ~olutio~ r ~TA ~ 3 Yq~
1$ the ~altin~^ ou~ re~ ce o ~h~ tactant . Where
con~eni~, th~ abb~ ie~ Sc~ w~ll b~ u~ x ~tl~g-
out ~esiY~a~ce~ : :
'
Pre~era~ly, the weight :ratlc o~ nl~c ~ur~actant w~ a
~C SOR of le~ t~ 6.4 ~ icn~c ~ur~c~ants iY 3malle~ than95:; ~nd high~ t~n 50:SO. Pre~era}3ly, ~e ~t~o is
~L1~ t~ 0:10, mo~e preferably ~alle~` ~,han 25:15. 1
Pre~er~3ly, th~ r2'cio is highe~ t~a~ 55:~S, ~ ~e~ably
~ighe~ t~ ~0:~0, most pre~erably higher th~ 65:35, q.~. -
25 hlghe~ 'ch~ 70:30.
.
~ddi~lo~ally, cc).~c~ r~8 0~ the ~re~t in~ nay
pr~ ra~ly ~rthar ¢~rprl~- ~urfactant meLterial ~Ac~ud i ~
nh~ reic ~uxfacta~ lal~ wi~h an ~0~ o 6.4 or hi~her. .
3C ~lthough nc: t wt~ rJ ~o }~ y as~y t~f -- y, lC ~5
~e:liev~d that a higher l~Yel G~ ~urfacta~t" Wi~h hlgh~r S~R:
n)a~ l~a~ to ~uids wlth dropl~ts t~t ~how inc~ r dial
8~e~
35 Arllani~ S~r~ ,~t~s
C~mpr~ition~: o~! th~ se~ ~nve~ior may ccD,~ain sylltheel~
. : . .
... AM~NDED SHEET
ca~ ~Q ~ hQ rc~nq~T T~ ~q ~ nT q~- T T -Q7~ ~ Tn ~^~ ~nw v~ \IOA

W~ 96/1~6~ 2 ~ 9 ~ o ¦ 9 i~--'TJ~;pr~"'3~
ur~io~ c su~facca~t 1A~ nt~ ~hlch ~r~ pre~era~ly
pr~so~c in co~l.~tl4n wi~h ~he ~bo~e m~tio~e~ ~oD~lon~c
r~Lterials- Sulca~le a~ioni~ ~ur~c~ t~ a~e ugually ~t~X-
solu~1~ alkali m~l~al ~alt8 of organlc ~ulpha~ea a~
5 sulphonat~ hav~g alk~yl r~C~1~ ¢C~ r~m ~clst 8
! tO ab~ carbon ~t~, ~he te~ alkyl bel~g u~ed to
~rlclude ~he al~ll por~io~ o~ hi~h~:~ acyl r~ L~ 8
o~ ~icable sy~ ic a~io~ic sur~actant ccmz~ ar~
sodi~.~m and ~orassium alkyl ~lphate~, e~ci~lly tho~
~0 obt~ln~ ~ sul~haci~g ~lghe~ ~C~-C~ lcchol~ p~oduc~d,
~or ex~npLe, ~om ~All~w or COC4~Ut oiI, 9a5~um ~nd
~otêaa~ium allcyl ~ Q~ be~zene sulphQn~5~ p~rt~ ly
a~di~ lin~ar seccn~ary alkyl ~C~O~C~ en2e~e ~Ul~hn~t~;
~orl~ m a:lkyi glyce~ol ~er ~ul~hates, ~eclally tho~e
15 ~3~he~Y of t;ns high~r al~oh21~ de~iYed ~r~n callow or
cc~o~u~ oil ~ the~ ohals der~Ye4 ~rom petro~
~odi~ l::OCO:~Ut oll ~d~ty mon4~1yc~r~d~ sulp~e~
~ulphonace~; w~i~ a~d po~a~siu~ ~alt~ ulphu~ic ac~d
esters c~ highe~ ~C~-C,,) ~atcy ~ oh~l-a~ e ox~d~,
20 pa~iculaxly ethyl~e o~ re~c~ p~cduct~ e
~actlo~ pr~luc~ o~ atey ac~ds suc~ a~ cocosu~ ~a~t~
~ci~ ~s~e;ri~i~d with i~ot~onic acid ~d ~eu;~ral~zq~l w~-th
~odil~m hydrox~de; scdium a~d ~o~a~ lt~ of ~a~'cy acl~
an~de~ o~ yl caurl~e; al~ear~ Tt~v~t~onate~ ~uC~ a~
25 tho~ de~lY~d ~y reac~g ~ le~ s ~C~qj w~th ~
bi~uLphi~e ~ those ~ri~,re~ reacti~g pa~ w~th
SO2 ~c~ C~ and thon hydrol~sing with ~ ~ase to ~xoduc~ a
ra~d~ su~pho~ate; ~n4 ol~ ul~oDateq, w~c~ te~ i3
~ed ~c desc~i~o tho ma~erial ~at~ by reac~ cle~
30 F~ u~ar;y Clo~C20 al~alo~ins, with SO~ and t~
s2eu~ra~izi~ a~ hydrolysing the ~oa~tio~ pro~uct. Th~
~re~e~red ~n; onic 51~2aCta~l~ CC~tpOU~ldS a~e sodium ~C~C~
~lkyl b~nz~e ~ulphon~tes a~d ~o~ C~- Cl~i ~llsyl
~ul~h~es .
It is al~ po~ible, a~a some~ime~ ~r~er~eqi tO i~cl~de ~ ~ .
.
AMENDED SHEET
: :
AC~I~ . OOI.~'O-- L~O ~11 ~lOTOA~. AT T~ 00 AT O

WU~t~/lU~Z5 2 1 ~ 9~J 1 ~ r~ rJ~ ~Y
21
alkali ~netal soap o~ ~ mono- or di-car~oxylic: aci~,
~ ~c~ally a ~ f a~ acid ha~ g Xrom 12 ~c) 18 carbo~l
a~r~; Xo~ ex~ o ol~i~ acid, ric~olelc acid, alk l~ yl
t~ e~ dodecyl 5UC~ , a~ ~atty aci~l~
5' ~e2-1Yed fro~ ~astor ~ ap~ceed o ~ ', g~ound~ut c~l,
ccconu~ o~ k~Lel oll or mlx~ures ther~ d~
~r p~ iu~ aoa~ o~ the~e a~ids c~ b~ uc~
n~h~r ~sur~cr;~nt r~terial.
10 ~ hl~ ig ~he u3e o~ 5alti2lg t~ eigtar~t active
ial~ such ~6 :Eor ~ 10 d~c~ibz~ in ~P-A~,328,1~7,
esp~cially the u3e ~f allsyl~olygly~5ide ~ur~ct~z~ts ~uch
as ~or ax~;~pie diYclG~ed i~ ~P-A-7~, 074 . Al~o ;~lk~rl ~ono
g~uco~id~s may be used. Pu~ther, ~ yl gluco~e ether may be
15 u~ed ~L~/c~r ;~olyhydrox~ ~ae~y a~id ~ a~ d~scrlbed i~
~00 ~0~1~7, ~nor~ pD~rticular the ~ use~
Exampl9s th~reo~.
lPctrolyt~
20, Com~c5it~ s a~o~di~g to the inv~ntion m~y ~pt~on&~ly al~o
cantai~ ct2~1y~e ~n a~ amou~t su~ le~t ~ b~l~g a~ou~
s.~ucturing cE the deterge~t actl~re ~ rlal. ~e~ra~ly,
t~a ct~ ia~ con~ ro~ 0~ ~referably 7~ o 60~,
~p~c$ally ~rom 5~ x,~ly 10~) t~ ~L5~ ~ a Ja~ g-ou~
25 eïectrolyte. S~ y ou~ trolyte ~as th~ nlr~s
a~cribed i~ ~pec~icatlon ~!P-A-79, ~46, that i~ al~
~lactral.yc~s ha~ lyotro~ic n~er o~ l~s~ t~ ~.5,
preferably le~s ~ha~ 3 . O . Prefex2~ed ~alti~g~o~t
eïectro~yteY are ~ole~c~ed ~r~ alkali meta~ a~ ~o~ium
30 ~lt~ o~ ~h~pha~ clutln~ py~o, ortho and poly
pho~phats~), silicates, b~r-6~ta~, c~on~e~, 3~1p~t~,
~itrat~ ~itriloacecat3 a~d ~ucci~uLce~.
. .
Ruilder~. '
35 ;~ is pre~rred that c~np~ ~ ti~ns according to t~ pxo~a~t
i~ i.nclude dete2ge~y b~ ns~ri~l, 30sn~ or ~ll
AMENDED SHEEl
TC~I ~ C?~ C'-- ~0 ~1.1 l~T~n~ T rc~ r . ô~_ r T _O~ . T;~

2 i ~ Y O 1 9 ~ '~35'
a2
!
of w~cn m~y ~e el~c~r~lyte.
Exa~les o~ ~hoc~horo~ cn~ta~ ng in~r~anlc ~er~e~cy
build~r ir~clude ~he wat~r- soIul~ alt~, esp~cially ~
5 ~ecalpy~op~;os~ztes, orthoph~phate~ ypho~)~tes and
~ho~h~na~e~. g~eci~.c exa~pl~B o~ lno~ga~ic ~lo~p~ate
builde~ ir.clu~e sodl~lm and potas~{~m ~ripoly3;~osphate~,
~h~sph2te3 ~d hes~rn~ h~?hate~ Pho~ph4n~e ~ R~ra:clt
buil~ero m~y ~ïno be wot. SQt~ lc i~ h~
lC p~e~e~ n~ e th~ aur~nt o~ ph~h~ ~lldo20.
~a~r~ e~ o~ or~ phcsphcnl~ ~cont~ i n Ln~ inor~ c ~a~e~e~
buil~esrs, whe~ presle~ D.clud~ wate~-801~ble al~;Llt ~net71
car;bonat~s, ~ r:~on~e~ L~ca~e~ ~d c~y~tallln~
1~ ~hous ~ ilicates, Specl~lc ~plea i~clu~
sodiu~ ~r~o~ (with o~ w~thaut calci~e g20dJ~ tas~
carbcn~Lte, 60dium a~ put~ ~n b~c~r~tes, silicates an~
1 ite~ .
20 ~Ampl135i~ 0~ orgaz~ic ~leterge~ ld~rs, whe~ ~eflo~:t,
ln,clu~ the alkali~e met d ~ub~t~t~d
2Ut~tl4~1iUm pclyac~tate~ o~at,cs, ~O~yc~r~Qxylates,
p~lyacetyl carbo~ylate~ a~ ~lyhyd~ rs~lFh~te~
8~f~Ci~iC sx~es i~c~ iLun, potas~a~um, li~h~
~5 ~ a~d substitu~ alt~ ~f ethyl~e~ nP-
tet~aacetlc a~cid, n:i~rl~ ot,J:l~cetic ac~d, oxy~i~uceiD~e
ac~d, melitlc acid, b~ ene polyc~oxs~lic acid~, Cl!~8,
~rSrate ;~o~;o a~lCCin~te, tar'crat~ di ~cCi~ate and ai~rlc
. Ci~ric zcids or salts th~rQc~ ara p~e~e~red bu~lder
30 ~n~Lcorials for u~ç~ in com~c~itio~ o~ ~he inve~:t1~n.
In tho co~text o~ or~anlc ~ilders, it is al~ sl~Le to
l~cor~ora~o po~ner~ wh;lch are only ~a~tly ~ls~o:ltrecl, in
~he aquecu~ cc7~ 0us phaso a~ deec~bed ~r~ EP~L 3Cl,88~.
~5 '~h~ ~ allo~s ~ c08i~y ~educ~io~ ~due ~ ~h~ polymer whi~h
1~ d~ss~ d~ whil3t incox~oxa~l~s ~ ciently hlgh
~ E~E~S~E~t
a~RRQ;~ ~Q R* l : ~Q T q~-q-b~ l T ~ qq - O T qR--T T--Q~ ' T O \I~I~ ll lW V~1~: !~10A A ~

W~ 2 1 '~ 9 0 1 ~ ~ ~ P~ u~
.
~nou~t to &chie~ ec4~da~y be~e~t, 3~ecially ~ulldi~g,.
~ec~ the part ~h~ch i6 n~ dl~sol~ doe~ not b~i~g
abou~ the ~t;~ility t~a~ would o~cur if sub~t*n~ ly ~1
we~al dis601v~d. Typioal am~unt~ are fron~ 0.5 ~o 4.5~ by
S w~ight.
ere:~era~ly the le~el o~ non-soap bullder ~zLt~rl~ c~
5~0 ~ w~ight ~f tk~ ~nposlt~on, m~re pret'~ d ~om 5
t~. ~5 ~ b~ welgh~ o ~he ~:o~po9itio~.
~O
Decou~l :inq Po~rler
Pre~e~ably, composltio~ ~cco~ o the p~ese~t~ ln~r4~tio~ ~ ~
t~2e~ comp:~i9629 ~rom 1.5 to 5~ ~y wei~h~ o~ a A-c~
~oi}~ r ~el~te4 ~x~m de~occula~g ~ol~mor :ha~ a
1~ hyd~ophilic back~ d ~e ox mq~e ~yt~o~ho.bic side~:
c:h~iz~, o~ bein3 a ~lock c~oly~r havi~g al~ers~ati2~
}.ydrophobic and hydro~hill~ groups, or haYlng 210~ ~C
a~d io~ic ~llel~B.
'
20 S~ al types o~ ~e~ cu~d~g paly~re;~s ~a~e ~e~
d~c~ d ln ~he ar~ . EP~A-3~L6, gg5 ~8crl~ e~loccul~t~
po~ rs ha~i~ a l~y~l~ep~ c back~on~ a~d o~ or
hy~rophobic 8~,d~ ~h~1~q, t~0 91~06622 de8c~$~e~
~Xlocculzt~g poly~ra ~el~g a ~lock copolym~ c~ t~g
~S ~ alt~ ng hydroph~c ~ hy:lr~ ilic ~;~uU~, W0
~l/O~Z3 de~crlbe~ de~locculatlr~g ~alym~r~ COXI ti~
~a~icrLic r~onom~rs and io~lc mo~o~nar~ ar~d G~ 2 237 ~13
describe~ de~loccu~atir~g ~lym~rs co~letln~ o~ ~
hyd~opkcbic h~hor~ a~d one or laoro hydr~ c ~ide-
30 c~ s.
,
Prefer~bly, the de~loccul4ting p~:ly~e~ er~s~t a~ alè~ o~ ~rom 1.5 to 5 '; ~y weighc oi~ ~h~ ~o~t~on.
3`5
P~ bly, sompo~i~ion~ c~ ~he ~0~2at i~re~tlon a~
, .
AMENDED SHEET
. . .

~ lLo~; 2 ~ ~' 90 ~ 9 ~` f~;~5'1~
2d~ .
cc~cenCr~C~d. ~rhore~re~ the w7.t~r le~ol in ~he 11quid,
~e~e~ comp~s~tio~ ~cor~g to t~! E;r~e t ~ tlc~
i~ ~re~e~abiY ~t l~st 10~, mo~ p:~efe~a~ly a~ l~a~c 20~,
mos~ pr~er~bly a~ l~aat 30~ by welgb,~ ~ th~ c~si~o~
and pr~erably at m~8t 60~ by woig~3t, nlo~ pr~ exa~ly a~ :
mo~t 50%, mo~t pre~ra~ly at ~no~t 40~ eigh~ of the
~n~osition.
O~o~lal Ina~0d.i.~
A~t ~ sn th~ i~g~ed~e~co al~aty m~t~one~, a ~er f ~¦
. opt~onal lnyre~iqnts may al~c be ~e~ r ~a~e
lat~q~ booscers such a~ no~ , p~c~a~ly the
mo~tha~olamld~s d,~ri~ p~lm k~z~el faety aclds a~d
coc4nu~ faety acid~, la~h~s d~rQ~nt~, oxygen~ relea~ng
ble~ni~g ~ such ~ m p~ r:~ts a~d ~odi~n
perca~a~a~e, p~raci~ hleac~ ~rocu~3cr~, ~hlor~,e-releaal~g
l~le ~hi~ a~ uch a~ trichlo~l~ocya~uric acld,
i~o~ga~ic salts ~uch a~ sodili;r. sul~te, a~d, usua~ly
~0 pres~A~ re~ r~ o~ amou3t:s, ~luo~c~t a~t~,
per~umes, enzy~es la~c a l~,rel of 3.5 5~ ~ wei~ht) ~u~h 3S
protea3e~, ~la ~ pas~ (in~ludin~ ~lpoLa~3e ~
Ma~k) ex Nc~c), enz~t~ 3tal:~ilixe~5, an,t~ pn~lit~Cn
ag~n~s, g~z~ R and colo~ts, O~'OU3~y ~2~ sel~c~
~S the mat~r-l~Ls ~tn~ ~han ~e pol~r for u~e in
co~poYi~ion~ o~ e~e~on, a~o bi~degradab~e ~at~r~a~
~r~ preeo~ed ~ox en~ l reasa~s~
;.
Pr~uc~ Pr~rtie~ ~
Co~np~sicicn~ o~ th~ .v~nt~o~ pre~rably ~a~c ~ co~y
~f Les~ ~n ~, ~0~ mPas at 21 9~ or~ pr~err~d 1~5 Ch~
1,5~0 mPa~, moo~ ~efer~4 le~ thc~ 1,300 ~a~ gher
th ~ 10~mPa~, especially pref~rre~ ~etwe6~ lC0 ~ 75û mPa~
~ 21
c~ icions a~co~di~g t~ ~he in~tlt~n ~e
Al\~ENDED SHEEl
~7~.~:q.'~7r7RR~7: Rl~ Rbl ( ~7~T~()~70r Tf~+ : ~5~ R-rr-R~ i N~lH~N~ d~-NO/~ .'\~:)~1

W~ ~f1062~ 1 ~J 9 0 1 j ~C'L~/~.WW~SY
phy~ic~Llly ~ a~o a ~lativ~ly lo~r lfiscoslty, ~n
- ~he corltext o~ the E~es~nt ln~ren~lo5~, phy~ ility 1~
d~ La~ o~ th~ ~A~ m separatia~ co~pa~le wi,th -
~1109t ~r~a~ur~g ~ reta~ r~n~cq ~le
5 co~n~s~ ~lon~ will ylel~ n~ more th~ 10~, p~ ra~ o I
~n4re than 5~, ~gc p~eEerred zlO mor~ tha~ ~% by v~
pha~e seya~ation a~ s~i~Pr~ y a~ea~ o~ 2 o~ re
~e~ara~e pha~e~ when ~cred Eit 25~C ~or ~1 d~y~ ~r~m th~
t~me cE pr~parat~
~0
P~erably, li~id c~ros~ o~ 0~ Ch~ ~n~r~n~on ~ ve a ~i
o~ between 6 ~r~d 14, more p~e~err~d ~rom ~ tc 13,
especially pre~erred 2~m. 7 ro 12
15 Pre~ex~ly the pH, as pro~r~ ded tc the wash ll~ucr, ls a~
l~a~t 6, moxe ~re~ ly ~t; lea~t 7,5, ll~0l3k ~r~e~ly at
least ~. Pre~ra~l~ t~e p~ i8 at mo~ ~2, ~r~ pr~erably
a~ o~ r3~1y ~t mo~e ~,
2 0 ~etho~l o~ P~p~rat i~
Ap~rt ~ro~n th~ a~ove ~e~t l one~ ~ro~ pr~p~ti~n, a
p;:e~e~ed ~ethod ~or ~he ~r~pa~at~ on of ~quid det~ge~
co~r~os~ons in~al~es ~ch~ pessing o~ the elec~rolyt~ ~ ~
i;~edient (i~ ~re~euc~ ~agether ~i~h t~e minbr i~gr~t~ t~
25 exce~ or ~he ~ rature s~ ive ingred~ a~y~
~r~ wa~ o~ el~od te~ ratu~ oll~w~d ~r thel add~tion
o~ ~h~ er ~t~al~ , the d~t~5er~t acti~e
m~toeri~l ~p~lbly ao a pre~$x~ rlrls a~d
th~a~ ~r cooli~g ~he m~xtLIra and ~ any te~npe~ature
30 8en9i~i~re tni~or ingFe~l~c~ ~u~h ~8 /s~a ~ tc.
Th~ d~ c~lati~g polyme~ or ~le ~e added a~er
th~l ~le~roly~e ingr~dle~c or as the ~ ingredie~
Pre~erabl~l, the de~ ol~Z~ are elCl~d pri~r to
the Eo~ on o~ ~he le~ll~ ~ctu2~.
~L~ use ~ d~ter~e~t cam~it~ons a~ ~he ~ lcn wlll ;~ ~
p~ENDE~ SHEE~
U,~ 5' ~0 ~ ~QTaf~a~r r~l : Rq:nT : ~R~ RZ:: 10 N3H:~N:~l.lW Vd~:NO.~

W~YbllUOi~l 2199019 ~r~^
26
dil~ed wi~h t~ r~h w~r ~o for~n a wash llquà~ ~or i~sta~ce
~c~r u~ ln a washlng ~aehi~e. T~ ~o~centrat~o~ o~ l~quld
~erg~nt com~?o~itio~ i~ the ~h ll~r ~g ~r~era~ly ~ron~
0.1 ~o 10 ~ 3~r~ p~:e~red ~om 0.1 to 3~ ~ w~ght.
~:he in~v~ti~ will ~ow ba ~ st~at~ y waLy o4 the
~ollowiny ~n~ lixlting ~x~les .
p~ E~E~) S~
A,A , . A _ A~_A A ~ ~ r~ T ~A~ T T A ~ . A T . ~A _ T T _ 05' . r A ~ ~LI ^~ lnlA;

wt:~rwlu6~ 2 1 9 90 j 9 .. ~ .P~t~
.
EX~MPhB~'
~x~
Th-3 f~llowing co~..yo3$tions were pre~ared ~ s~ g ~he
S lng~dien~ h0 ord.~r 1 i~tad
FORMl~ TI~ ( i n wt ~
Watqr 16 . ~3 1~ 3
~CO~ Sol (~s~ .27 13 . ~7
Citric acid ~a~hydrous)7 . ~ 7, o
Glycerol ~ ~17 ~ . ~7
Borax a . g2 ~ . g2
Ze~lit~ 1~ . O
P~ 8~ . . S 1 . 5
l:~S ~cid* 6.25 5.~5.
r:ob~nol 23 ~3~OE~ 2) 13.33 13.33
~c~ 3 E6.~ 3) 13.33 13.33
~5~ 0* ~ ~.0
M~ n~rs 1. 8 1. 8
Ph~se sep~rat~ (d~r 2
moJlths ~ 45~C: i~ ~n) 0 5
Na ~ ~ X I ratio 1~
.
~S ~ Th~e ir~:Ce~ eD.C~ we~e added as . a ~remlx
1) Pslym~ Al' oi~ EP 346. 995
Cl~ t~ C13 ~ni~niç ethoxylated with on ~ ~63 3 EO
~ou~ x Shell .~
3) C12 ~o C13 nonionic et~4~ 0~ wlt~ on ~e2~ago ~.s ~O
30 groups, ~x Skeil
~ Sor~ta~ lauraee, ex ICI
Th~ com~o~ition w~h tl~ s~abll~s~ ~hawed no phase
~ eparatic~ wi~er~PS the composi~ior~ wit~cur haCl a 5
35 ~eQa~Ltion up~ r~g~.
:
....... ~ ..... AhtE~lED S~t~T
~ .:
~#: S'9bb668c. 68 6~+ ~81909~011~+ : 65': 01 : 96- 1 1 -8~.: 10 ~13H0~ Vd~ 10~ 0~

~ 2 1 9 9 o 1 9 ~-~.r~3~3~
~0
: .
~x~un~le ~
T~e ~o~lowl~g ~orn~ iotls wer~ ~repared by mixing tho
d~e:~s~ ~ c~e ordor lis~ed.
,
~ hA~ON ~ by we~ht ~ ~ 4
Wa~e~
Ci t~ic ~cid 7 7
Z~oli~e 18. l~
P~lymer 1 ) 1. 5 1. S
10 Spa~ ~5~ 5
P~c~lve~; 6~ 33 . ~,3 .
5e~aLraeioz~ (in mm)
la~CB~ ~ weok~ ~c ~ O
ial Yi6cosi ty
(cp at 25C'C a~ 21/sj 146~ 2:50
sc~s~y Dri~t 540
~p a~tex ~ weelc~) .
S ~ Sor}~it~n trlolea~e, ~x :~CI
~0 6) ~re:a~x a~ $n B~le 1 wit,~ a ~ Ag r~ ,Ra~ 80:20
rrhi~ ~x}; ~r~e~t shows chat p~o~uc~ f'or~ tioD,~ ~T th
~ta~ w re~ Y~coslty ~ ts.
S ~ 3
Th ~ollowi~g ~o~ t14~s Wf~ prepa~e~ by m~x~ th~
~3gz edienc~ ln t~:e o~der l:l~tod ~
~ORM~T~r~N ~ Wt 1 . 5 6 7 a
w~c~ ~o 1 oo
3 ~ C~:t~lc ~id ? 7 7 7
~aoli~e ~8 ~ 13
Pvlym~r 1~ 1 . 5 1. ~ ~ 2
Stabil~er* 2 7) 2 8) . 4 ?l 4 ~)
Active le~rel~ 9,) 3i 3'~ 31 31
!~, a
A~EN~D SI~EE~ ~ I

WU '~ tJb',1!1 2 1 ~ ~ C i 9 . ~4r~w~
2~
~pa~ ~Lt~o~ ~) 0 ~
I~ie_al ~i~co~l~y
ti~ cp a~ 25~C
at 21~) 14ZC i430 1770 17~0
S ~ cosi~y r~ri~
, C~ at ~,5
a;~t~r 4 we~k3
ac ~ 2 ~0 2~0 250 27
.
lC ~ T~ese ln~e~;ts ~e~: a~ded as a p~ani.x
7~ Span 85 ~hich i~ it~n trio~aa~ ~}~a ~ x ICI
~ ~p2~ ~ which i~ ~ox~ita~ mo~olaura~e (HLB 8.6), ~c ~C~ :
9) ~r~Fix ~co~dl~ to ~c~ e 1 ~ a 2~t~ ei~ ~la
w~ 8~:2~.
Al~ fo~rnulatios~ Y~ l8~;7g the ~tabillser shaw sood
stabili~y, ~ow ~sco~lty ~ a ~ow viacosity ârif~.
Exa~lRLe 4
The :Eol~ow~ o~ulacix8 wore p~ a~d ~ ~ the '
in~redl~:at~ the order listed to wate~.
FO~ATION ( in ~wt ~ ~ 10
Water b~lan~ ~ ~A
2 5 Cl~lc Acid 1~ 1~
Z~oli~e 13 . 3 ~3 . 3
PCP 1.5 1.5
9tab~ er~ 2 ~ 0 10
Acti~re level ~ 33 3 3
~0
~opara~i~n
~a~e~ 4 ~e~ks i~ 4
~lsc3si ty d~i~ t
C 2S4C at 21/B1 ~8a lBO
35 ~afr~r ~ woek~ t)
AMENDED SHEET , .
~ ~ . t I . A ~ _ T T ~ -- . T A

W~ UO~ 9d r~
T~ese ingr~dien~s wo~e addea ~ enlx
~een a~, S~r~itaJ~ ~lo;~olau~ate, ex ;~C~
11~ P~a~ rl~ 1; NX~ ig~t ra~o w~ ~0:~
5 Althou~h ~Ot co~pl~tely co~ara~le, t~ ~rr~ a~cion~ with
~h~ a~ablllse~ has lowe~ D~lpl~r2~tiO~ a~l lower ~iaco~ty
d,ri~t llpon utora~e.
l Thi~ stra1 e~ ~he be~e~t o~ ~0~ ~he3~ a~ ~he
uEe ~ ~xic~u~ st~bili~er~ in sta~ atio~ u~ ~igh
;c ~o~ o~:s. ~he com~6i~io~ w~ p:~p~e~ ~y
~dding ~he i~g;~dient~ in the c~e~ l~c~d a~ a, t~.~r a~re
15o ~ 5 0 5 ~ C .
POR~ ~ N 11
Wate~ tO 100 to 100 'CO ~t~O ~0 100
ICO~ ) 16 . 71 16 ~ 71 '1 6 . 7l 16 . 7~
citr~c ~c~ d 9 ~ . 14 9 . 14 9 . 14
~0 Glyc~rol 4.17 4.~7 4.17 ~;.17
~oruc 2,~2 2.92 ~"~Z 2~92
So~ icarbon~to 3 . 5 3 . 5 3 5 3 - 5
~e~ e 4A~as lO~) 13 . ~3 13 .~3 13 . 3~ 13 . 33
~oly~er A~ 33~ 5 05 S.05 5.05 5.0S
~5 ~AS a~ 6 . 2~ 6 ~ 2S 6 . 25 6 . a5
9Y~t CrU~C ;~ 3 . 33 13 .33 13 .33 13 . 33
S~rA~ A7~ 13.33 13.33 13.33 13.3~
Stabili3er~ ~on~ 2~ ~P ~5 ~ 'rW 20 2~121 ~ :
~OO~ tO 30C 7~ 10) 12)
~0 ;P~LrU~ 4 . 0~4
'
p~ g.1 9.1 g.3 g.3
.~a~ Kt~ ratic~ 1.2 1~ l.Z
~h0~2 1~g~dlon~ were adde~l a~ a ~:~lx
3S 1~) Tw~e~ 21 ~s so~l~a~ mono~ trat~ ~i'ch 4 ~0 ~U~5,
AMENOED SltEET
C3~b~ ~Q ~ QT~(~171~T T~ : f)f): i l ' ~f~- l l -Q7~ H~N~llli\l Vd~ NOA ~

WO ~ 6~5 p~ J,"5J ~
~1 2 1 Y90 ~ q
Un~h~ d
';;~i'CJ Al ~iscosity ~sr~a~l) 1250 ~990 ~949 14sa
Y13co~ity ~4~ a~ ~a~ ~ 1420 18l30 ~060 ~ 14qO
Visco~i~y ~4iW at 50C) 1700 ~350 2300 ~ 0
.~ean se~ ur~ng A W 20~C ~.2% ~.2~ 2.0
Mean 3epn. d~in~ ~W 504C ~.6~C ~.0~ ~.8~ 3.4
Pc~ ~ d~
0 ;~n1~ is~o~ity ~mPa~ 1330 20~0 2~0~ 14
Visco~ity ~4W a~ 20C~ 1550 '690 ~010 125~
Mean sep~. 4ur~g q W ~0C z~ zero z~ ze~o
M~an sepn. duri~g giW 5~4C ze~o z~ro zero z~
~xtru~ pla~tometer use~ ~o del~ r a ~h~r oif
10, 00~ ~c~
~xample 6
~0 1~ pro~rides an ex~:~ 5~ high ~o~io~ic ~o~il ~ti~n~ d
~11UOE~r~S the be;s~e~it3 o~ the pr~fi9~ o~ ~ol~d ~a~t~cle5
a~ u~ o~ po~ s~iear. ~he c~~ Q~ 4n~ were ~re~re~
~y adding t~e ingrediant~ he ~2~der l~ sced at
tempera~u~e o~ SO~SX~C. Apa~ o~ the ze~l~te ~vel~,
25 E~ ul~io~l~ lS an~ ~6 a~e eq~ilra~nt, ths ingre~l~ e~to
comp~ c102~ 16 are ~resen~ ln che ~ io a~ in
composi~on 15 .
~o~ l atlo~ 15 16 17
.
l~iY:S9~ hf~. hR f~+ l ~Rl~ l [~+ ~ [I : '~h-ll-R7~ 10 N~H.'~N~iiW VH~I NO,~

W0 Yti~002~ Z 1 5i 5~G 1 9 ~~v.J~D
32
.
Wator t,o ~00 to 14a to 10
X~ 490 21.43 16,92 ~ a
Cit~ic ac~d 10 . g7 9 .14 S .14
Glycerol . 5 . 0 . ~ ,17 4 ,17
~4~ . 5 ~ . 9~ ~, g~
S~dium 13lcarbor.ate 4.0 3~33 3.33
Zeo~ite 4A l~s lC0~ - 13.33 1~.33
~olyme~ 33~) ~.06 5.05 2.S3
0~ acld ~ .5 6 . 2S ~ .2S
~0 Synp~ro~c ~ 6.0 1~.33 13~33
S~per~nic A7~ ~ 13.33 ~3.33
Sili~cne an~i1'o~m 0.2 0.17 ~. 7
p;~ 10.3 10.5 10,4
lS 2~a~:K~ ~ario 1:~.3g 1:1.15 ~:1.15
~nshear~d
iaL vi~c~ y ~*a~ s 1~8S ~ ~0
cosi~y ~4W ~ Z0C) 605 13~0 ll~a
- Vi~ 05i~;y ~4W at 50~C~ 4~0 1~0 1~94
~0 Me~ 33pn . - 4W 20C 1. ~ Z~ro 1.0
Me~ ~ep~ W 5~C 10~094 0.~ 1.29f
PC1~3t ~he~r~
~nlria'~ visccslty ~mPaa) Sl4 14~0 8~0
~iY~o~ 7 at 20DC~ 6~0 1360 ~200
as ~o~n ~epn. - 4w 20C zero ~r~ zera
Mea~ 3eF~ W 50C zero z~ro Z6~0
~xt-rusio~ pla~tometer u~;a~ ~o deli~e~ a 3he~r c~
10, ~00 3ec ' .
3 0 E~a~l ~ 7
Thas illu~t~t~ t~ be~its o~ ~siP.~ high~r Jol$:1 1~ol~
in a hish ~ ior~c SormLllatio~.
Th~ con~posi~lon~ we~ prepared ~y ~At~J he~ r~d~e~t~
: ,
.
.
AMENDED SHEET

3 3 9 1 9 ~ ~;3P5~
,.
.
the ~rder ~isted at a cemperatu~e o~ 50~S5C.
ion l ~j ~ 9
~a~er ~o ~00 t.o 1~0
~COX t~ .27 ~a.27
C~t~ cid 7. 0 7 . o
~;ly~ 7
Borax a . 5~ 2
Zeoli~e ~A ~as 100~ ~5 . 5 la . ~
Polym~r A ll ~33~) ~.OS~ 5.05
~AS acid~ . 6 . ~5 6 .25
Sy~p~r~ic A3~ 13.33 ~3.33
syDperonic ~7 t 3 3~ ~3 . 33
Sp~ 2~* ~.0 2.
~ 00~ c ~ 3 0 C
P~:rf~me o . 4 , o . 4
. .
pk~ 7.9 ; 7.9
:c~a~:X~ ratlo 1;1,~5 1:1
~ The~e ~ red1ents we~e add~ h~ ~om~ o~
~he~r A
Irltia~ visco~ ty ~m~a~) 990 1190
~lsco~ity t4~ a~ ~OCC) 1180 1g30
Vtscosi~y (4~ at 50C~ 1660
Masn ~op~4-Y ~0C 0~8% zero
~5 Me:a~ ~~ 4W 50~C 1.~ zero
~'he cocnpo~ition ~a~ shear~tlth a~ ~L plas~ome~r
at ~ shear ra~e ~ 10, Q00 6ec '.
~, , ' , ".
~;c~pL~ ~ '
30 T~ foll~wing exa~l~ non~trates c~t ~c~t-~h~z c~z; ?l~o:
be ~ cti~ using a de~ic~ which ~o~ pr~cticAl ~o u~
i~ 2ac~o~1e~ ~ namely a ~he~ . 'rhls wa3 a ~ ra~n
Y~ ~e - c~ æ~hr~ i3 scr~w~d, do~ u~t$1 ~ suic~ly
n~r20w c~3~ric~ c~ a~h~ad.
3 5
AMENDED SHEEJ
...,.. . ~. _..
C'~ ~ OC~C', C~ C~l ~ T.OTI~ T TC' ' ~ ~n ~ I T ~ _ r T _O~ Tn ~ au--U~ IW ~

r";,~ 38
3~ 21990i9
'rh~ ~mpo~cio~ we~e p~pa~ed ~y ~ n~ g~e~ien~3 in
~n~ or~r li~ d a~ a~ t~0~a~u~ o~ 50~55~.
F~n~ul a t t,~n 2 C
Water to 100
K0~ ~49~) 16.71
Cit~ic acl~ 3.1~ .
Glyc~rol 4.1
3~ x 2 .
1~ Qo~u~ bica~bq~a~e3.5
~ec~ e 4~ ~a~ 100~ .33
P~ All ~3.~) 5, 05
~AS acid* 6 . 25
Synperonic A3~ 13.33
lS ~;y:~e~ ~7~ 13.33
gp2~; Z4 ~ 2 . 0
Co~l ~a 3a oc
P~
9.1
2~ . .
~ The~e l~redi~t~ W~ added ~n ~h~ for~ o~ a p~emix
~ .
The ~or~ulat~on was either s~re~ a~ 20aC, or ~;ittY~ ~;0
I;;o~-sh~a~ ~y usi~g a shear ~ e~ o wcx~:-
~I0~ 2, ~3,
snea~ d~lce ~?one 5hear ~1~ Sh~a2~ Yal~r~
~ack p~es~ure ~ 2 ~a~ 7 ~ax
In~ ~lal ~1~3~031ty 15S0 1580 1~0
wsf~k viscosit~f 17~ 16~0 1540
w~c sepa~a~on 1~ zero ze~a
.
~hls example show~ .t~at post~shea~ h a shear-~ralve
3S improYe~ the vi~cosi~y ar~ ablli~y c~ar~c~erlæcic~ o~
liquid de~erge~t ccmpcsit io~ .
, AMENDED SHEET
~ ~ c~r~r~Q7~ r~Q r~ ~Q T C~f~C~ T T C~ T T qf~ ~ T T - Q,. ~ T ~ ~nw ~ AO~I

WO~J~ 2 1 ~9V i 9 rc~lr~l~
~.x~ ole 9
m~ ~ollowin5 li~:t~d W~L8 ~reF~ d ~y ~ the l~re~ie~
~n ~h~ order 1~ ~ e~ while keepi~ e tamp~ratu~e a~ clo~e
co 50~ as poss~ rhf3 acti~e~ w~e atde~ a~ Y. Th
~ulation was cooled ~o 30C ~e~oxe a~ ion ~ p~r~uma.
;
P~O~ A,-~ON
Water 6 5~ :
KOR ( 4 ~ ~ 3
10 Cit~lC acid
~;lycerGl ~ ~.7
~orz~x z .
Sodlu~a b~carbonate 3.5
Zeoii~e ~A ~0~ . 57
Po}y;ner ~ ~33~j 5~05
~,in~a~ ~lkyl i:~e~ne sul.~hon~d~ 6 . 25
Synpero:~ic A3~ 3.~3
Sy~ronlc ~7~ ~3,33
S~an 20 ~ox~tzLn mo~ola~rate~ 2.0
2 5 eer~u,ne 0 ~ 4
,
i~ palS~m~r ~ g ~crl~ed in 2P 34~ 995.
* Those i ~edi~t~ ware a~ d i~ the 20rm o~ a proQll.x
25 3ampl~s c~ the li~uid were pasacd ~hrough ~ tru~lo~
pl~s~on~erer. The reerul~ w~e:
~o~t she~r ra~ ~ioao/~ec~ -
a s ~ 3~ :
o~ weo~c~ sepn .
- (20 ~ C1 Y~ es ~ No ~o ~ Jo
weel~ ~epz~
~ ;O dagC) Y~s Ye~ o ~g ~e~ Yee ~ - -
3 5 4 w~eks moa~
~2~ 70~ 166~ ~7~ 1614 1130 1160 1~50
.
,
AMENDED SHEET . : .
9*#:S9**66~Z 68 6~+ ~*81909*01 1~+ : Z0:11 : 96-1~-8Z 1() ~3H~N3.1~ Vd3:N0,~

o s..i;v~ C .~ 3iC ~3 - ,~
3~ '
2199019
'~'h1Y eY ~ OC o~ly ~how~ ~hat ~7lying p~t-~hea~ to;
~ish ncnion~c llguid~3 i$ ~e~ic~al a9 it ~C~U~#~
aration ~t 20C. :Por t~ o~tl~n there ap~ears
op~.imum po~t shea~ rare aro~d IO,U~ ~oc~pro~al
3çaco~d~ a~ p~ysical R~a~ility 1~ achi~red with lit tl~
ch~e ~n ~rl~co3ity. t~ er~lly, ~ o~ti~um d~ ee o~
~ar ~ e ~rmul~o~ d3pendent a~ can ~e ~tabllshe~
~y exp~ime~ fo~ any given f~r~ulat~
e 1 0
~ormu:L2~ion 24 o~ ~x?s~le ~ wa ~ p~pa~ 3~p1a~ o~ th~;
~ id w~re ~a3~d throu~ ~n diap~r~gm 3hea~ e. The
r~~ul ~ ware: - .
~hear ~alve
Un~hea~d Low ~hea~ a ba~ ~igh ~h~ar~7
~0 ~atch 1
Sep~ ~0~) Ye~ ~o . ~o
~ea~ ~isc ~6gO 15Z~ 1513
~a~ch 2
25 S~n ~2 0C) Yeg Nc ~o
M~ 15~0 14~ 13~0
It ca~ be ~ee~ r ~pplica~ o2 pos~ shear, thi~ o
~ia u~e o~ a shear ~ e, ha~ coif~rr~di phy~ical ~cabll~ty
wi~ relaei~e~y little ~ang~ in ~cosity,
'
D 1~
~r~e ~ol~owi~ formNlatio~ w~ r~ar~:
,
AMENDED SHEET

V !~ Ub '1~ p~
37 2199019
F.'O~.~tJI.ATION ( ~ by Wf~ ' yht ~ 2 5
.
K~W~ 8.1
S~er~;Lic A7~ 15.5
~y2~pero~lc A36~15 . 5
~ycerol 4 . g
~o~ax 1 Ca~ 3, 4
2C~ cicra~e 4ag 12 . 4
Polyme;~
10 Wat~r 3~.
, .
I ~a~: K~ ~a~lo 1~ 9 .
15 ~or;n~la~ion 25 c~ntA~n~ ellar d~let0 t~at lack
i r.t~rn~ 1 symneery a~d cor~ain ~n~ co~e~tric 3urfac~ t
macerial.
E~ca~rDl3 12
... ..
2~ ~h~ foll~wir~g ~tl~ w~ arod:
~ . .
FO~tJI.~ hy wF~lght ~ 2~
Priolene 6902 6 . 09
~pe~ 7~ l2 . 9a
~5 ~ynpe~o~$c A~ 12.98
G~ ycerol ~ . 06
30rax lOa~ 2 . 34
, XO~ (50Pf~ ~.15
Na- carbonate 3 . 25
C~ tric Acid lag.g ~7
Z~ol it~ 1~ . 2
Po~yme~ ~ . a
Waeer & m~no~s ad ~00
- ; c
3 5 p~; 5 a4
N~ ti~ 2; 1
'. ' ','. "'',''';
AMENDED Sl IEET
J 17ft ' q~-i7~2~7~ ~S? f~i 171 bQT~\~ l 1~ : ~O: T T ~ T T ~ : T O ~ H~nw v~ IOA .'~

7~ 3G,~ 2~ S~J
21990l9
~o~l~tion 26 cvntains la;.n.ellar drople~s ~hat lack
ir~q~al s~:~nser~r a~d co~taln no~con~0~txla Yur~acta~t
mar e~
~le 13
'rhe ~411~i~ ulation w~Ls ~ are~ by pr~rrl~rin~3 th~
3ulfats and noz~ ic aLnd a~ thiE prer~x t~ a ~olu~o~
t~te, ~rat~, ~lyc~r~ e ~lymer. ~e~ t~
10 ~he ~ tur~ ~irred ~ith an ~oad ~ re~ ~or 30 minu~e~
a~ roo;~ mpera~4r~
rr~gr~d~ enc~: . ~e~ ~h~ %
50~ eco~ y alc~hol 3ul~te 1) 20
Nonionic 2~ 20
Sodlu~ citrat~ dihy~ra~
Sodium ~etz~2~.bo~a~e decahydra~e 3 . 5
Gly~e3:a:L 5
Poly~ner 3 )
Water tO 1~0~
~scosity 4~ 2~0 s~s
1) Avera~e ~tal alk~rl chai~ 16ngt~h '~5.2, ~otal ~ d 3
Z5 ~so~r coslte2~t 2
~) C1~ 13 ethoxyla~ea with 6.5 EO o~ a~re~a~
3 ~ Polym~ o~ A; 1 o~ EP-A- 0, 346, 995
w~ed wi~h a Haak~ consta~t~cr~s t h~am4~0r at 21~`
30 The ~ox~mla~Jo~ was ~u~led ulld~r polari~e~ l~g~t
icro~c~py and ~ ~alts~s ~ro~e~ w~r~ iden~i~ied. 'rha
liquld con~a~n~ dropl0c~ h a 3~1zo ~n l~he ra~e 0~ 2~ZO .
~m; chese lack rhtial sytnrnet~; the joi2~ed ~hick~e~s ~ t~e
b~ yex~ ln the . droplets ifi a~aller ~han ~h~ ~adiu~ o~ thd
35 dropl~ 9~ tha~ 25%, l.e. l~s~ than al~out 10~, o~
radiu~; th~ d~pl~t con~ist o~ly cs a ~-w la~llar ~
~MENDED SI~EET ..

w~s~/1062s ~ J~ JJIlJ3~s
39 21 9901 '~
layer~ s ~u~d u~ir;g a ~ si~n ~ectro~ rnl cr~sc~ .
comp~#~ tio~ ~o~ high ~ ~xibility in i~co~o~a~ic~ o
i~g~edl~
5 Bxam~l ~ L~
Su~ itut~g ~e ~econd~ ~pha~ o~ thc ~ ion c~
~ le ~ ith a second~ ulpha~ ~a~ring ~29~ o~ ch~ 2
an~l 3 isomer~ ~atio of n~njont~ ~o ~o~Lr~
~lphat~ co~np~lsing at 13a~t 3 C-atom~ o~ ~oth ~id~ o~ the
.0 C~ts:1m ts wkl~h l:he gUl~hat~ ~rou~ 1~ a~t~cheA i~ ~ro~
72~2~) ~e~u:L,,ed ~n a l~uid wlth dr~plet~ ;;~t cc~ ge~
ella~ layers a~d a core com~?ri~ ncn-co:~¢ont~lc
2llar phase; the ~n~d thirkn~ o~ ~he ~ ye~s 1
b~twee~ 50 and 9g~ o~ the radiu~.
~nlq 1~
Ir~creasing ~he i~ l o~ ~he Re~9~ ~pha~ o~ the ~re
~or~ula~on ~22~ 2,3 i~ome~s) o~ Xx~ 3 to 27~r a~a
louering th~ nonionl~ le~rel ~o 13~ ~ra~4 o~ aon~ni~ ~u
20 ~eco~darJ alkyl ~ulF~ate ~ 16i~g at lezi~r 3 ~-atom~ o~
bo~h ~id~ o~ the C~at~ t~ wh~c~ the su~p~t~ grou~ l~
~ttached t~ m 35:~5t ~ul~ed ln a l~usd w~th dropLeta
that ha~e ~ull bilayer ra~tal ~y~etry.
., .
2 ~ P~
T~e ~c~ uid ~aa pre~ared,:
ty acid 6
n~ c 1 1~ 13
Ncr~i~n1c 2 2 ) 1~
3 0 Glyc~rol . ~ .
I~o~ax lOe~a 3
KOH ~50~
N~2C~3 3
Ci~ic ~c~ 10 . ' '
3$ ~boll~e 4~ 16
Polymer 3 ) 2 :
~A~N~ED S~EEi
A ~ ~A~ A~ ~ T ~ A T T ~ . T T . 1~` _. T T _ C~, . ~i~ - 7-- _~A~ A /~

wo 9~tU6~S ~,~,t,j~
2199019
Ancl~oarl ~c snzym~F~
Wa~e;c ad 1~
1~ Nollior.lc 1 is Synpe~onic A7, ex ICI
2 ~ ion~ c ~ ~s Sy~e~onic ~3~ex IC~
3) Poïyrner All o~P pjP 3~6395
4 ) ~ bou~
T~.e li~uid did not. 6~0w phase se~ra~1o~ ~urlng 5 w~e~s 3t
37UC. Th~ tropl2t~ in t~e liquid s~ow~d n4 r dial syr~
At ir~rea3i~y po~yzne~ conce~ t~ons, ~he d~o~ 6 bocc~ 11
sc~1le~, Th~ ~n~y~ ha~.~ l.Lvo i~ h~ gh t~Dto~ la~ge~ ~h~
10 wee3cs ar~d 1~ ~a~c 5 w~el:s at 37~C) . 9~a~ y ~ g ~rur~ilor
i~cr~ased i~ po~c ~hear i~ ?lied, lr higher ~olymro
l~vel~ ar~ used and 1~ zcolic- level ~s in~r~a~ed,
i
ExamD1 e 17
T~e ;eolïowi~g lig~id was p~epar~d. Post 8hear ~d3 aF~li~.
:
Ol~c ~.C.i~l 7,5
n~
~0~103ic 2 2 ~
aï s
~5 30rax lOaq 3.5
XOH 150~ to plI o~ 9
Na2C03 4
~o~ymer 3 ) 1. 5
cit~ic a¢i~ 7.1
30 5~zyr~es
er ~& ~ s) ad 100
1~ Nonl~nic 1 is Synpero~lc A~ ex ~C~
n~ Syr~ronic A~ ~x ~C~ -
35 3 ) Polym~r All o~ ~P 345g95
The lic~u-l d co:ncains d~oplsrs t~at lacX ~dial s~
: .
~DED S~EET . . .

6JI06~ ;r~oh~ s
2~ 9901 9
E~ca5rrpl e 19
Th~ follcw~ny ll~uida we~ e ~y ~ 301~ g the alXa~
water, ~ trl~ ~h~ yl~c~c~r~te, ~he borax, t~
,po:Lymor a~d tha ac~l~fe ~r~x, wh~3~ x the mlx~u~e was
5 ~ d:
Co4~o~ition
"naF~ien~s . ~; ~y w.e,t~t .
Na ~ L~S 7 . ~
10 ~onlo;~ic ~. l) 15.8
r~O~ nic 2 Z ) 15 .
Glycsr~l 4~
~o~ax lOac~ 3,5
~a~ cl~rate . 2a~ g . g
15 P~:Lymer 3 ~ 1. 0
~t~r a~ lo~
1 ) S~peronic A7~9 '
) sy~p~ror~i~ 7~ -
3) :~olym~r Ali ~ E~ 3~6,~95
Cornpc~ition 2 w~ ~d~ by ad~liny ~n top o~ co~o~it~
20~ ~y weig~ o~ z~s~lir~ ~A m&ter~o.1, ex ~ a:L~t~ P (adde~
duri~ p~ap~ra~ ore the 0~ti~ p~x).
C~oqitio~ 3 w~ made bsr ~ ;a~ ol~msr to l~he
con~o~ n 1 ir.~ead o~ l'f by w~g~'c.
~ornpo~i~1~ 4 wa~ m~de ~ ~A~1r~ ~ c~ poly~er ~o t,~e
30 co~poaltio~ 9tead o~ y weisht.
C~rnpos~tlon 5 W~ macle ~y ~di~ ~ c~ polym~r to the
ccmposition 1 i~stea~ O~ y wei~ht.
35 Th~ ~o:Llowin~ r~sul~s were o~ta~ :~o~:
~AM~NDED SHEET

WO q6llV615 ~ 1 9 9 fJ~ T~ ua~l~x
42
Corr~o~it~ c~
3 4, 5
1 woek: -
Pha~e ~e~ar~ion 27 O 9 ~ o
Vl~co~ity 90 3~ ~S5 ~7~ 8~0
mqn~:
~0' Phage 5~3pA r~ n 3~ 1 0
~isco~ ~y 105 333 142 6~6 ~37
1~ !
I~ ~a~ be co~cluded ~at ~tAhll~ty ~cr3a~-so aD,dJor
co~lty improves ~ h a~ditio~ o~ solid particles a~ o~ .
by addir~g more polymer.
~5
Li~uLd compo~ ns 1-~ c~ta~ ~rople~ t~ ha~ a
ctu~e l~k~na i~e~ 4t~y.
Comp~ltlon 4 d~E ~ ~how no ~ha~e q~parat~l~r~ a~t~r ~ ~
20 w~ek. The c~ lo~ ~a~ c:e~rl~u~ed an~ the 2~cli~
r~;wed, wherea~ter ~he x~s~lti~g L~4id W~L9 r~ . ~e
r~xed ~oznpo~it~on t~hi~h i~ e~u~l ta c~ ~Q~iric~
~hodred phase ~oparz~t~e~ after ~ wesk s~orage s~m~ to
cornpo~itio:~ 3. ~t ca~ e ~:on~ ded t~t ~~^nr-9 o~ solld
~5 ~art~cles in~rease~ stab~ lie~
: ' '
Fxan~ 3
llow~s ~quid w~ p~e~reds
~n~re~dlgr~ts~ by we~ yht
3a ~cnion~c ~ ~ 13
Nonionic 2 ~ 13
,~S ~Cid 6 .
Ze~ e 13
Polym~ 37 ~.S
~:~z~ & st~ r~ 7
W~er ~ ct~olyte ad 100
-, . ,:
A~IYDED SHEET I ...... _.

W~ ~*~ ~J~;-;'.. ~r, '
2 ~ 9 ~ ~ :
Sy~p~o~ic
~) 5y~ero~1c ~7~
l 3 ) P~:Lymer All of' ~3P 3~ 5
9pan 20 ~as ~dd at ~riou~ la~d th~ ~llow~n~
3t;abllitie8 were o~r~ i~e~
~1 ( % by weiyht ) o ~ o~ 6 . S
Sepasation a~r ~ w~ ; 37C4.5 3,5 ~.25 3.~5
' ' ' '
il lu~t~a~es th~ ~o~ e~ec~ o~ 8pans o~ th~
~iscosicy o~ high nonio~ic ~ coslty d~i~t wa~ als~
i~?rc~ved .
1~ :
~camr~ 2 0
~z~m~ s~ y wa~ a~u~ed i~ the ~ or ~ 1e 19
~nd ~ound to ~ ~e~y goo~: 9a~ for lipa~ and 74% ~or
~ro~ase af~er 4 week~ t ~7
!
FY~P13 ~1
~a~ious le~ o~ ~olid E~a~cles w~e ~dded to th~
o~ :~xa~le 19 a~ the ~ollowi~g roaul~s ~er~ obtai;~od:
~5
Z~llte le~rel ~% by welg~ i3 15.5 18 ao
~eparatibp~ (4 wee~ a~J~ieD,~ 4 2 0 0
~iB ~hows th~Lt ~oli~ pa~lcl~ c~ sta~t l~s~ hi~h non~o&~c
30 l~ e ~a~ne co~o~Sio~ wi~oue sali~ partic~es
s~owe~ his~ sep~a~l~P, aSte~ ~ week~ a'c a~ient.
F~,~le ~
3~ I~h~ l;Lgui~ c~ ~xamp}~s 1 and aI a~ 2X ~ ~P A ~ 0 w~e
prepar~d .
~ÆN~L~ T
A~-IAAL_A~ ~A T ~ A T T ~ . . A~ . ~ ~ ~ ~A~ A A --.Y

W~ 2~ , ~j~,~,~;
219~0i9
2xa~:Le 1 resul~ad in a liquid whieh, wher~ ~tu~d und~r
th¢ el~e~o~ ~e~ eF~, ~wa~ ~aund to e4~ain ~t~r~aeta~C
droyl~ts ln ~n i~otropi~ $~uou5 pha~e. ~ u~aetarlt
~r~plees al~ ~t ~ow ~r~i3gent und~ the elec~r~
5 mi~r~cap~ tUds~ o~ the dro~l~t~ w~ fx~ze-~r~ct~c~
~lec~n m~cra6~0py ~ev~ealed t~t che ~urfae~t ~xopl~t~
hD.~ ar ~rati~g o~ the outside and stacks of
t~nt in tho co~e. The level o~ ~oLld ~a~e~cles wa~
e~tirca~ed t~ b~ ~ut 5~ by w~lght o~ e co~o~it~,on,
- 10
'rh~ ; 0~ Elx~ 9 Z:~ an~l 2R were ~x~a1r~d a~d they ~¦
were st~d~ed u~der th~ elect:ro~ micrcscope ~L~t f~nd ~o b~
cotnplete sp~eruLite~.
AMENDED SHEET

Dessin représentatif

Désolé, le dessin représentatif concernant le document de brevet no 2199019 est introuvable.

États administratifs

2024-08-01 : Dans le cadre de la transition vers les Brevets de nouvelle génération (BNG), la base de données sur les brevets canadiens (BDBC) contient désormais un Historique d'événement plus détaillé, qui reproduit le Journal des événements de notre nouvelle solution interne.

Veuillez noter que les événements débutant par « Inactive : » se réfèrent à des événements qui ne sont plus utilisés dans notre nouvelle solution interne.

Pour une meilleure compréhension de l'état de la demande ou brevet qui figure sur cette page, la rubrique Mise en garde , et les descriptions de Brevet , Historique d'événement , Taxes périodiques et Historique des paiements devraient être consultées.

Historique d'événement

Description Date
Inactive : CIB de MCD 2006-03-12
Inactive : CIB de MCD 2006-03-12
Inactive : CIB de MCD 2006-03-12
Inactive : CIB de MCD 2006-03-12
Inactive : CIB de MCD 2006-03-12
Le délai pour l'annulation est expiré 1999-09-28
Demande non rétablie avant l'échéance 1999-09-28
Réputée abandonnée - omission de répondre à un avis sur les taxes pour le maintien en état 1998-09-28
Lettre envoyée 1997-10-30
Lettre envoyée 1997-09-17
Inactive : CIB en 1re position 1997-08-07
Inactive : CIB attribuée 1997-08-07
Inactive : Transfert individuel 1997-05-29
Inactive : Lettre de courtoisie - Preuve 1997-05-06
Requête d'examen reçue 1997-04-28
Exigences pour une requête d'examen - jugée conforme 1997-04-28
Toutes les exigences pour l'examen - jugée conforme 1997-04-28
Demande publiée (accessible au public) 1996-04-11

Historique d'abandonnement

Date d'abandonnement Raison Date de rétablissement
1998-09-28

Taxes périodiques

Le dernier paiement a été reçu le 1997-03-03

Avis : Si le paiement en totalité n'a pas été reçu au plus tard à la date indiquée, une taxe supplémentaire peut être imposée, soit une des taxes suivantes :

  • taxe de rétablissement ;
  • taxe pour paiement en souffrance ; ou
  • taxe additionnelle pour le renversement d'une péremption réputée.

Veuillez vous référer à la page web des taxes sur les brevets de l'OPIC pour voir tous les montants actuels des taxes.

Historique des taxes

Type de taxes Anniversaire Échéance Date payée
TM (demande, 2e anniv.) - générale 02 1997-09-29 1997-03-03
Taxe nationale de base - générale 1997-03-03
Requête d'examen - générale 1997-04-28
Titulaires au dossier

Les titulaires actuels et antérieures au dossier sont affichés en ordre alphabétique.

Titulaires actuels au dossier
UNILEVER PLC
Titulaires antérieures au dossier
CARLO JOHANNES VAN DEN BERGH
DAVID MACHIN
DIANE DUNCAN
DIRK JOHANNES BIJL
ERIK VAN DER LINDEN
JEFFREY DE GROOT
MICHAEL FRANCIS WALSH
NANCY ANN FALK
WILHELMINA KARIN TOET
Les propriétaires antérieurs qui ne figurent pas dans la liste des « Propriétaires au dossier » apparaîtront dans d'autres documents au dossier.
Documents

Pour visionner les fichiers sélectionnés, entrer le code reCAPTCHA :



Pour visualiser une image, cliquer sur un lien dans la colonne description du document. Pour télécharger l'image (les images), cliquer l'une ou plusieurs cases à cocher dans la première colonne et ensuite cliquer sur le bouton "Télécharger sélection en format PDF (archive Zip)" ou le bouton "Télécharger sélection (en un fichier PDF fusionné)".

Liste des documents de brevet publiés et non publiés sur la BDBC .

Si vous avez des difficultés à accéder au contenu, veuillez communiquer avec le Centre de services à la clientèle au 1-866-997-1936, ou envoyer un courriel au Centre de service à la clientèle de l'OPIC.


Description du
Document 
Date
(aaaa-mm-jj) 
Nombre de pages   Taille de l'image (Ko) 
Description 1997-03-03 44 1 806
Abrégé 1997-03-03 1 51
Revendications 1997-03-03 3 88
Page couverture 1997-08-26 1 31
Rappel de taxe de maintien due 1997-07-03 1 111
Courtoisie - Certificat d'enregistrement (document(s) connexe(s)) 1997-09-17 1 118
Accusé de réception de la requête d'examen 1997-10-30 1 178
Courtoisie - Lettre d'abandon (taxe de maintien en état) 1998-10-26 1 184
PCT 1997-03-03 62 2 130
Correspondance 1997-05-06 1 36