IP Library › Patent Application 15718821
Patent Application
App. No. 15/718,821

STRONG BASIC POLYACRYLATE ANION EXCHANGERS

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Quick Facts
Patent No.
US None
App. No.
15/718,821
Abstract

The present invention relates to quaternized diethylenetriamine-functionalized polyacrylate bead polymers, to a process for preparing same and to their use in the removal of oxoanions, particularly chromium (VI) oxoanions from aqueous- and/or organics solutions.

Claims (26)

1 . Quaternized diethylenetriamine-functionalized polyacrylate bead polymers comprising a bead of cross-linked polyacrylate polymer functionalized with diethylenetriamine, wherein the cross-linked polyacrylate polyacrylate polymer are prepared from a monomer mixture comprising an acrylic monomer fraction greater than 70 wt % relative to the total amount of monomers.

2 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 1 , wherein the polyacrylate bead polymer is prepared on the basis of an acrylic monomer fraction greater than 95 wt % relative to the total amount of monomers.

3 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 1 , wherein the quaternized diethylenetriamine-functionalized polyacrylate bead polymer comprises basic groups, and 70% to 90% of the basic groups are quaternized groups.

4 . A process for preparing the quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 1 , the process comprising:

a) reacting a monomer mixture formed of at least one acrylic monomer and at least one multifunctionally ethylenically unsaturated compound, and also optionally monovinylaromatic compounds, and also optionally at least one porogen and/or optionally at least one initiator in an aqueous phase to form a crosslinked bead polymer, wherein a weight quantity of acrylic monomers is greater than 70 wt % relative to the total amount of monomers used, and

b) reacting the bead polymer from step a.) with diethylenetriamine to produce functionalized bead polymer, and

c) wholly or partially converting the functionalized bead polymer from step b.) with alkyl or aryl halides into quaternized diethylenetriamine-functionalized polyacrylate bead polymers.

5 . The process for preparing the quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 4 , wherein a weight quantity of acrylic monomers is greater than 95 wt % relative to the total amount of monomers used in step a.).

6 . The process according to claim 4 , wherein step b) is conducted at a temperature of 90° C. to 150° C.

7 . The process according to claim 4 , wherein the crosslinked bead polymer of step a.) has an amount of ester/nitrile groups, and the reaction with diethylenetriamine comprises a ratio of 2 to 6 mol diethylenetriamine per mole of the ester/nitrile groups.

8 . The process according to claim 4 , wherein the functionalized polyacrylate bead polymers of step b.) have an amount of basic groups, and the conversion uses 50 mol % to 150 mol % of alkyl or aryl halides relative to the amount of the basic groups.

9 . A process for the removal of oxoanions from aqueous- and/or organic solutions, the process comprising contacting an oxoanion containing aqueous- and/or organic solutions with a at least one quaternized diethylenetriamine-functionalized polyacrylate resin as claimed by claim 1 for sorption of the oxoanions from the solution onto the bead polymer

10 . The process of claim 9 , further comprising:

regenerating the quaternized diethylenetriamine-functionalized polyacrylate bead polymers using an aqueous anion solution to remove oxoanions from the bead polymer; and

reusing the regenerated bead polymers for sorption of further oxoanions from further solutions.

11 . The process of claim 10 , wherein the oxoanions are selected from the group consisting of X n O m − , X n O m 2- , X n O m 3- , HX n O m − or H 2 X n O m 2- , where n represents an integer 1, 2, 3 or 4, m represents an integer 3, 4, 6, 7 or 13 and X represents a metal or transition metal from the series Au, Ag, Cu, Si, P, S, Cr, Ti, Te, Se, V, As, Sb, W, Mo, U, Os, Nb, Bi, Pb, Co, Ni, Fe, Mn, Ru, Re, Tc, Al, B or a non metal from the series F, Cl, Br, I, CN, C, N.

12 . The process of claim 10 , wherein the oxoanions are selected from the group consisting of chromium(VI) oxoanions, as chromate (VI) and dichromate (VI), perchlorates, chlorates, arsenates, and uranium(VI), uranium(V) and uranium(IV) oxoanions.

13 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 1 , wherein the monomer mixture comprises at least one acrylic monomer and monomers of at least one multifunctionally ethylenically unsaturated compound.

14 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 13 , wherein the monomer mixture comprises mixtures of two or more acrylic monomers, and mixtures of monomers of two or more multifunctionally ethylenically unsaturated compounds.

15 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 14 , wherein the monomer mixture further comprises monovinylaromatic compounds, at least one porogen, and at least one initiator.

16 . The quaternized diethylenetriamine-functionalized polyacrylate bead polymers according to claim 15 , wherein:

the acrylic monomers comprise acrylic esters with branched or unbranched C 1 -C 6 alkyl moieties, and nitriles of acrylic acid;

the multifunctionally ethylenically unsaturated compounds comprise butadiene, isoprene, divinylbenzene, divinyltoluene, trivinylbenzene, divinylnaphtalene, trivinylnaphtalene, divinylcyclohexane, trivinylcyclohexane, triallyl cyanurate, triallylamine, 1,7-octadiene, 1,5-hexadiene, cyclopentadiene, norbornadiene, diethylene glycol divinyl ether, triethylene glycol divinyl ether, tetraethylene glycol divinyl ether, butanediol divinyl ether, ethylene glycol divinyl ether, ethylene glycol dimethacrylate, trimethylolpropane trimethacrylate, allyl methacrylate, cyclohexanedimethanol divinyl ether, hexanediol divinyl ether or trimethylolpropane trivinyl ether;

the monovinylaromatic compounds comprises styrene, methylstyrene, ethylstyrene, chlorostyrene or vinylpyridine;

the porogens comprise compounds hexane, octane, isooctane, isododecane, methyl ethyl ketone, methyl isobutyl ketone, dichloroethane, dichloropropane, butanol, pentanol, hexanol, octanol, and isomers thereof, and mixtures thereof; and

the initiator comprises peroxy compounds and/or azo compounds.

Assignments (3)
MERGER Recorded Nov 14, 2019
From: LANXESS SYBRON CHEMICALS INC.
To: LANXESS CORPORATION
Reel/Frame 051004/0314 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2018
From: RECKZIEGEL, AURELIA; REZKALLAH, ARESKI
To: LANXESS DEUTSCHLAND GMBH
Reel/Frame 044524/0178 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2018
From: MIR, FIRUZA
To: LANXESS SYBRON CHEMICALS INC.
Reel/Frame 044992/0106 →