Patents by Inventor Jennifer RISER
Jennifer RISER has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20260218455Abstract: The present invention provides novel amphoteric emulsion polymers, aqueous compositions containing these amphoteric emulsion polymers, methods for making, and applications thereof for improving retention and vacuum and press dewatering in the manufacturing of paper or board. In particular, the present invention relates to the use amphoteric emulsion polymers, with and without silica, in papermaking processes and other processes which may involve the use of hard water during polymer makedown and/or the treatment of compositions comprising recycled and unbleached high-yield fibers and/or the treatment of compositions comprising colloidal materials and hydrophobic agglomerates and particles. More particularly, the present disclosure relates to the use of these novel amphoteric emulsion polymers as drainage aids, broke fixatives, retention/drainage cationic boosters for colloidal silica retention and drainage programs, and flocculants in water quantity and quality management (WQQM) applications.Type: ApplicationFiled: December 28, 2023Publication date: July 30, 2026Inventors: Matti HIETANIEMI, Yuping LUO, Jennifer RISER, Ronald ROBINSON, Logan JACKSON, Junhua CHEN
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Patent number: 12692654Abstract: The present invention provides a novel method and composition for enhancing the efficiency of starch adsorption (i.e., starch trapping) from starch-containing furnishes comprising high content of recycled fibers for use in paper making processes such as pulp, paper, or board production. A novel polymer coagulation system is disclosed in which two quick inversion cationic emulsion polymers (starch trapping polymers A and B) are co-mixed at optimal blend ratios to meet specific recycled fiber and process water requirements for different recycled fiber plants and added to furnishes prior to formation of paper or board in a paper machine. Co-mixed solutions of starch trapping polymers A and B provide synergistic enhancements in (i) starch trapping efficiency and (ii) starch retention in the produced paper or board over equivalent dosage levels of singly administered polymer A, polymer B, or conventional starch trapping products, without over-flocculation or formation of stickies.Type: GrantFiled: April 8, 2024Date of Patent: July 28, 2026Assignee: KEMIRA OYJInventors: Yuping Luo, Jennifer Riser
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Publication number: 20260210054Abstract: The invention relates to an aqueous dispersion of alkyl ketene dimer. The aqueous dispersion comprises alkyl ketene dimer particles dispersed in an aqueous continuous phase and a stabilizing agent which is a cationic ?-(1,3?glucan) polymer. The aqueous dispersion comprises more alkyl ketene dimer than cationic ?-(1,3?glucan) polymer, given as weight-%.Type: ApplicationFiled: December 20, 2023Publication date: July 23, 2026Inventors: Eija KORTE, Nina SNEITZ, Elisabeth LACKINGER-CSARMANN, Jennifer RISER, Jaakko HILTUNEN, Riina KOIVULUOMA
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Publication number: 20260210055Abstract: The present invention relates to an aqueous dispersion of alkyl ketene dimer. The aqueous dispersion comprises alkyl ketene dimer particles dispersed in an aqueous continuous phase, and an anionic lignin-carbohydrate complex where lignin and carbohydrate are covalently bound with each other as a stabilizing agent.Type: ApplicationFiled: December 20, 2023Publication date: July 23, 2026Inventors: Eija KORTE, Nina SNEITZ, Elisabeth LACKINGER-CSARMANN, Jennifer RISER, Jaakko HILTUNEN
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Publication number: 20240376668Abstract: The present invention provides a novel method and composition for enhancing the efficiency of starch adsorption (i.e., starch trapping) from starch-containing furnishes comprising high content of recycled fibers for use in paper making processes such as pulp, paper, or board production. A novel polymer coagulation system is disclosed in which two quick inversion cationic emulsion polymers (starch trapping polymers A and B) are co-mixed at optimal blend ratios to meet specific recycled fiber and process water requirements for different recycled fiber plants and added to furnishes prior to formation of paper or board in a paper machine. Co-mixed solutions of starch trapping polymers A and B provide synergistic enhancements in (i) starch trapping efficiency and (ii) starch retention in the produced paper or board over equivalent dosage levels of singly administered polymer A, polymer B, or conventional starch trapping products, without over-flocculation or formation of stickies.Type: ApplicationFiled: April 8, 2024Publication date: November 14, 2024Inventors: Yuping LUO, Jennifer Riser
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Patent number: 12031274Abstract: A method for preparation of a starch-promoted alkyl ketene dimer (AKD) sizing emulsion is provided. The inventive method comprises adding a sizing promoter comprising high-charge cationic starch and polyaluminum chloride (PAC) to a stabilized AKD emulsion and further wherein addition of said sizing promoter comprising high-charge cationic starch and PAC is effected at ambient temperature, after emulsification, stabilization, and homogenization of said stabilized AKD emulsion; and prior to addition of the starch-promoted AKD sizing emulsion to papermaking furnish, pulp, or fiber stock.Type: GrantFiled: December 30, 2021Date of Patent: July 9, 2024Assignee: Kemira OyjInventors: Jennifer Riser, Kirsi Terava, Timo Valkealaakso, Jaakko Hiltunen
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Patent number: 11976418Abstract: The present invention provides a novel method and composition for enhancing the efficiency of starch adsorption (i.e., starch trapping) from starch-containing furnishes comprising high content of recycled fibers for use in paper making processes such as pulp, paper, or board production. A novel polymer coagulation system is disclosed in which two quick inversion cationic emulsion polymers (starch trapping polymers A and B) are co-mixed at optimal blend ratios to meet specific recycled fiber and process water requirements for different recycled fiber plants and added to furnishes prior to formation of paper or board in a paper machine. Co-mixed solutions of starch trapping polymers A and B provide synergistic enhancements in (i) starch trapping efficiency and (ii) starch retention in the produced paper or board over equivalent dosage levels of singly administered polymer A, polymer B, or conventional starch trapping products, without over-flocculation or formation of stickies.Type: GrantFiled: October 12, 2021Date of Patent: May 7, 2024Assignee: KEMIRA OYJInventors: Yuping Luo, Jennifer Riser
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Publication number: 20230212820Abstract: A method for preparation of a starch-promoted alkyl ketene dimer (AKD) sizing emulsion is provided. The inventive method comprises adding a sizing promoter comprising high-charge cationic starch and polyaluminum chloride (PAC) to a stabilized AKD emulsion and further wherein addition of said sizing promoter comprising high-charge cationic starch and PAC is effected at ambient temperature, after emulsification, stabilization, and homogenization of said stabilized AKD emulsion; and prior to addition of the starch-promoted AKD sizing emulsion to papermaking furnish, pulp, or fiber stock.Type: ApplicationFiled: December 30, 2021Publication date: July 6, 2023Inventors: Jennifer Riser, Kirsi Terava, Timo Valkealaakso, Jaakko Hiltunen
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Publication number: 20230116374Abstract: The present invention provides a novel method and composition for enhancing the efficiency of starch adsorption (i.e., starch trapping) from starch-containing furnishes comprising high content of recycled fibers for use in paper making processes such as pulp, paper, or board production. A novel polymer coagulation system is disclosed in which two quick inversion cationic emulsion polymers (starch trapping polymers A and B) are co-mixed at optimal blend ratios to meet specific recycled fiber and process water requirements for different recycled fiber plants and added to furnishes prior to formation of paper or board in a paper machine. Co-mixed solutions of starch trapping polymers A and B provide synergistic enhancements in (i) starch trapping efficiency and (ii) starch retention in the produced paper or board over equivalent dosage levels of singly administered polymer A, polymer B, or conventional starch trapping products, without over-flocculation or formation of stickies.Type: ApplicationFiled: October 12, 2021Publication date: April 13, 2023Inventors: Yuping Luo, Jennifer Riser
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Patent number: 11535985Abstract: A method for manufacture of paper or board, in which method an inverted solution of cationic polymer is added to the fiber suspension for providing retention enhancement without over-flocculating fiber stock and destruction sheet formation and/or improving drainage and enhancing or at least maintaining strength of paper or board, An inverted solution has a bulk viscosity of 50-150 mPas at 0.2 weight-% cationic polymer concentration and inverted solution comprises cationic polymer obtained by reverse phase emulsion polymerization of a monomer blend comprising non-ionic monomers, 15-50 mol-% cationic monomers, an optionally at most 50 ppm of a crosslinking agent, and a chain transfer agent, and the obtained reverse phase emulsion of cationic polymer is inverted into an aqueous solution.Type: GrantFiled: June 30, 2020Date of Patent: December 27, 2022Assignee: Kemira OyjInventors: Yuping Luo, Jennifer Riser, Zheng Dang, Junhua Chen, Ronald Robinson, Andrew Pencek, Barbara Lukasik
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Patent number: 11208766Abstract: A surface treatment composition is disclosed including anionic polyacrylamide, which has a weight average molecular weight, MW, in the range of 100 000-2 000 000 g/mol, and free glyoxal. Further disclosed is a use of the surface treatment composition, a method for producing paper, board or the like and a paper product.Type: GrantFiled: September 26, 2018Date of Patent: December 28, 2021Assignee: Kemira OyjInventors: Yuping Luo, Junhua Chen, Zheng Dang, Jennifer Riser
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Publication number: 20210002827Abstract: A method for manufacture of paper or board, in which method an inverted solution of cationic polymer is added to the fiber suspension for providing retention enhancement without over-flocculating fiber stock and destruction sheet formation and/or improving drainage and enhancing or at least maintaining strength of paper or board, An inverted solution has a bulk viscosity of 50-150 mPas at 0.2 weight-% cationic polymer concentration and inverted solution comprises cationic polymer obtained by reverse phase emulsion polymerization of a monomer blend comprising non-ionic monomers, 15-50 mol-% cationic monomers, an optionally at most 50 ppm of a crosslinking agent, and a chain transfer agent, and the obtained reverse phase emulsion of cationic polymer is inverted into an aqueous solution.Type: ApplicationFiled: June 30, 2020Publication date: January 7, 2021Applicant: Kemira OyjInventors: Yuping Luo, Jennifer Riser, Zheng Dang, Junhua Chen, Ronald Robinson, Andrew Pencek, Barbara Lukasik
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Publication number: 20200232165Abstract: A surface treatment composition is disclosed including anionic polyacrylamide, which has a weight average molecular weight, MW, in the range of 100 000-2 000 000 g/mol, and free glyoxal. Further disclosed is a use of the surface treatment composition, a method for producing paper, board or the like and a paper product.Type: ApplicationFiled: September 26, 2018Publication date: July 23, 2020Inventors: Yuping LUO, Junhua CHEN, Zheng DANG, Jennifer RISER
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Publication number: 20200116620Abstract: The present invention provides a method and system for measuring disintegration of a fibrous product. The method comprises disintegration of a sample of the fibrous product in an aqueous solution, optionally promoted by mechanical energy, passing the aqueous solution through a screen to obtain a permeate and retained fraction on the screen, and analyzing at least one parameter from the permeate for example by a gravimetric analysis, an optical analysis, an electrochemical analysis, a volumetric analysis, or combination thereof. Advantages include adjustability, speed, and high correlation with actual flushability or repulpability of the fibrous product, and utility in a process for manufacturing a fibrous sheet exhibiting controlled disintegration, such as a flushable or repulpable fibrous sheet.Type: ApplicationFiled: June 28, 2018Publication date: April 16, 2020Applicant: Kemira OyjInventors: Clayton Campbell, Jennifer RISER, Kristin WITTICH, Frank ZIMMERMANN