Patents Assigned to Croda, Inc.
-
Patent number: 10871418Abstract: A wind tunnel and method of use thereof. The wind tunnel has an airflow system which is capable of delivering air vertically down through, and optionally horizontally across, a spray chamber having transparent sidewalls, wherein spray particulates produced in the spray chamber can be analyzed through the transparent sidewalls, preferably by use of a laser. The dimensions of the spray chamber are preferably greater than that of the airflow system. The use of the wind tunnel enables a wider range and more accurate spray particle measurements, especially for an agrochemical composition, to be made in a single test environment.Type: GrantFiled: May 9, 2016Date of Patent: December 22, 2020Assignee: Croda, Inc.Inventor: Gregory James Lindner
-
Publication number: 20200354298Abstract: A compound has the structure of formula (1): X—(OCH2CH2CH2)n—OR (1) in which n is an integer from 2 to 15, R is a C6 to C36 hydrocarbyl group, X is R or R1C(O) and R1 is a C2 to C36 hydrocarbyl group. A personal care product contains the compound of formula (1). A method of producing the compound and the use of the compound as a sensory agent and/or pigment wetting agent in a cosmetic or personal care product are also disclosed.Type: ApplicationFiled: October 10, 2018Publication date: November 12, 2020Applicant: Croda, Inc.Inventors: Erik Gunderman, Paul Joseph Saporito, Joseph Nicholas Matt, Abel Goncalves Pereira
-
Patent number: 10717917Abstract: Provided is a method of dispersing asphaltenes to inhibit asphaltene precipitation and/or deposition in a hydrocarbon. The method includes adding to the hydrocarbon an asphaltene dispersing agent which is an ester of a mono-carboxylic fatty acid and a sugar. The sugar has at least 4 hydroxyl groups. In addition, more than one of the hydroxyl groups on the sugar are reacted with the mono-carboxylic fatty acid to form the ester.Type: GrantFiled: June 20, 2017Date of Patent: July 21, 2020Assignee: Croda, Inc.Inventors: Xin Chen, Min Ma Wang, Craig Michael Sungail, Zhongqi Shen
-
Publication number: 20200157470Abstract: A process for making a surfactant composition is disclosed. In the process, a mixture comprising a sugar alcohol and fatty is formed. The mixture contains less than 5% by weight of water based on the total weight of the mixture. The mixture is reacted with an alkylene oxide to make a surfactant composition containing an alkoxylated sugar alcohol fatty acid ester and a polyalkylene glycol fatty acid ester. A surfactant composition and use of the surfactant composition to separate an oil phase and/or an aqueous phase from an emulsion is also disclosed.Type: ApplicationFiled: January 8, 2018Publication date: May 21, 2020Applicant: Croda, Inc.Inventors: Xin Chen, Min Ma Wang, Kevin Wade Penfield
-
Publication number: 20200128819Abstract: An agrochemical concentrate comprises lecithin and at least one agrochemical active. The agrochemical concentrate may also comprise a dispersant selected from sucrose ester, alkylpolyglucoside, alkylnaphthalene sulphonates, phosphate ester, sorbitol ester, polyglycerol ester, alkyl sulphates, sodium lauryl sulphate, alkylglucamides, and dialkyl sulphosuccinates. An aqueous formulation comprises a dilution of the agrochemical concentrate in an electrolyte. A pre-blend comprises lecithin and a dispersant. A method of preparing the agrochemical concentrate and a method for treating vegetation are also disclosed.Type: ApplicationFiled: June 4, 2018Publication date: April 30, 2020Applicant: Croda, Inc.Inventor: Jason Stewart Wall
-
Publication number: 20190330514Abstract: A method of dispersing asphaltenes to inhibit asphaltenes precipitation and/or deposition in a hydrocarbon is disclosed. An asphaltene dispersing agent is added to the hydrocarbon. The asphaltene dispersing agent is an ester of a mono-carboxylic fatty acid and a sugar. The sugar has at least 4 hydroxyl groups and more than one of the hydroxyl groups on the sugar are reacted with the mono-carboxylic fatty acid to form the ester. A composition comprising the asphaltene dispersing agent is also disclosed.Type: ApplicationFiled: June 20, 2017Publication date: October 31, 2019Applicant: Croda, Inc.Inventors: Xin Chen, Min Ma Wang, Craig Michael Sungail, Zhongqi Shen
-
Publication number: 20190314265Abstract: A dialkyl amidoamine which is the reaction product of a polyamine, a monocarboxylic acid, or a triglyceride or derivative thereof, and optionally an epoxide-containing compound is described. The dialkyl amidoamine may be used as a conditioning agent or anti-frizz agent useful in personal care applications, particularly in the conditioning of hair. The preparation and use of a conditioning agent and an anti-frizz agent comprising the dialkyl amidoamine are also described.Type: ApplicationFiled: October 23, 2017Publication date: October 17, 2019Applicant: Croda, Inc.Inventors: Abel Pereira, Christina Bishop, Steven Jez Uzupis, Farahdia Edouard, Marni Dexter, Erik Gunderman
-
Publication number: 20190292380Abstract: The present invention provides an aqueous binder system for a coating composition, the aqueous binder system comprising A) at least 10 wt % water, based on the total weight of the aqueous binder system; B) at least one hydroxyl-functional binder polymer; and C) from 0.1 to 20 wt %, based on the total weight of the aqueous binder system, of at least one quaternary ammonium compound, wherein the quaternary ammonium compound comprises a core quaternary ammonium group which has pendant groups which comprise i) a hydrocarbyl group having 8 to 16 carbon atoms which is a linear or branched, alkyl or alkenyl group; ii) two independent hydroxyl terminated groups, wherein each hydroxyl terminated group comprises from 1 to 10 alkylene oxide residues and wherein the total number of alkylene oxide residues in the quaternary ammonium compound is from 5 to 12; and iii) a CI to C8 hydrocarbyl group; wherein B) and C) are not covalently bonded to each other within the aqueous binder system.Type: ApplicationFiled: November 17, 2017Publication date: September 26, 2019Applicants: Croda International Plc, Croda, Inc.Inventors: Wilhelmus Adrianus Jacobus Honcoop, Barend van de Velde, Johannes Hendrik Lexmond, Mei-Ly Chua
-
Publication number: 20190183118Abstract: Spray drift reductants for agrochemical formulations for use in spray drift reduction in agrochemical formulations which contain actives and/or micronutrients. The reductants are selected from alkoxylated polyol or polyamine which is optionally acyl terminated, and the formulation may optionally comprise non-ionic alkoxylate. There is also provided a method of making the formulation, and the use of the formulation in reducing spray drift on application of the agrochemical formulation to vegetation.Type: ApplicationFiled: June 26, 2017Publication date: June 20, 2019Applicant: Croda, Inc.Inventors: Logan Peter Dempsey, Gregory James Lindner, Jinxia Susan Sun
-
Patent number: 10125306Abstract: A method of inhibiting asphaltene precipitation and/or deposition in a hydrocarbon, preferably crude oil, by adding to the hydrocarbon a polyester asphaltene dispersing agent which is the reaction product of an alk(en)yl substituted succinic anhydride wherein the average number of succinic groups per alk(en)yl group is less than 2.0, and at least one polyol.Type: GrantFiled: September 17, 2015Date of Patent: November 13, 2018Assignee: Croda, Inc.Inventors: Min Ma Wang, Craig Michael Sungail, Xin Chen, Jonathan Harry Kaufman
-
Patent number: 10081779Abstract: A method of separating oil from a composition containing an oil and water emulsion, by adding a separation additive which is a mixture of a fatty ester of an alkoxylated polyol and a fatty ester of alkoxylated glycerol, and performing at least one oil separation step. The method is particularly suitable for separating corn oil from stillage produced in a corn ethanol mill.Type: GrantFiled: January 8, 2016Date of Patent: September 25, 2018Assignee: CRODA, INC.Inventors: Min Ma Wang, Craig Michael Sungail, Xin Chen
-
Publication number: 20180143100Abstract: A wind tunnel and method of use thereof. The wind tunnel has an airflow system which is capable of delivering air vertically down through, and optionally horizontally across, a spray chamber having transparent sidewalls, wherein spray particulates produced in the spray chamber can be analyzed through the transparent sidewalls, preferably by use of a laser. The dimensions of the spray chamber are preferably greater than that of the airflow system. The use of the wind tunnel enables a wider range and more accurate spray particle measurements, especially for an agrochemical composition, to be made in a single test environment.Type: ApplicationFiled: May 9, 2016Publication date: May 24, 2018Applicant: Croda, Inc.Inventor: Gregory James Lindner
-
Publication number: 20180125064Abstract: Agrochemical emulsion-type concentrates and diluted concentrate formulations. In particular oil-in-water emulsion concentrates having an oil phase with oil soluble active, continuous water phase with an optional water soluble active, and a combination of a optionally acyl terminated alkoxylated polyol or polyamine surfactant emulsifier and a high HLB co-surfactant. Use of said surfactant emulsifier for oil-in-water agrochemical emulsion concentrates is found to provide for stable emulsion concentrates over time and under varying storage temperatures.Type: ApplicationFiled: May 9, 2016Publication date: May 10, 2018Applicant: Croda, Inc.Inventors: Gregory James Lindner, Matthew Eric Secrest
-
Patent number: 9862908Abstract: A seal swell agent for a lubricating fluid is described. The invention relates to a seal swell agent for use in lubricating oils, such as engine oils, turbine oils, automatic and manual transmission, or gear, fluids, drivetrain and gear oils and hydraulic fluids. The seal swell agent comprises a diester of sorbitol or a derivative thereof and at least one carboxylic acid. The invention extends to the use of a diester of sorbitol or a derivative thereof and at least one carboxylic acid as a seal swell agent, and a method of maintaining seal integrity.Type: GrantFiled: January 16, 2013Date of Patent: January 9, 2018Assignee: CRODA, INC.Inventors: Xin Chen, Christopher Donaghy, Alexei Nikolaevich Kurchan
-
Publication number: 20170369815Abstract: A method of separating oil from a composition containing an oil and water emulsion, by adding a separation additive which is a mixture of a fatty ester of an alkoxylated polyol and a fatty ester of alkoxylated glycerol, and performing at least one oil separation step. The method is particularly suitable for separating corn oil from stillage produced in a corn ethanol mill.Type: ApplicationFiled: January 8, 2016Publication date: December 28, 2017Applicant: Croda, Inc.Inventors: Min Ma Wang, Craig Michael Sungail, Xin Chen
-
Patent number: 9828568Abstract: A method of separating oil from a composition containing an oil and water emulsion, by adding a separation additive which is a fatty ester of alkoxylated glycerol, and performing at least one oil separation step. The method is particularly suitable for separating corn oil from stillage produced in a corn ethanol mill.Type: GrantFiled: February 3, 2017Date of Patent: November 28, 2017Assignee: CRODA, INC.Inventors: Min Ma Wang, Craig Michael Sungail, Xin Chen
-
Publication number: 20170306215Abstract: A method of inhibiting asphaltene precipitation and/or deposition in a hydrocarbon, preferably crude oil, by adding to the hydrocarbon a polyester asphaltene dispersing agent which is the reaction product of an alk(en)yl substituted succinic anhydride wherein the average number of succinic groups per alk(en)yl group is less than 2.0, and at least one polyol.Type: ApplicationFiled: September 17, 2015Publication date: October 26, 2017Applicant: CRODA, INC.Inventors: MIN MA WANG, CRAIG MICHAEL SUNGAIL, XIN CHEN, JONATHAN HARRY KAUFMAN
-
Patent number: 9745540Abstract: A method of separating oil from a liquid stillage is disclosed. The stillage includes an aqueous phase and an oil phase. The method comprises adding a separation additive to the stillage and performing at least one separation operation on the stillage to separate an amount of the oil phase from the stillage. The separation additive comprises an ester of an alkoxylated non-cyclic polyol and a fatty acid.Type: GrantFiled: July 8, 2014Date of Patent: August 29, 2017Assignee: CRODA, INC.Inventors: Craig Michael Sungail, Min Ma Wang, Xin Chen, Ronald Eugene Bingeman
-
Patent number: 9738852Abstract: A method of separating oil from a composition containing an oil and water emulsion, by adding a separation additive which is a fatty ester of alkoxylated glycerol, and performing at least one oil separation step. The method is particularly suitable for separating corn oil from stillage produced in a corn ethanol mill.Type: GrantFiled: January 8, 2016Date of Patent: August 22, 2017Assignee: Croda, Inc.Inventors: Min Ma Wang, Craig Michael Sungail, Xin Chen
-
Patent number: 9677022Abstract: The present invention relates to a lubricant base stock, a lubricant composition, a method of lubricating an object and the use of a lubricant base stock. The lubricant base stock comprises a first ester which is the reaction product of: a first polyol comprising at least 3 hydroxyl groups; a first mono-carboxylic acid comprising from 4 to 18 carbon atoms; and a poly-carboxylic acid comprising at least 2 carboxyl groups and comprising from 20 to 60 carbon atoms. The lubricant base stock also comprises a second ester which is the reaction product of: a second polyol comprising at least 3 hydroxyl groups; and a second mono-carboxylic acid comprising from 4 to 18 carbon atoms.Type: GrantFiled: August 19, 2014Date of Patent: June 13, 2017Assignee: CRODA, INC.Inventors: Jillian Carli Beyer, Alexei Nikolaevich Kurchan