Abstract: The present invention relates to a solventborne, pigmented coating composition, which comprises, based on the total amount of the coating composition, 0.02 to 0.75 wt % of at least one copolymer (A), where the copolymer (A) is obtainable by copolymerization of a mixture of olefinically unsaturated monomers (a) in at least one organic solvent and the copolymer (A) possesses a glass transition temperature Tg of at least ?30° C.
Type:
Grant
Filed:
November 20, 2015
Date of Patent:
January 28, 2020
Assignee:
BASF Coatings GmbH
Inventors:
Andreas Poppe, Norbert Loew, Cathrin Corten, Britta Schnieders, Wei Qiu Hu
Abstract: The present invention relates to the use of oligo-N,N-bis(3-aminopropyl)methylamine as hardener for epoxy resins, and also to a corresponding curable composition, curing thereof, and the cured epoxy resin obtainable therefrom.
Type:
Grant
Filed:
July 8, 2016
Date of Patent:
January 28, 2020
Assignee:
BASF SE
Inventors:
Alexander Panchenko, Monika Charrak, Ansgar Gereon Altenhoff, Thomas Reissner, Christian Krausche
Abstract: A process arrangement and a process for the production of a fiber-reinforced plastics component made of at least one continuous-fiber-reinforced semifinished textile fiber product with reactive thermoplastic matrix material, where during the manufacture of the semifinished fiber product trimming residues arise, composed of a composite made of fibers and of the reactive thermoplastic matrix material. The trimming residues obtained during the manufacture of the semifinished fiber product are supplied to a recycling unit for the provision of a recyclate as reactive, as yet unpolymerized starting material for the production of a further component.
Type:
Grant
Filed:
February 15, 2016
Date of Patent:
January 28, 2020
Assignees:
VOLKSWAGEN AKTIENGESELLSCHAFT, BASF SE
Inventors:
Thomas Mertens, Max Ehleben, Christine Kunze, Olaf Täger, Maurice Bitterlich, Katja Zeuner, Philippe Desbois, Andreas Wollny
Abstract: Disclosed herein is a process for purifying propylene oxide, including the steps of: (i) providing a stream S0 containing propylene oxide, acetonitrile, water, and an organic compound containing a carbonyl group —C(?O)—; and (ii) separating propylene oxide from the stream S0 by subjecting the stream S0 to distillation conditions in a distillation column to obtain a gaseous top stream S1c which is enriched in propylene oxide compared to the stream S0, a liquid bottoms stream S1a which is enriched in acetonitrile and water compared to the stream S0, and a side stream S1b containing propylene oxide which is enriched in the carbonyl compound compared to the stream S0.
Type:
Grant
Filed:
July 19, 2017
Date of Patent:
January 28, 2020
Assignee:
BASF SE
Inventors:
Joaquim Henrique Teles, Marvin Kramp, Christian Mueller, Nicolai Tonio Woerz, Bernd Metzen, Tobias Keller, Dominic Riedel, Markus Weber, Daniel Urbanczyk, Andrei-Nicolae Parvulescu, Ulrike Wegerle, Ulrich Mueller
Abstract: A continuous process for the preparation of propylene oxide, comprising a start-up stage and normal run stage, wherein the normal run stage comprises (i) continuously providing a liquid feed stream comprising propene, hydrogen peroxide, acetonitrile, a formate salt, water and optionally propane, wherein in the liquid feed stream, the molar amount of the formate salt relative to the molar amount of hydrogen peroxide at a given point of time during the normal run stage is aN(Fo/H2O2); (ii) continuously passing the liquid feed stream provided in (i) into an epoxidation zone comprising a catalyst comprising a titanium zeolite having framework type MWW, and subjecting the liquid feed stream to epoxidation reaction conditions in the epoxidation zone, obtaining a reaction mixture comprising propylene oxide, acetonitrile, water, the formate salt, optionally propene, and optionally propane; (iii) continuously removing an effluent stream from the epoxidation zone, the effluent stream comprising propylene oxide, acetoni
Type:
Grant
Filed:
February 16, 2017
Date of Patent:
January 28, 2020
Assignee:
BASF SE
Inventors:
Dominic Riedel, Joaquim Henrique Teles, Heiner Schelling, Ulrike Wegerle, Ulrich Mueller, Andrei-Nicolae Parvulescu, Jochen Mannweiler, Timo Henn, Thomas Luederitz, Nicolai Tonio Woerz, Christian Mueller, Markus Weber, Daniel Urbanczyk
Abstract: The present invention relates to a process for producing a molding made from blowing agent-containing foam comprising at least one fiber (F), wherein the at least one fiber (F) is partially introduced into the blowing agent-containing foam. The two ends of the respective fiber (F) that are not surrounded by the blowing agent-containing foam thus project from one side of the corresponding molding. The present invention also provides the molding as such. The present invention further provides a panel comprising at least one such molding, produced by the process according to the invention, and at least one further layer (S1). The present invention also provides for the production of the panels of the invention and for the use thereof, for example as a rotor blade in wind turbines.
Type:
Grant
Filed:
December 15, 2015
Date of Patent:
January 28, 2020
Assignee:
BASF SE
Inventors:
Holger Ruckdäschel, Rene Arbter, Robert Stein, Daniela Longo-Schedel, Tim Diehlmann, Bangaru Sampath, Peter Gutmann, Alexandre Terrenoire, Markus Hartenstein, Andreas Kirgis, Alessio Morino, Gregor Daun, Marc Claude Martin, Peter Merkel, Thomas Kiciak
Abstract: The present application discloses a recombinant fiber-selective promoter region comprising a DNA molecule comprising a fiber specificity region of a cotton lipid transfer protein gene promoter, operably linked to a DNA molecule comprising a nucleotide sequence having at least 90% sequence identity to a nucleotide sequence of about 500 consecutive nucleotides of the 3? end of the FB8-like 2 promoter and use thereof to increase fiber-selective expression of products of interest in cotton fiber cells.
Abstract: The present invention relates to a process for the preparation of limonene-4-ol by an epoxide ring opening isomerization of terpinolene epoxide.
Type:
Grant
Filed:
April 22, 2016
Date of Patent:
January 21, 2020
Assignee:
BASF Agro B.V.
Inventors:
Bernd Wolf, Michael Rack, Stefan Benson, Helmut Kraus, Roland Goetz, Sukunath Narayanan, Chidambaram Rishinaradamangalam
Abstract: Methods and means are provided to modify in a targeted manner the genome of a plant in close proximity to an existing elite event using a double stranded DNA break inducing enzyme. Also provided are plants, in particular cotton plants showing tolerance to a field dose of at least 1X of at least one HPPD inhibitor, and methods for making such plants.
Type:
Grant
Filed:
August 14, 2012
Date of Patent:
January 21, 2020
Assignee:
BASF AGRICULTURAL SOLUTIONS SEED, US LLC
Abstract: The present invention relates to pesticidal mixtures comprising one biological compound selected from the group consisting of Beauveria bassiana PPRI 5339, Metarhizium anisopliae FI-1045, Metarhizium anisopliae var. acridum FI-985 and Metarhizium anisopliae var. acridum IMI 330189 and one fungicidal or insecticidal or plant growth regulating compound and respective agricultural uses thereof.
Type:
Grant
Filed:
November 12, 2013
Date of Patent:
January 21, 2020
Assignee:
BASF Corporation
Inventors:
Lutz Brahm, Burghard Liebmann, Ronald Wilhelm, Markus Gewehr
Abstract: Composition and methods of making the compositions are provided. The composition may include an aqueous emulsion of a polymer resin and a hydrophobic monomer with the proviso that the composition is surfactant-free; wherein the support resin may be a styrene-acrylic resin or acrylic resin having from about 5 wt % to about 40 wt % acid functional repeat units.
Abstract: Provided are aqueous resin solutions having unique rheologies and products incorporating the same. The water-based materials provided herein are thermo-thickening, and the materials increase dramatically in viscosity (at least 100 times) in a desired temperature range increase (20 C to <100 C) at ambient pressure. Suitable resins comprising a hydrophobic group and a hydrophilic group may be selected from an epoxy resin, a phenol-formaldehyde resin, a polyurethane resin, an acrylic resin, a polyester resin, an acrylic-urethane resin, a melamine resin, a melamine-formaldehyde resin, an amino resin, and combinations thereof. A specific epoxy functional resin/polymer suitable for the resin solutions are prepared by reacting (A) an epoxy pre-polymer of (1) one or more polyols and (2) one or more epoxy functional materials with (B) a di- or polyamine, thereby forming the aqueous thermo-thickening resin solution. The resin solutions are substantially free of cross-linking agents.
Type:
Grant
Filed:
September 10, 2015
Date of Patent:
January 21, 2020
Assignee:
BASF Coatings GmbH
Inventors:
Charles L. Tazzia, Mark D. Swartzlander
Abstract: The present invention relates to a process for continuous hydrogenation of a nitro compound to the corresponding amine in a liquid reaction mixture comprising the nitro compound in the presence of a supported catalyst which comprises as the active component at least one element from groups 7 to 12 of the periodic table of the elements, wherein the hydrogenation is performed in the presence of at least one salt selected from the group consisting of the salts of the alkali metals, alkaline earth metals and of the rare earth metals and to a supported catalyst for continuous hydrogenation of a nitro compound to the corresponding amine in a liquid reaction mixture comprising the nitro compound which comprises as the active component at least one element from groups 7 to 12 of the periodic table of the elements and one salt of the alkali metals, alkaline earth metals or of the rare earth metals.
Type:
Grant
Filed:
October 10, 2017
Date of Patent:
January 21, 2020
Assignee:
BASF SE
Inventors:
Armin Lange de Oliveira, Barbara Wucher, Christian Bechtold, Michael Friko, Renate Hempel
Abstract: A process for producing an activated monomer composition comprising at least one lactam and/or lactone, one catalyst, and one activator permits storage of the resultant monomer composition, since this is stable with respect to polymerization. Said monomer composition is used inter alia in producing a polyamide molding via ring-opening, anionic polymerization.
Type:
Grant
Filed:
October 7, 2011
Date of Patent:
January 21, 2020
Assignee:
BASF SE
Inventors:
Dietrich Scherzer, Philippe Desbois, Volker Warzelhan, Andreas Wollny, Andreas Radtke, Axel Wilms, Martin Klatt
Abstract: Compositions including polyaspartic acid and methods for preparing polyaspartic acid using a precondensate of aspartic acid and polyaspartimide are provided herein. Uses for such compositions are also described.
Type:
Grant
Filed:
December 1, 2015
Date of Patent:
January 21, 2020
Assignee:
BASF SE
Inventors:
Gazi Tuerkoglu, Juergen Detering, Dietrich Fehringer, Christian Benz
Abstract: A process of forming an ethynylation catalyst includes providing a slurry including water, a copper-containing material, a bismuth-containing material, a structural material, and a binder; spray-drying the slurry to form particles; and calcining the particles to form the ethynylation catalyst.
Type:
Grant
Filed:
August 23, 2016
Date of Patent:
January 21, 2020
Assignee:
BASF CORPORATION
Inventors:
Rostam Jal Madon, Peter Nagel, Keenan Lee Deutsch, Deepak S. Thakur
Abstract: The present invention provides a plant or plant part comprising a polynucleotide encoding a wildtype or mutant TriA polypeptide, the expression of said polynucleotide confers to the plant or plant part tolerance to herbicides.
Type:
Grant
Filed:
January 20, 2016
Date of Patent:
January 21, 2020
Assignee:
BASF SE
Inventors:
Doreen Schachtschabel, Birgit Steinhardt, Mihiret Tekeste Sisay, Stefan Tresch, Julia Major, Florian Vogt, Frederick Calo, Jens Lerchl
Abstract: An electrolyte composition (A) containing (i) at least one aprotic organic solvent; (ii) at least one conducting salt; (iii) at least one compound of formula (I) wherein X1 and X2 are independently from each other selected from N(R1), P(R1), O, and S, Y1 and Y2 are independently from each other selected from (O), (S), (PR2) and (NR2); and electrochemical cells containing electrolyte composition (A).
Type:
Grant
Filed:
June 14, 2017
Date of Patent:
January 21, 2020
Assignee:
BASF SE
Inventors:
Frederick Francois Chesneau, Zoltan Baan, Boris Gaspar, Michael Schmidt, Arnd Garsuch, Hannes Wolf, Klaus Leitner, Christian Saffert, Wolfgang Klaus, Melanie Kuhl