Patents by Inventor Michael Krämer
Michael Krämer 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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Patent number: 10640330Abstract: A safety device of a lift system may include a car, an evaluation device, and a measuring device. Conditions where departure from a door zone with an open car door or where impermissible accelerations/speeds are reached within the door zone are identifiable by way of the evaluation device and output signals from the measuring device. In such conditions, a control signal may be generated for braking the car. A safety circuit may be connected to the evaluation device and ensure a first safe zone in a shaft head of a lift shaft during an inspection run. The safety circuit may have a safety switch, and the car may include a tripping means for tripping the safety switch. The safety switch and the tripping means have a first relative position upon which the first safe zone is based, and entry of the car into the first safe zone during the inspection run is preventable by tripping the safety switch, which leads to generation of the control signal and braking of the car.Type: GrantFiled: June 20, 2016Date of Patent: May 5, 2020Assignees: THYSSENKRUPP ELEVATOR AG, THYSSENKRUPP AGInventor: Michael Krämer
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Patent number: 10307741Abstract: The invention relates to shaped catalyst bodies for the oxidation of SO2 to SO3, which comprise vanadium, at least one alkali metal and sulfate on a silicon dioxide support material, wherein the shaped body has the shape of a cylinder having 3 or 4 hollow-cylindrical convexities, obtainable by extrusion of a catalyst precursor composition comprising vanadium, at least one alkali metal and sulfate on a silicon dioxide support material through the opening of an extrusion tool, wherein the opening of the extrusion tool has a cross section formed by 3 or 4 partly overlapping rings whose midpoints lie essentially on a circular line having a diameter of y, wherein the rings are bounded by an outer line lying on a circle having an external diameter x1 and an inner line lying on a circle having an internal diameter x2.Type: GrantFiled: March 16, 2016Date of Patent: June 4, 2019Assignee: BASF SEInventors: Philipp Grüne, Christian Walsdorff, Markus Schubert, Holger Borchert, Jacob Cornelis Van Dorland, Jürgen Zühlke, Stefan Lipp, Michael Krämer
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Publication number: 20180186600Abstract: A safety device of a lift system may include a car comprising an evaluation device and a measuring device. Conditions where departure from a door zone with an open car door or where impermissible accelerations/speeds are reached within the door zone are identifiable by way of the evaluation device and output signals from the measuring device. In such conditions, a control signal may be generated for braking the car. A safety circuit may be connected to the evaluation device and ensure a first safe zone in a shaft head of a lift shaft during an inspection run. The safety circuit may have a safety switch, and the car may include a tripping means for tripping the safety switch. The safety switch and the tripping means have a first relative position upon which the first safe zone is based, and entry of the car into the first safe zone during the inspection run is preventable by tripping the safety switch, which leads to generation of the control signal and braking of the car.Type: ApplicationFiled: June 20, 2016Publication date: July 5, 2018Applicants: ThyssenKrupp Elevator AG, thyssenkrupp AGInventor: Michael KRÄMER
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Patent number: 9981527Abstract: A vehicle heater includes a plurality of heating units (12, 14) as well as a heat exchanger device (32) for transmitting heat provided in the heating units (12, 14) to a heat carrier medium (M). The heat exchanger device (32) includes, associated with each heating unit (12, 14), a heat exchanger zone for transmitting heat provided in the heating unit (12, 14) to the heat carrier medium (M).Type: GrantFiled: March 19, 2015Date of Patent: May 29, 2018Assignee: Eberspächer Climate Control Systems GmbH & Co. KGInventor: Michael Krämer
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Publication number: 20180104674Abstract: The invention relates to shaped catalyst bodies for the oxidation of SO2 to SO3, which comprise vanadium, at least one alkali metal and sulfate on a silicon dioxide support material, wherein the shaped body has the shape of a cylinder having 3 or 4 hollow-cylindrical convexities, obtainable by extrusion of a catalyst precursor composition comprising vanadium, at least one alkali metal and sulfate on a silicon dioxide support material through the opening of an extrusion tool, wherein the opening of the extrusion tool has a cross section formed by 3 or 4 partly overlapping rings whose midpoints lie essentially on a circular line having a diameter of y, wherein the rings are bounded by an outer line lying on a circle having an external diameter x1 and an inner line lying on a circle having an internal diameter x2.Type: ApplicationFiled: March 16, 2016Publication date: April 19, 2018Applicant: BASF SEInventors: PHILIPP GRÜNE, Christian WALSDORFF, Markus SCHUBERT, Holger BORCHERT, Jacob Cornelis VAN DORLAND, Jürgen ZÜHLKE, Stefan LIPP, Michael KRÄMER
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Patent number: 9868713Abstract: The present invention relates to a catalyst system for oxidation of o-xylene and/or naphthalene to phthalic anhydride (PA), comprising a plurality of catalyst zones arranged in succession in the reaction tube, which have been produced using antimony trioxide comprising a noticeable proportion of senarmontite wherein some of the primary crystallites have a size of less than 200 nm. The present invention further relates to a process for gas phase oxidation, in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst system which comprises a plurality of catalyst zones arranged in succession in the reaction tube and which has been produced using an antimony trioxide comprising a noticeable proportion of senarmontite wherein some of the primary crystallites have a size of less than 200 nm.Type: GrantFiled: February 17, 2015Date of Patent: January 16, 2018Assignee: BASF SEInventors: Nico F. Fischer, Diana C. Galeano Nunez, Michael Krämer, Markus Schubert, Jürgen Zühlke, Hans-Martin Allmann
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Patent number: 9765046Abstract: The present invention relates to a process for preparing phthalic anhydride by gas phase oxidation of aromatic hydrocarbons, in which a gas stream comprising at least one aromatic hydrocarbon and molecular oxygen is passed continuously over a thermostatted catalyst and the supply of the at least one aromatic hydrocarbon to the catalyst is temporarily interrupted after putting the catalyst on stream.Type: GrantFiled: June 16, 2014Date of Patent: September 19, 2017Assignee: BASF SEInventors: Nico F. Fischer, Michael Krämer, Jürgen Zühlke, Hans-Martin Allmann
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Patent number: 9656983Abstract: A process for preparing carboxylic acids and/or carboxylic anhydrides by gas phase oxidation of aromatic hydrocarbons, in which a gas stream comprising at least one aromatic hydrocarbon and molecular oxygen is passed continuously over a catalyst thermostatted by a heat carrier medium, which comprises keeping the temperature of the heat carrier medium constant during the startup of the reactor for at least 24 hours, during which neither the loading of the gas stream with hydrocarbons nor the gas stream volume is increased by more than 3%.Type: GrantFiled: June 16, 2014Date of Patent: May 23, 2017Assignee: BASF SEInventors: Michael Krämer, Nico F. Fischer, Jürgen Zühlke, Hans-Martin Allmann
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Publication number: 20170008866Abstract: The present invention relates to a catalyst system for oxidation of o-xylene and/or naphthalene to phthalic anhydride (PA), comprising a plurality of catalyst zones arranged in succession in the reaction tube, which have been produced using antimony trioxide comprising a noticeable proportion of senarmontite wherein some of the primary crystallites have a size of less than 200 nm. The present invention further relates to a process for gas phase oxidation, in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst system which comprises a plurality of catalyst zones arranged in succession in the reaction tube and which has been produced using an antimony trioxide comprising a noticeable proportion of senarmontite wherein some of the primary crystallites have a size of less than 200 nm.Type: ApplicationFiled: February 17, 2015Publication date: January 12, 2017Inventors: Nico F. FISCHER, Diana C. GALEANO NUNEZ, Michael KRÄMER, Markus SCHUBERT, Jürgen ZÜHLKE, Hans-Martin ALLMANN
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Publication number: 20160152586Abstract: A process for preparing carboxylic acids and/or carboxylic anhydrides by gas phase oxidation of aromatic hydrocarbons, in which a gas stream comprising at least one aromatic hydrocarbon and molecular oxygen is passed continuously over a catalyst thermostatted by a heat carrier medium, which comprises keeping the temperature of the heat carrier medium constant during the startup of the reactor for at least 24 hours, during which neither the loading of the gas stream with hydrocarbons nor the gas stream volume is increased by more than 3%.Type: ApplicationFiled: June 16, 2014Publication date: June 2, 2016Applicant: BASF SEInventors: Michael KRÄMER, Nico F. FISCHER, Jürgen ZÜHLKE, Hans-Martin ALLMANN
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Publication number: 20160145226Abstract: The present invention relates to a process for preparing phthalic anhydride by gas phase oxidation of aromatic hydrocarbons, in which a gas stream comprising at least one aromatic hydrocarbon and molecular oxygen is passed continuously over a thermostatted catalyst and the supply of the at least one aromatic hydrocarbon to the catalyst is temporarily interrupted after putting the catalyst on stream.Type: ApplicationFiled: June 16, 2014Publication date: May 26, 2016Inventors: Nico F. FISCHER, Michael KRÄMER, Jürgen ZÜHLKE, Hans-Martin ALLMANN
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Patent number: 9212157Abstract: The present invention relates to a catalyst for the oxidation of o-xylene and/or naphthalene to phthalic anhydride, which has a plurality of catalyst zones which are arranged in series in the reaction tube and have been produced using an antimony trioxide which comprises a significant proportion of valentinite. The present invention further relates to a process for gas-phase oxidation, in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst produced using an antimony trioxide which comprises a significant proportion of valentinite.Type: GrantFiled: July 29, 2011Date of Patent: December 15, 2015Assignee: BASF SEInventors: Stefan Altwasser, Jürgen Zühlke, Frank Rosowski, Michael Krämer
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Publication number: 20150266355Abstract: A vehicle heater includes a plurality of heating units (12, 14) as well as a heat exchanger device (32) for transmitting heat provided in the heating units (12, 14) to a heat carrier medium (M). The heat exchanger device (32) includes, associated with each heating unit (12, 14), a heat exchanger zone for transmitting heat provided in the heating unit (12, 14) to the heat carrier medium (M).Type: ApplicationFiled: March 19, 2015Publication date: September 24, 2015Inventor: Michael KRÄMER
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Patent number: 9029289Abstract: The present invention relates to a catalyst for preparing carboxylic acids and/or carboxylic anhydrides, which has a plurality of catalyst zones arranged in series and has been produced using a vanadium antimonate having a maximum content of crystalline valentinite of 5% by weight. The present invention further relates to a process for gas-phase oxidation in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst which has a plurality of catalyst zones arranged in series and has been produced using a vanadium antimonate having a maximum content of crystalline valentinite of 5% by weight.Type: GrantFiled: July 16, 2013Date of Patent: May 12, 2015Assignee: BASF SEInventors: Michael Krämer, Jürgen Zühlke, Stefan Altwasser, Nico Frederik Fischer, Frank Rosowski, Hans-Martin Allmann
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Publication number: 20140018550Abstract: The present invention relates to a catalyst for preparing carboxylic acids and/or carboxylic anhydrides, which has a plurality of catalyst zones arranged in series and has been produced using a vanadium antimonate having a maximum content of crystalline valentinite of 5% by weight. The present invention further relates to a process for gas-phase oxidation in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst which has a plurality of catalyst zones arranged in series and has been produced using a vanadium antimonate having a maximum content of crystalline valentinite of 5% by weight.Type: ApplicationFiled: July 16, 2013Publication date: January 16, 2014Inventors: Michael Krämer, Jürgen Zühlke, Stefan Altwasser, Nico Frederik Fischer, Frank Rosowski, Hans-Martin Allmann
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Patent number: 8609906Abstract: A process for preparing C1-C4-oxygenates from a reactant stream A which comprises essentially a C1-C4-alkane or a mixture of C1-C4-alkanes, by a) branching off a substream B of the reactant stream A and allowing it to react in a reactor with oxygen or an oxygenous gas stream C, which converts a portion of the C1-C4-alkane or a portion of the mixture which comprises C1-C4-alkanes to C1-C4-oxygenates, b) removing at least 90 mol % of the C1-C4-oxygenates formed from the product stream D resulting from step a) to form a remaining low boiler stream E, which comprises combining the low boiler stream E with the reactant stream A without further workup and without combination with the substream B down-stream of the branching site of the substream B.Type: GrantFiled: December 14, 2010Date of Patent: December 17, 2013Assignee: BASF SEInventors: Annebart Engbert Wentink, Stefan Altwasser, Yan Li, Michael Krämer, Frank Rosowski, Catharina Horstmann
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Patent number: 8323610Abstract: The invention relates to a catalyst for the oxidation of SO2 to SO3. The catalyst contains an active substance which contains vanadium, alkali metal compounds and sulfate applied to a support. The support contains naturally occurring diatomaceous earth, wherein the support contains at least one relatively soft naturally occurring uncalcined diatomaceous earth which has a percentage reduction of at least 35% in its D50 value determined in a particle size determination according to the dry method in comparison with the wet method.Type: GrantFiled: April 12, 2011Date of Patent: December 4, 2012Assignee: BASF SEInventors: Michael Krämer, Markus Schubert, Thomas Lautensack, Thomas Hill, Reinhard Körner, Frank Rosowski, Jürgen Zühlke
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Publication number: 20120029214Abstract: The present invention relates to a catalyst for the oxidation of o-xylene and/or naphthalene to phthalic anhydride, which has a plurality of catalyst zones which are arranged in series in the reaction tube and have been produced using an antimony trioxide which comprises a significant proportion of valentinite. The present invention further relates to a process for gas-phase oxidation, in which a gas stream comprising at least one hydrocarbon and molecular oxygen is passed through a catalyst produced using an antimony trioxide which comprises a significant proportion of valentinite.Type: ApplicationFiled: July 29, 2011Publication date: February 2, 2012Applicant: BASF SEInventors: Stefan Altwasser, Jürgen Zühlke, Frank Rosowski, Michael Krämer
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Patent number: 8008201Abstract: Aqueous cerium oxide dispersion Aqueous cerium oxide dispersion, containing 5 to 60% by weight cerium oxide. It can be used to polish SiO2 in the semiconductor industry.Type: GrantFiled: March 8, 2006Date of Patent: August 30, 2011Assignee: Evonik Degussa GmbHInventors: Michael Kröll, Stefan Heberer, Stipan Katusic, Michael Krämer, Wolfgang Lortz
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Publication number: 20110144387Abstract: A process for preparing C1-C4-oxygenates from a reactant stream A which comprises essentially a C1-C4-alkane or a mixture of C1-C4-alkanes, by a) branching off a substream B of the reactant stream A and allowing it to react in a reactor with oxygen or an oxygenous gas stream C, which converts a portion of the C1-C4-alkane or a portion of the mixture which comprises C1-C4-alkanes to C1-C4-oxygenates, b) removing at least 90 mol % of the C1-C4-oxygenates formed from the product stream D resulting from step a) to form a remaining low boiler stream E, which comprises combining the low boiler stream E with the reactant stream A without further workup and without combination with the substream B down-stream of the branching site of the substream B.Type: ApplicationFiled: December 14, 2010Publication date: June 16, 2011Applicant: BASF SEInventors: ANNEBART ENGBERT WENTINK, STEFAN ALTWASSER, YAN LI, MICHAEL KRÄMER, FRANK ROSOWSKI, CATHARINA HORSTMANN