Patents by Inventor Helmut Leibinger
Helmut Leibinger 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: 20250171352Abstract: CO2 is produced in a cement clinker line by (i) converting a CaCO3 comprising raw meal into calcined raw meal and at least CO2 and/or sintering calcined raw meal in a kiln, there-by obtaining at least cement clinker and optionally CO2. The CO2 emission of the cement clinker line can be significantly reduced by, dissolving at least a portion of the CO2 in a first carboxylic acid and/or a first sulfonic acid and reducing the dissolved CO2 electrolytically at a cathode of an electrolytic cell to a second carboxylic acid and/or a second sulfonic acid, wherein the first carboxylic acid and/or first sulfonic acid is used as a protonic aqueous electrolyte.Type: ApplicationFiled: August 27, 2024Publication date: May 29, 2025Inventors: Philipp Stadler, Michael Haas, Helmut Leibinger
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Patent number: 10457599Abstract: In methods of and/or plants for manufacturing cement clinker, the amount of chloride bypass exhaust gas 79 can be substantially decreased, when using previously cooled chloride bypass exhaust gas 81 and/or cooled kiln exhaust gas as coolant for the chloride bypass exhaust gas 39 prior to deducting the chloride bypass exhaust gas 39.Type: GrantFiled: January 8, 2018Date of Patent: October 29, 2019Assignee: SÜDBAYERISCHES PORTLAND-ZEMENTWERK GEBR. WIESBÖCK & CO. GMBHInventor: Helmut Leibinger
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Patent number: 10392303Abstract: A method for manufacturing clinker including the steps of sintering raw meal in a kiln to clinker, preheating the raw meal in a preheater using a main flue gas stream from the kiln as a heat source, dedusting the main flue gas downstream from the preheater at a temperature below the boiling point of mercury, thereby obtaining mercury-loaded dust and withdrawing a bypass flue gas stream from the kiln. Implementation of the method results in efficient removal of the mercury from the process if mercury in the bypass flue gas is evaporated by injecting at least a fraction of the mercury-loaded dust into the bypass flue gas stream. Subsequently, the bypass flue gas is dedusted and cooled down. The mercury can be adsorbed by injecting an adsorbent like activated charcoal into the bypass flue gas. With the subsequent removal of the adsorbent, mercury is finally removed from the process.Type: GrantFiled: September 13, 2018Date of Patent: August 27, 2019Assignee: SÜDBAYERISCHES PORTLAND-ZEMENTWERK GEBR. WIESBÖCK & CO. GMBHInventor: Helmut Leibinger
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Patent number: 10392302Abstract: A method for manufacturing clinker includes sintering raw meal in a kiln to clinker, preheating the raw meal (prior to sintering the raw meal) in a preheater using a main flue gas stream from the kiln as heat source, dedusting the main flue gas downstream of the preheater at a temperature below the boiling point of mercury (thereby obtaining mercury loaded dust) and withdrawing a bypass flue gas stream from the kiln. The method is configured to efficiently remove mercury from the manufacturing process if mercury in the bypass flue gas is vaporized by injecting of at least a fraction of the mercury-loaded dust into the bypass flue gas stream. Subsequently, the bypass flue gas is dedusted and cooled down. Thereby, the mercury can be adsorbed by injecting an adsorbent (such as activated charcoal) into the bypass flue gas. With subsequent removal of the adsorbent, mercury is finally removed from the manufacturing process.Type: GrantFiled: September 13, 2018Date of Patent: August 27, 2019Assignee: SÜDBAYERISCHES PORTLAND-ZEMENTWERK GEBR. WIESBÖCK & CO. GMBHInventor: Helmut Leibinger
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Publication number: 20190010088Abstract: A method for manufacturing clinker includes sintering raw meal in a kiln to clinker, preheating the raw meal (prior to sintering the raw meal) in a preheater using a main flue gas stream from the kiln as heat source, dedusting the main flue gas downstream of the preheater at a temperature below the boiling point of mercury (thereby obtaining mercury loaded dust) and withdrawing a bypass flue gas stream from the kiln. The method is configured to efficiently remove mercury from the manufacturing process if mercury in the bypass flue gas is vaporized by injecting of at least a fraction of the mercury-loaded dust into the bypass flue gas stream. Subsequently, the bypass flue gas is dedusted and cooled down. Thereby, the mercury can be adsorbed by injecting an adsorbent (such as activated charcoal) into the bypass flue gas. With subsequent removal of the adsorbent, mercury is finally removed from the manufacturing process.Type: ApplicationFiled: September 13, 2018Publication date: January 10, 2019Inventor: Helmut Leibinger
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Publication number: 20190010089Abstract: A method for manufacturing clinker including the steps of sintering raw meal in a kiln to clinker, preheating the raw meal in a preheater using a main flue gas stream from the kiln as a heat source, dedusting the main flue gas downstream from the preheater at a temperature below the boiling point of mercury, thereby obtaining mercury-loaded dust and withdrawing a bypass flue gas stream from the kiln. Implementation of the method results in efficient removal of the mercury from the process if mercury in the bypass flue gas is evaporated by injecting at least a fraction of the mercury-loaded dust into the bypass flue gas stream. Subsequently, the bypass flue gas is dedusted and cooled down. The mercury can be adsorbed by injecting an adsorbent like activated charcoal into the bypass flue gas. With the subsequent removal of the adsorbent, mercury is finally removed from the process.Type: ApplicationFiled: September 13, 2018Publication date: January 10, 2019Inventor: Helmut Leibinger
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Publication number: 20180127312Abstract: In methods of and/or plants for manufacturing cement clinker, the amount of chloride bypass exhaust gas 79 can be substantially decreased, when using previously cooled chloride bypass exhaust gas 81 and/or cooled kiln exhaust gas as coolant for the chloride bypass exhaust gas 39 prior to deducting the chloride bypass exhaust gas 39.Type: ApplicationFiled: January 8, 2018Publication date: May 10, 2018Inventor: Helmut LEIBINGER
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Patent number: 9938188Abstract: To produce cement clinker by baking of raw meal in a kiln, use is conventionally made of a raw meal preheater in which the heat of the flue gas emerging from the kiln is transferred to the raw meal. In order to remove impurities which accumulate in circulation between the kiln and the raw meal preheater, a part of the flue gas is extracted from the kiln, bypassing the raw meal preheater. The heat generated during the baking of cement clinker can be used particularly efficiently if the flue gases extracted and diverted past the raw meal preheater are used in a boiler to generate hot steam which can subsequently be expanded in a turbine.Type: GrantFiled: November 26, 2013Date of Patent: April 10, 2018Assignee: SUDBAYERISCHES PORTLAND-ZEMENTWERK GEBR. WIESBOCK & CO. GMBHInventor: Helmut Leibinger
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Patent number: 9873635Abstract: In a device for baking of clinker, heat generated in a furnace can be used in a particularly efficient and versatile manner if the heat generated in the furnace is transferred, by means of at least one first heat exchanger, to a heat carrier fluid, the heated heat carrier fluid is transported to at least one second heat exchanger, and the heat is then discharged to a heat sink, for example, in order to heat a flow of flue gas to a temperature required for denitrification thereof.Type: GrantFiled: November 26, 2013Date of Patent: January 23, 2018Assignee: SUDBAYERISCHES PORTLAND-ZEMENTWERK GEBR. WIESBOCK & CO. GMBHInventor: Helmut Leibinger
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Publication number: 20140174324Abstract: To produce cement clinker by baking of raw meal in a kiln, use is conventionally made of a raw meal preheater in which the heat of the flue gas emerging from the kiln is transferred to the raw meal. In order to remove impurities which accumulate in circulation between the kiln and the raw meal preheater, a part of the flue gas is extracted from the kiln, bypassing the raw meal preheater. The heat generated during the baking of cement clinker can be used particularly efficiently if the flue gases extracted and diverted past the raw meal pre-heater are used in a boiler to generate hot steam which can subsequently be expanded in a turbine.Type: ApplicationFiled: November 26, 2013Publication date: June 26, 2014Applicant: Südbayerisches Portland-Zementwerk Gebr. Wiesböck & Co. GmbHInventor: Helmut Leibinger
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Publication number: 20140087319Abstract: In a device for baking of clinker in a clinker, the heat generated in the furnace can be used in a particularly efficient and versatile manner if heat generated in the furnace is transferred, by means of a first heat exchanger, to a heat carrier fluid, the heated heat carrier fluid is transported through at least one line to at least one second heat exchanger, and the heat is then discharged to a heat sink, for example in order to heat a flow of flue gas to a temperature required for the dentitrifiaction thereof.Type: ApplicationFiled: November 26, 2013Publication date: March 27, 2014Applicant: Südbayerisches Portland-Zementwerk Gebr. Wiesböck & Co. GmbHInventor: Helmut Leibinger