Patents by Inventor Bandar SOLAMI
Bandar SOLAMI 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: 20260061384Abstract: An autothermal ammonia reactor includes a chamber, a hydrogen-separation membrane within the chamber, and an ammonia decomposition catalyst. The chamber receives ammonia and air. The chamber including a combustion zone, a catalytic zone, and a hydrogen zone. The catalytic zone is in thermal communication with the combustion zone. The chamber directs the air and a portion of the ammonia from the fluid inlet to the combustion zone to allow the air and ammonia to exothermically react to generate thermal energy. The chamber directs another portion of the ammonia into the catalytic zone to decompose into hydrogen and nitrogen as the ammonia is exposed to the thermal energy from the combustion zone and contacts the catalyst. The chamber directs the hydrogen from the catalytic zone, through a surface of the hydrogen-separation membrane, to the hydrogen zone to allow the hydrogen to exit the chamber through the fluid outlet.Type: ApplicationFiled: September 4, 2024Publication date: March 5, 2026Inventors: Osamah Siddiqui, Bandar Solami
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Publication number: 20260015227Abstract: A fixed adsorbent and catalyst bed containing system includes two or more first reactors in a reaction (RM) mode and two or more second reactors in a regeneration (RGM) mode that are sequentially operable and positioned in parallel. The two or more first reactors in the RM mode are configured to simultaneously in-situ decompose NH3 by a catalyst and selectively adsorb N2 by an adsorbent. At a substantially same time, the two or more second reactors in the RGM mode are configured to continuously regenerate the catalyst after decomposing the NH3 and the adsorbent after adsorbing the N2. A moving adsorbent bed and fixed catalyst bed containing system and a dual fluidized bed containing system are also provided. The present invention also relates to methods for decomposing ammonia (NH3) to nitrogen (N2) and hydrogen (H2).Type: ApplicationFiled: July 11, 2024Publication date: January 15, 2026Inventors: Osamah Siddiqui, Bandar Solami, Mohammad Abdur Rakib
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Publication number: 20250187915Abstract: A method of dry reforming methane with CO2 using a bi-metallic nickel and ruthenium-based catalyst. A dry reformer having the bimetallic catalyst as reforming catalyst, and a method of producing syngas with the dry reformer.Type: ApplicationFiled: February 18, 2025Publication date: June 12, 2025Inventors: Kunho Lee, Sai P. Katikaneni, Aadesh Harale, Bandar Solami
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Patent number: 12258272Abstract: A method of dry reforming methane with CO2 using a bi-metallic nickel and ruthenium-based catalyst. A dry reformer having the bimetallic catalyst as reforming catalyst, and a method of producing syngas with the dry reformer.Type: GrantFiled: August 12, 2021Date of Patent: March 25, 2025Assignee: Saudi Arabian Oil CompanyInventors: Kunho Lee, Sai P. Katikaneni, Aadesh Harale, Bandar Solami
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Publication number: 20240375040Abstract: A system and method for removing, via a moving bed of sorbent, carbon dioxide from a reaction mixture in a reactor having a first region of a fixed bed of catalyst and a second region of the moving bed of sorbent separated from the first region by a perforated partition, performing in the reactor via the catalyst a reaction of reactants giving products of the reaction including at least a first product and carbon dioxide, sorbing carbon dioxide in the reactor by the sorbent to remove carbon dioxide from the reaction mixture having the reactants and the products, flowing sorbent having sorbed carbon dioxide from the reactor to a regenerator, heating the sorbent in the regenerator to remove sorbed carbon dioxide giving regenerated sorbent, flowing the regenerated sorbent to the reactor, and discharging an effluent including at least the first product from the reactor.Type: ApplicationFiled: May 9, 2023Publication date: November 14, 2024Inventors: Mohammad Abdur Rakib, Osamah Siddiqui, Aadesh Harale, Sai P. Katikaneni, Salman Khaldi, Bandar Solami
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Publication number: 20240173688Abstract: The disclosure relates to solar-based reactor tubes and related systems and methods. In general, the reactor tube includes an exterior cylinder, a cylindrical hydrogen-permeable membrane disposed in an interior space of the exterior cylinder, an annular space defined by an outer surface of the cylindrical hydrogen-permeable membrane and an inner surface of the exterior cylinder, a catalyst, and a heating element. A first gas stream and a second gas stream can be configured to pass through the reactor tube. The systems can be used to produce hydrogen (e.g., from ammonia cracking).Type: ApplicationFiled: November 30, 2022Publication date: May 30, 2024Inventors: Osamah Siddiqui, Sai P. Katikaneni, Bandar Solami, Stephen N. Paglieri, Mohammad Abdur Rakib, Kunho Lee
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Publication number: 20230416179Abstract: A system and method for producing dimethyl ether (DME) via dry reforming and DME synthesis in the same vessel, including converting methane and carbon dioxide in the vessel into syngas (including hydrogen and carbon monoxide) via dry reforming in the vessel, cooling the syngas via a heat exchanger in the vessel, and synthesizing DME from the syngas in the vessel.Type: ApplicationFiled: September 7, 2023Publication date: December 28, 2023Inventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Patent number: 11806700Abstract: A method for ammonia decomposition to produce hydrogen, the method comprising the steps of introducing an ammonia stream to a reactor, wherein the ammonia stream comprises ammonia, wherein the reactor comprises a cobalt-based catalyst, the cobalt-based catalyst comprising 15 wt % and 70 wt % of cobalt, 5 wt % and 45 wt % of cerium, and 0.4 wt % and 0.5 wt % barium, wherein a remainder of weight of the cobalt-based catalyst is oxygen; contacting the ammonia in the ammonia stream with the cobalt-based catalyst, wherein the cobalt-based catalyst is operable to catalyze an ammonia decomposition reaction; catalyzing the ammonia decomposition reaction to cause the ammonia decomposition in the presence of the cobalt-based catalyst to produce hydrogen; and withdrawing a product stream from the reactor, the product stream comprising hydrogen.Type: GrantFiled: September 14, 2022Date of Patent: November 7, 2023Assignees: Saudi Arabian Oil Company, King Abdullah University of Science and TechnologyInventors: Jorge Gascon, Salvador Sayas, Natalia Morlanes, Sai Katikaneni, Aadesh Harale, Bandar Solami
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Patent number: 11787759Abstract: A system and method for producing dimethyl ether (DME) via dry reforming and DME synthesis in the same vessel, including converting methane and carbon dioxide in the vessel into syngas (including hydrogen and carbon monoxide) via dry reforming in the vessel, cooling the syngas via a heat exchanger in the vessel, and synthesizing DME from the syngas in the vessel.Type: GrantFiled: August 12, 2021Date of Patent: October 17, 2023Assignee: Saudi Arabian Oil CompanyInventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Patent number: 11718575Abstract: A system and method for producing methanol via dry reforming and methanol synthesis in the same vessel, including converting methane and carbon dioxide in the vessel into syngas including hydrogen and carbon monoxide via dry reforming in the vessel, cooling the syngas via a heat exchanger in the vessel, and synthesizing methanol from the syngas in the vessel.Type: GrantFiled: August 12, 2021Date of Patent: August 8, 2023Assignee: Saudi Arabian Oil CompanyInventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Publication number: 20230058872Abstract: A system and method for producing dimethyl ether (DME) via dry reforming and DME synthesis in the same vessel, including converting methane and carbon dioxide in the vessel into syngas (including hydrogen and carbon monoxide) via dry reforming in the vessel, cooling the syngas via a heat exchanger in the vessel, and synthesizing DME from the syngas in the vessel.Type: ApplicationFiled: August 12, 2021Publication date: February 23, 2023Inventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Publication number: 20230053936Abstract: A system and method for producing methanol via dry reforming and methanol synthesis in the same vessel, including converting methane and carbon dioxide in the vessel into syngas including hydrogen and carbon monoxide via dry reforming in the vessel, cooling the syngas via a heat exchanger in the vessel, and synthesizing methanol from the syngas in the vessel.Type: ApplicationFiled: August 12, 2021Publication date: February 23, 2023Inventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Publication number: 20230057781Abstract: A system and method for producing olefin via dry reforming and olefin synthesis in the same vessel, including providing feed including methane and carbon dioxide to the vessel, converting methane and carbon dioxide in the vessel into syngas (that includes hydrogen and carbon monoxide) via dry reforming in the vessel, and cooling the syngas via a heat exchanger in the vessel. The method includes synthesizing olefin from the syngas in the vessel, wherein the olefin includes ethylene, propylene, or butene, or any combinations thereof.Type: ApplicationFiled: August 12, 2021Publication date: February 23, 2023Inventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Publication number: 20230050019Abstract: A method of dry reforming methane with CO2 using a bi-metallic nickel and ruthenium-based catalyst. A dry reformer having the bimetallic catalyst as reforming catalyst, and a method of producing syngas with the dry reformer.Type: ApplicationFiled: August 12, 2021Publication date: February 16, 2023Inventors: Kunho Lee, Sai P. Katikaneni, Aadesh Harale, Bandar Solami
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Patent number: 11578016Abstract: A system and method for producing olefin via dry reforming and olefin synthesis in the same vessel, including providing feed including methane and carbon dioxide to the vessel, converting methane and carbon dioxide in the vessel into syngas (that includes hydrogen and carbon monoxide) via dry reforming in the vessel, and cooling the syngas via a heat exchanger in the vessel. The method includes synthesizing olefin from the syngas in the vessel, wherein the olefin includes ethylene, propylene, or butene, or any combinations thereof.Type: GrantFiled: August 12, 2021Date of Patent: February 14, 2023Assignee: Saudi Arabian Oil CompanyInventors: Bandar Solami, Aqil Jamal, Kunho Lee
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Publication number: 20230020279Abstract: A method for ammonia decomposition to produce hydrogen, the method comprising the steps of introducing an ammonia stream to a reactor, wherein the ammonia stream comprises ammonia, wherein the reactor comprises a cobalt-based catalyst, the cobalt-based catalyst comprising 15 wt % and 70 wt % of cobalt, 5 wt % and 45 wt % of cerium, and 0.4 wt % and 0.5 wt % barium, wherein a remainder of weight of the cobalt-based catalyst is oxygen; contacting the ammonia in the ammonia stream with the cobalt-based catalyst, wherein the cobalt-based catalyst is operable to catalyze an ammonia decomposition reaction; catalyzing the ammonia decomposition reaction to cause the ammonia decomposition in the presence of the cobalt-based catalyst to produce hydrogen; and withdrawing a product stream from the reactor, the product stream comprising hydrogen.Type: ApplicationFiled: September 14, 2022Publication date: January 19, 2023Inventors: Jorge GASCON, Salvador SAYAS, Natalia MORLANES, Sai KATIKANENI, Aadesh HARALE, Bandar SOLAMI
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Patent number: 11478784Abstract: A method for ammonia decomposition to produce hydrogen, the method comprising the steps of introducing an ammonia stream to a reactor, wherein the ammonia stream comprises ammonia, wherein the reactor comprises a cobalt-based catalyst, the cobalt-based catalyst comprising 15 wt % and 70 wt % of cobalt, 5 wt % and 45 wt % of cerium, and 0.4 wt % and 0.5 wt % barium, wherein a remainder of weight of the cobalt-based catalyst is oxygen; contacting the ammonia in the ammonia stream with the cobalt-based catalyst, wherein the cobalt-based catalyst is operable to catalyze an ammonia decomposition reaction; catalyzing the ammonia decomposition reaction to cause the ammonia decomposition in the presence of the cobalt-based catalyst to produce hydrogen; and withdrawing a product stream from the reactor, the product stream comprising hydrogen.Type: GrantFiled: February 4, 2020Date of Patent: October 25, 2022Assignees: Saudi Arabian Oil Company, King Abdullah University of Science and TechnologyInventors: Jorge Gascon, Salvador Sayas, Natalia Morlanes, Sai Katikaneni, Aadesh Harale, Bandar Solami
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Publication number: 20220009774Abstract: A dry reforming process for producing a synthesis gas from a hydrocarbon fuel is described. A feed stream is preheated. The feed stream includes the hydrocarbon fuel and carbon dioxide. The feed stream is flowed to a reactor. The reactor includes a catalyst. Flowing the feed stream to the reactor brings the feed stream into contact with the catalyst in the absence of oxygen and causes a dry reforming reaction within the reactor for a period of time sufficient to reform the hydrocarbon fuel to produce the synthesis gas. The catalyst includes nickel (Ni), lanthanum oxide (La2O3), cerium oxide (Ce2O3), and platinum (Pt).Type: ApplicationFiled: July 13, 2020Publication date: January 13, 2022Inventors: Aadesh Harale, Kunho Lee, Bandar Solami, Abdulbari Yahya Alqarni
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Publication number: 20210237046Abstract: A method for ammonia decomposition to produce hydrogen, the method comprising the steps of introducing an ammonia stream to a reactor, wherein the ammonia stream comprises ammonia, wherein the reactor comprises a cobalt-based catalyst, the cobalt-based catalyst comprising 15 wt % and 70 wt % of cobalt, 5 wt % and 45 wt % of cerium, and 0.4 wt % and 0.5 wt % barium, wherein a remainder of weight of the cobalt-based catalyst is oxygen; contacting the ammonia in the ammonia stream with the cobalt-based catalyst, wherein the cobalt-based catalyst is operable to catalyze an ammonia decomposition reaction; catalyzing the ammonia decomposition reaction to cause the ammonia decomposition in the presence of the cobalt-based catalyst to produce hydrogen; and withdrawing a product stream from the reactor, the product stream comprising hydrogen.Type: ApplicationFiled: February 4, 2020Publication date: August 5, 2021Inventors: Jorge GASCON, Salvador SAYAS, Natalia MORLANES, Sai KATIKANENI, Aadesh HARALE, Bandar SOLAMI