Invention Application
US20140057780A1 PREPARING PHOSPHORUS CONTAINING ALUMINA SUPPORT BY SOL-GEL METHOD FOR FISCHER-TROPSCH SYNTHESIS AND CATALYST PREPARATION THEREOF
有权
通过溶胶凝胶法制备含有氧化铝的磷化合物,用于FISCHER-TROPSCH合成及其催化剂的制备
- Patent Title: PREPARING PHOSPHORUS CONTAINING ALUMINA SUPPORT BY SOL-GEL METHOD FOR FISCHER-TROPSCH SYNTHESIS AND CATALYST PREPARATION THEREOF
- Patent Title (中): 通过溶胶凝胶法制备含有氧化铝的磷化合物,用于FISCHER-TROPSCH合成及其催化剂的制备
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Application No.: US14069446Application Date: 2013-11-01
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Publication No.: US20140057780A1Publication Date: 2014-02-27
- Inventor: Jong-Wook BAE , Seung-Moon KIM , Yun-Jo LEE , Ki-Won JUN
- Applicant: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY , KOREA GAS CORPORATION , DAELIM INDUSTRIAL CO., LTD. , KOREA NATIONAL OIL CORPORATION , HYUNDAI ENGINEERING CO., LTD. , SK INNOVATION CO., LTD.
- Applicant Address: KR Daejeon KR Gyeonggi-do KR Seoul KR Gyeonggi-do KR Seoul KR Seoul
- Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY,KOREA GAS CORPORATION,DAELIM INDUSTRIAL CO., LTD.,KOREA NATIONAL OIL CORPORATION,HYUNDAI ENGINEERING CO., LTD.,SK INNOVATION CO., LTD.
- Current Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGY,KOREA GAS CORPORATION,DAELIM INDUSTRIAL CO., LTD.,KOREA NATIONAL OIL CORPORATION,HYUNDAI ENGINEERING CO., LTD.,SK INNOVATION CO., LTD.
- Current Assignee Address: KR Daejeon KR Gyeonggi-do KR Seoul KR Gyeonggi-do KR Seoul KR Seoul
- Priority: KR10-2007-0089635 20070904
- Main IPC: B01J27/185
- IPC: B01J27/185

Abstract:
The present invention relates to a process of preparing of a phosphorus-containing phosphorus-alumina support by a sol-gel method and a cobalt/phosphorus-alumina catalyst where cobalt is supported onto the phosphorus-alumina support as an active ingredient. The phosphorus-alumina support is prepared by a sol-gel method and has wide specific surface area with bimodal pore size distribution and high cobalt dispersion, thereby enabling to increase heat and mass transfer, stabilize the structure by modifying the surface property of alumina and decrease the deactivation rate due to the reduced oxidation of cobalt component during the F-T reaction. When Fischer-Tropsch reaction (F-T) is conducted on the catalyst, the catalyst maintains a superior thermal stability, inhibits the deactivation due to water generation during the F-T reaction and also causes relatively high conversion of carbon monoxide and stable selectivity of liquid hydrocarbons.
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