Invention Grant
US08735641B2 Method for selective dealkylation of alkyl-substituted C9+ aromatic compounds using bimodal porous dealkylation catalyst at low temperature
有权
在低温下使用双峰多孔脱烷基化催化剂选择性脱烷基烷基取代的C 9+芳族化合物的方法
- Patent Title: Method for selective dealkylation of alkyl-substituted C9+ aromatic compounds using bimodal porous dealkylation catalyst at low temperature
- Patent Title (中): 在低温下使用双峰多孔脱烷基化催化剂选择性脱烷基烷基取代的C 9+芳族化合物的方法
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Application No.: US13530414Application Date: 2012-06-22
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Publication No.: US08735641B2Publication Date: 2014-05-27
- Inventor: Sung Hyeon Baeck , Geon Joong Kim , Dong-Kyun Noh , Tae Young Jang , Tae-Yun Kim , Young Soo Ahn , Chan-ju Song , Sang-Cheol Paik
- Applicant: Sung Hyeon Baeck , Geon Joong Kim , Dong-Kyun Noh , Tae Young Jang , Tae-Yun Kim , Young Soo Ahn , Chan-ju Song , Sang-Cheol Paik
- Applicant Address: KR Seoul KR Incheon
- Assignee: S-Oil Corporation,Inha-Industry Partnership Institute
- Current Assignee: S-Oil Corporation,Inha-Industry Partnership Institute
- Current Assignee Address: KR Seoul KR Incheon
- Agency: Alston & Bird LLP
- Priority: KR10-2011-0140067 20111222
- Main IPC: C07C4/18
- IPC: C07C4/18

Abstract:
Disclosed is a method for selective dealkylation of alkyl-substituted C9+ aromatic compounds using a bimodal porous dealkylation catalyst at a low temperature. The catalyst has a bimodal porous structure including both mesopores and micropores. The catalyst includes a crystalline aluminosilicate and a metal. The catalyst is highly active at a low temperature. According to the method, C9+ aromatic compounds substituted with at least one C2+ alkyl group as by-products formed by xylene production can be selectively dealkylated and converted to BTX, etc. on a large scale within a short time. In addition, the method is an environmentally friendly process entailing reduced waste treatment cost when compared to conventional mesitylene production methods. Therefore, high value-added mesitylene can be separated from low value-added C9+ aromatic compounds at lower cost compared to conventional methods. Furthermore, the supported metal catalyst is easy to recover after dealkylation and is recyclable, thereby contributing to reduced cost.
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