Invention Grant
- Patent Title: ZSM-5 type molecular sieve synthesis method
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Application No.: US14648425Application Date: 2013-11-28
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Publication No.: US09963350B2Publication Date: 2018-05-08
- Inventor: Xiaojun Bao , Yuanyuan Yue , Tiesen Li , Haiyan Liu , Shengbao He , Jianning Yu
- Applicant: China University of Petroleum-Beijing , China National Petroleum Corporation
- Applicant Address: CN Beijing CN Beijing
- Assignee: China National Petroleum Corporation,China University of Petroleum- Beijing
- Current Assignee: China National Petroleum Corporation,China University of Petroleum- Beijing
- Current Assignee Address: CN Beijing CN Beijing
- Agency: Loza & Loza, LLP
- Agent Michael Fedrick
- Priority: CN201210500634 20121129
- International Application: PCT/CN2013/088055 WO 20131128
- International Announcement: WO2014/082587 WO 20140605
- Main IPC: C01B39/40
- IPC: C01B39/40 ; C01B39/38 ; B01J20/18 ; B01J29/40 ; B01J35/00

Abstract:
The present invention pertains to the field of molecular sieve synthesis, and relates to a synthesis method of ZSM-5 type molecular sieves. In this method, natural minerals, i.e., natural kaolin and natural diatomite, are used as the total silicon source and aluminum source required for the molecular sieve synthesis, and these two natural minerals are calcinated and subjected to acidic (alkaline) treatment before they are mixed at a certain ratio, and then crystallized under hydrothermal conditions to obtain the product, a ZSM-5 type molecular sieve. The ZSM-5 type molecular sieve obtained by the method according to the present invention is a hierarchical porous material having a crystallinity of 70% to 120% as compared to conventional ZSM-5 type molecular sieves synthesized by using pure chemical reagents, and the silica-to-alumina ratio in the molecular sieve product may be adjusted by varying the ratio of the two minerals in the raw materials for the synthesis. According to the present invention, the range of raw materials for the preparation of molecular sieve materials is broadened, and therefore not only the cost for the molecular sieve production is greatly reduced but also the greenness in the production process of the molecular sieve material is significantly improved.
Public/Granted literature
- US20160002061A1 ZSM-5 TYPE MOLECULAR SIEVE SYNTHESIS METHOD Public/Granted day:2016-01-07
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