Green Production Technology of the Monomer of Nylon-6: Caprolactam

Engineering - Tập 3 - Trang 379-384 - 2017
Baoning Zong1, Bin Sun1, Shibiao Cheng1, Xuhong Mu1, Keyong Yang1, Junqi Zhao1, Xiaoxin Zhang1, Wei Wu1
1Research Institute of Petroleum Processing, China Petrochemical Corporation, Beijing 100083, China

Tài liệu tham khảo

IHS chemical Week, nylon engineering resins. [cited 2016 Jan]. Available from: http://chemweek.com

Lin, 2002, China Petrochemical Corporation, Research Institute of Petroleum Processing, Sinopec, assignees

Sun B, Wu W, Wang E, Li Y, Zhang S, Hu L, China Petroleum & Chemical Corporation, Research Institute of Petroleum Processing, Sinopec, assignees. Process for regenerating titanium-containing catalysts. 2008 Jun 10 United States patent US 7384882

Wu, 2008, China Petroleum & Chemical Corporation, Research Institute of Petroleum Processing, Sinopec, assignees

Cheng, 2003

Cheng S, Min E, Wu W, Sun B, Zhang S, Wang E, China Petroleum & Chemical Corporation, Research Institute of Petroleum Processing, Sinopec, assignees. A preparation method of zeolite catalyst with an MFI structure. 2003 Sep 28 China patent CN 1600428. Chinese.

Mu X, Zong B, Min E, Wang X, Wang Y, Zhang X, et al., inventors; China Petrole um Corporation, Research Institute of Petroleum Processing, Sinopec, assignees. Hydrogenation catalyst and its preparation. United States patent US 6368996. 2002 Apr 9.

Xu, 2014, e-Iron carbide as a low-temperature Fischer-Tropsch synthesis catalyst, Nat Commun, 5, 5783, 10.1038/ncomms6783

Zong, 2007, Amorphous Ni alloy hydrogenation catalyst and magnetically stabilized bed reaction technology, Catal Surv Asia, 11, 87, 10.1007/s10563-007-9019-z

Pei, 2012, Synthesis and catalysis of chemically reduced metal-metalloid amorphous alloys, Chem Soc Rev, 41, 8140, 10.1039/c2cs35182j

Zong, 2013, Research, development, and application of amorphous nickel alloy catalysts prepared by melt-quenching, Chinese J Catal, 34, 828, 10.1016/S1872-2067(11)60486-5

Zhou, 2014, Doping effects of B in ZrO2 on structural and catalytic properties of Ru/B-ZrO2 catalysts for benzene partial hydrogenation, J Catal, 311, 393, 10.1016/j.jcat.2013.12.022

Zong, 2009, Integration of methanation into the hydrogenation process of benzoic acid, AIChE J, 55, 192, 10.1002/aic.11679

Zhu, 2008, An environmentally benign and catalytically efficient non-pyrophoric Ni catalyst for aqueous-phase reforming of ethylene glycol, Green Chem, 10, 1323, 10.1039/b808190e

Hu, 2013, Shape effect of ZnO crystals as cocatalyst in combined reforming-hydrogenolysis of glycerol, ACS Catal, 3, 2280, 10.1021/cs400526s

Fan, 2008, Rapidly quenched skeletal Fe-based catalysts for Fischer-Tropsch synthesis, Ind Eng Chem Res, 47, 5918, 10.1021/ie800285h

Yu, 2010, FexOy@C spheres as an excellent catalyst for Fischer-Tropsch synthesis, J Am Chem Soc, 132, 935, 10.1021/ja906370b

Sun, 2012, A highly selective Raney Fe@HZSM- 5 Fischer-Tropsch synthesis catalyst for gasoline production: One-pot synthesis and unexpected effect of zeolites, Catal Sci Technol, 2, 1625, 10.1039/c2cy20155k

Sun, 2013, One-pot approach to a highly robust iron oxide/reduced graphene oxide nanocatalyst for Fischer-Tropsch synthesis, ChemCatChem, 5, 714, 10.1002/cctc.201200653

Sun, 2013, Fischer-Tropsch synthesis over skeletal Fe-Ce catalysts leached from rapidly quenched ternary Fe-Ce-Al alloys, ChemCatChem, 5, 3857, 10.1002/cctc.201300430

Pan, 2007, Integration of magnetically stabilized bed and amorphous Nickel alloy catalyst for CO methanation, Chem Eng Sci, 62, 2712, 10.1016/j.ces.2007.02.007

Dong, 2008, Selective acetylene hydrogenation over core-shell magnetic Pd-supported catalysts in a magnetically stabilized bed, AIChE J, 54, 1358, 10.1002/aic.11447

Peng, 2009, Light FCC gasoline olefin oligomerization over a magnetic NiSO4/γ-Al2O3 catalyst in a magnetically stabilized bed, AIChE J, 55, 717, 10.1002/aic.11712

Cheng, 2013, When magnetic catalyst meets magnetic reactor: Etherification of FCC light gasoline as an example, Sci Rep, 3, 1973, 10.1038/srep01973