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煤焦油加氢裂化反应及其催化剂的研究
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作者 徐欢鹏 《中文科技期刊数据库(全文版)工程技术》 2016年第9期208-208,共1页
我国的能源现状是多煤、缺气、少油。利用煤焦油加氢处理技术制燃料油品,对缓解我国的能源危机具有重要意义。加氢处理技术的关键是加氢精制和加氢裂化催化剂,加氢精制和加氢裂化是实现焦油清洁和轻质化的主要途径。探讨适于煤焦油的加... 我国的能源现状是多煤、缺气、少油。利用煤焦油加氢处理技术制燃料油品,对缓解我国的能源危机具有重要意义。加氢处理技术的关键是加氢精制和加氢裂化催化剂,加氢精制和加氢裂化是实现焦油清洁和轻质化的主要途径。探讨适于煤焦油的加氢处理催化剂,主要是防止催化剂的中毒、积炭、失活,并且协调各种催化剂同步失活,以利于整个装置运行周期的延长。旨在为煤焦油加氢精制和加氢裂化催化剂研究提供一定的理论指导,避免焦油加氢精制和加氢裂化催化剂研究和开发的自目性。 展开更多
关键词 煤焦油 加氧脱氮 裂化 催化剂
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Promoting role of Ru species on Ir-Fe/BN catalyst in 1,2-diols hydrogenolysis to secondary alcohols
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作者 Ben Liu Yoshinao Nakagawa +1 位作者 Mizuho Yabushita Keiichi Tomishige 《Chinese Journal of Catalysis》 SCIE CAS 2024年第10期89-102,共14页
Noble metal-based-bimetallic catalysts have been highly investigated and applied in wide applications including biomass transformation via regioselective C−O hydrogenolysis while further modification especially with n... Noble metal-based-bimetallic catalysts have been highly investigated and applied in wide applications including biomass transformation via regioselective C−O hydrogenolysis while further modification especially with noble metal is highly promising yet still under investigation.Herein,Ru was found as an effective modifier among the screened noble metals(Ru,Pt,Rh,Pd,Au,and Ag)for Ir-Fe/BN(Ir=5 wt%,Fe/Ir=0.25)catalyst in terminal C−O hydrogenolysis of 1,2-butanediol(1,2-BuD)to 2-butanol(2-BuOH).Only trace amount of Ru(up to 0.5 wt%)was effective in terms of high 2-BuOH selectivity(>60%)and activity(about twice).Larger amount of Ru species(3 wt%)highly enhanced the activity but gave low selectivity to 2-BuOH with by-products of terminal C−C bond scission.Optimized catalyst(Ru(0.5)-Ir-Fe/BN)was reusable at least 4 times and gave moderate 2-BuOH yield(47%)in hydrogenolysis of 1,2-BuD.The promoting effect of Ru addition(0.5 wt%)to Ir-Fe/BN on hydrogenolysis of various alcohols was also confirmed.Combining catalytic tests with various characterizations,the promotion mechanism of Ru species in trimetallic catalysts was clarified.The Ru species in Ru(0.5)-Ir-Fe/BN form alloy with Ir and are enriched at the interface with BN surface,and direct interaction between Ru and Fe was not necessary in Ru-Ir-Fe alloy.The interface of Ir and Fe on the surface of Ir-Fe alloy may work as active sites for 1,2-diols to secondary alcohols via direct C−O hydrogenolysis,in which Ru-modified Ir activates H_(2) to form hydride-like species.The activity of Ru species in C−C bond cleavage was highly suppressed due to the direct interaction with Ir species and less exposed to substrate.Larger loading amount of Ru species(3 wt%)led to the formation Ru-rich trimetallic alloy,which further works as active sites for C−C bond scission. 展开更多
关键词 Biomass-based polyols Secondary alcohol Hydrodeoxygenation Trimetallic alloy Boron nitride
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