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重油催化裂化装置加工加氢精制蜡油的技术探讨 被引量:1
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作者 王帅立 罗毅 《化工管理》 2020年第5期115-116,共2页
文章着重分析了我国重油催化裂化装置在加工加氢精制蜡油过程中产生的问题,并且分析了一系列数据可以,提出了一些可以帮助改善问题的措施,促进了加工加氢精制蜡油的技术进步,有利于进一步促进经济发展,实现更高的生产力。在进行技术改... 文章着重分析了我国重油催化裂化装置在加工加氢精制蜡油过程中产生的问题,并且分析了一系列数据可以,提出了一些可以帮助改善问题的措施,促进了加工加氢精制蜡油的技术进步,有利于进一步促进经济发展,实现更高的生产力。在进行技术改进之后,可以增加5.7%的蜡油产量,实现更高的生产效率,提高经济效益。 展开更多
关键词 重油催化裂化装置 加工加氢 精制蜡油 技术探讨
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Advances in the production technology of hydrogen peroxide 被引量:25
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作者 Guohua Gao Yanan Tian +3 位作者 Xiaoxiao Gong Zhiyong Pan Keyong Yang Baoning Zong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第7期1039-1047,共9页
This article mainly summarizes various aspects of hydrogen peroxide(H2O2)production through the anthraquinone route,including hydrogenation catalysts,working solution,regeneration technique,hydrogenation reactors,and ... This article mainly summarizes various aspects of hydrogen peroxide(H2O2)production through the anthraquinone route,including hydrogenation catalysts,working solution,regeneration technique,hydrogenation reactors,and environmental protection.The advances and breakthrough of SINOPEC in the production of H2O2 through the anthraquinone route is presented in this review,highlighting recent innovative technology on these aspects developed independently.The technical prospect and scientific challenges associated with the direct synthesis method from hydrogen and oxygen are also briefly discussed. 展开更多
关键词 Hydrogen peroxide Anthraquinone auto-oxidation Hydrogenation of anthraquinone Hydrogenation catalyst Production Technology
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Influence of Steam Treating on Deethylating Type Isomerization Catalyst 被引量:1
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作者 Cao Ku Gu Haohui +3 位作者 Liang ZhanQiao Ruan Chi Liu Zhongxun Gui Shoux 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2005年第2期53-62,共10页
This article mainly worked on methods to reduce side reactions of the de-ethylating type catalyst for xylene isomerization. In laboratory the de-ethylating type catalyst for xylene isomerization was subjected to steam... This article mainly worked on methods to reduce side reactions of the de-ethylating type catalyst for xylene isomerization. In laboratory the de-ethylating type catalyst for xylene isomerization was subjected to steam treatment at different temperatures and durations to achieve dealumination of the ZSM-5 zeolite to some extent, which could affect the change in BrФnsted acid content to decrease xylene loss along with reduction of side reactions. Test results showed that the degree for reducing side reactions by steam treatment depended upon two important parameters-treating temperature and duration. The optimal condition required treating the catalyst at 500℃ for 8 hours. 展开更多
关键词 steam treating DEALUMINATION BrФnsted acid xylene loss
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Application of Hydrocracking Process for Upgrading Tail Oil Quality in 1.0 Mt/a Hydrocracker Unit at SINOPEC Yangzi Petrochemical Company
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作者 Zhang Haichun Dong Jianwei 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2009年第1期13-17,共5页
This article focuses on the hydrocracking technology for upgrading the quality of tail oil and the first commercial application of the RN-32V/RHC- 1 catalysts in the 1.0 Mt/a hydrocracker at the Yangzi Petrochemical C... This article focuses on the hydrocracking technology for upgrading the quality of tail oil and the first commercial application of the RN-32V/RHC- 1 catalysts in the 1.0 Mt/a hydrocracker at the Yangzi Petrochemical Company, which was started up successfully in September 2008. One month after start-up of the hydrocracking unit, an evaluation opera- tion has been conducted fbr assessing the catalysts performance. The technical calibration results showed that the RN- 32V/RHC-1 catalysts had high activity, and the product yield distribution was reasonable. The hydrocracker can provide abundant feedstocks for the downstream aromatic production unit and ethylene production unit. 展开更多
关键词 HYDROCRACKING upgrading tail oil quality catalysts APPLICATION
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