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苯系硝化工艺危险性分析与安全设施设计研究 被引量:2
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作者 靳松 《河南科技》 2020年第22期110-112,共3页
本文以一硝基苯系物生产为例,结合工业化生产实践,分析了苯系硝化工艺的危险点,并对照其危险特点,在连续化工艺、自动化设计基础、进料控制、安全仪表系统、紧急冷却系统、危险废物、精馏、设备防腐蚀、建筑等9个方面提出了安全设施设... 本文以一硝基苯系物生产为例,结合工业化生产实践,分析了苯系硝化工艺的危险点,并对照其危险特点,在连续化工艺、自动化设计基础、进料控制、安全仪表系统、紧急冷却系统、危险废物、精馏、设备防腐蚀、建筑等9个方面提出了安全设施设计要点,以期为苯系硝化工艺的工程设计提供参考。 展开更多
关键词 苯系硝化 安全设施 连续化工艺 设备防腐蚀
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A Highly Efficient and Selective Water-Soluble Bimetallic Catalyst for Hydrogenation of Chloronitrobenzene to Chloroaniline 被引量:1
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作者 Zhou Yafen Yang Wenjuan +2 位作者 Zhou Limei Wang Manman Ma Xiaoyan 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第2期26-31,共6页
Selective hydrogenation of chloronitrobenzene(CNB) to chloroaniline(CAN) catalyzed by water-soluble Ru/Pt bimetallic catalyst in an aqueous-organic biphasic system was studied. It was found that the catalytic activity... Selective hydrogenation of chloronitrobenzene(CNB) to chloroaniline(CAN) catalyzed by water-soluble Ru/Pt bimetallic catalyst in an aqueous-organic biphasic system was studied. It was found that the catalytic activity increased obviously due to the addition of platinum. Ru/Pt bimetallic catalysts exhibited a strong synergistic effect when the molar ratio of Pt was in the range of 5%—80%. Under the mild conditions including a temperature of 25 ℃, a hydrogen pressure of 1.0 MPa and a Pt molar ratio of 20%, the conversion of p-chloronitrobenzene(p-CNB) reached 99.9%, with the selectivity to p-chloroaniline(p-CAN) equating to 99.4%. The Ru/Pt catalyst also showed high activity and selectivity for the hydrogenation of other chloro- and dichloro-nitrobenzenes with different substituted positions. In addition, the catalyst can be recycled five times without significant loss of activity. 展开更多
关键词 water-soluble bimetallic catalyst HYDROGENATION CHLORONITROBENZENE CHLOROANILINE
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