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Titlebook: Catalytic Technology for Selective Hydrogenation of Benzene to Cyclohexene; Zhongyi Liu,Shouchang Liu,Zhongjun Li Book 2020 Science Press

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Catalyst Deactivation and Regeneration in Benzene Selective Hydrogenation,other liquor causing pollution. Therefore, it is very important to study the deactivation mechanism of catalyst for benzene selective hydrogenation and the regeneration method to ensure the normal production of industrial production.
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Book 2020ive hydrogenation of benzene to prepare cyclohexene and its downstream products, such as cyclohexanone, bulk chemicals and high-value fine chemicals, it also discusses the objective laws, reaction mechanisms and scientific significance based on experimental data, analysis and characterization result
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d on experimental data, analysis and characterization results. Given its scope, the book will appeal to a broad readership, particularly professionals at universities and scientific research institutes, senior undergraduates, master‘s and doctoral graduate students as well as practitioners in industry.978-981-15-6413-0978-981-15-6411-6
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Lecture Notes in Operations Research the economic development. Compared with the traditional process of benzene, hydrogenation into cyclohexane is safe, resource saving, environmentally friendly, and has giant economic and social benefits for the selective hydrogenation of benzene into cyclohexene.
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An Overview of the Catalytic Selective Hydrogenation Technologies of Benzene into Cyclohexene, the economic development. Compared with the traditional process of benzene, hydrogenation into cyclohexane is safe, resource saving, environmentally friendly, and has giant economic and social benefits for the selective hydrogenation of benzene into cyclohexene.
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The Second-Generation Catalyst for Selective Hydrogenation of Benzene to Cyclohexene-Ru-Zn-Na2SiO3-onger service life. Because of the modification of Na.SiO.-PEG-10000 on the surface of the catalyst, it has better catalytic activity and cyclohexene selectivity, the conversion rate of benzene increased by 10 percentage points, and the cyclohexene yield increased by 8 percentage points.
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,Third-Generation Catalyst of Benzene Selective Hydrogenation to Cyclohexene—Ru–M (Zn, Mn, Fe, La, Cndexes of the third-generation catalyst are as follows: benzene conversion of 60%, cyclohexene selectivity of more than 80%, cyclohexene yield of more than 48%, compared with that of the second-generation catalyst, benzene conversion increases by 10 percentage points, cyclohexene yield increases by 8 percentage points.
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