1、

Methanol dehydrogenation is a promising route for commercial production of anhydrous formaldehyde.

甲醇直接脱氢制无水甲醛是具有工业化前景的新工艺.

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2、

The research progress in catechol synthesis by dehydrogenation of 1, 2 cyclohehanediol were reviewed.

综述了1, 2环己二醇催化脱氢制取邻苯二酚的研究进展.

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3、

In-situ thermal degrdn. of a com. dehydrogenation catalyst in a fixed-bed reactor is studied exptl.

用实验研究了在固定床式反应器中一种普通脱氢用催化剂的实时热降解.

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4、

A mathematical model was established for catalytic dehydrogenation of butane in plug flow membrane reactor.

建立了模拟真实实验室膜反应器的数学模型:活塞流数学模型.

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5、

The mechanism of dehydrogenation of secondary butanol and the catalyst characteristics and regeneration steps were introduced.

简单地介绍了仲丁醇脱氢反应的机理、催化剂的特点和催化剂的再生步骤.

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6、

The key for isobutane dehydrogenation is to synthesize non-noble mental catalysts.

详细总结了不同载体和助剂对脱氢反应的影响,尤其是载体和助剂的酸碱性以及载体的孔结构.

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7、

First, the nature of dehydrogenation of ethylbenzene to styrene was studied in an experilmen-tal adiabatic reactor.

针对乙苯脱氢绝热反应器工程特点建立了有关转化率和选择性的数学模型.

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8、

Catalytic dehydrogenation of ethylbenzene is an important method for production of styrene.

乙苯催化脱氢是生产苯乙烯的主要方法.

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9、

The catalytic systems and their main results of propane oxidative dehydrogenation to propylene are reviewed.

综述了丙烷氧化脱氢制丙烯反应催化剂体系及其主要研究结果.

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10、

The applications of metal membranes and metal composite membranes to hydrogenation and dehydrogenation reaction are introduced.

本文介绍了金属膜和金属复合膜在加氢和脱氢反应中的应用及金属复合膜的常用制备方法和发展趋势.

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11、

In this paper. the dehydrogenation activities of Secondary Alcohol over Ni-ultrafine particle catalyst has been studied.

本文研究了镍超细粒子催化剂对二级醇液相脱氢反应的催化性能.

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12、

The catalytic dehydrogenation of ethylbenzene to styrene in zeolite membrane reactors was studies.

采用管式沸石膜反应器,研究了乙苯脱氢反应生成苯乙烯的性能.

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13、

Advances in ethane dehydrogenation to ethene have been reviewed.

乙烷脱氢制乙烯是乙烷利用的有效途径.

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14、

The kinetics of dehydrogenation of 2-butanol to butanone on Ni Ultrafine particle catalyst has been studied.

本文研究了镍超细粒子催化2-丁醇液相脱氢反应的动力学.

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15、

The performances and application status of several cyclohexanol dehydrogenation catalysts in home and abroad are compared.

对几种国内外工业用环己醇脱氢催化剂的性能及使用情况进行了比较。

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16、

Research of Catalytic Performance of DH_ ( 021) Catalyst of Cyclohexanol Dehydrogenation to Cyclohexanone

DH(021)型环己醇脱氢制环己酮催化剂性能研究

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17、

Development and performance of a Cu-Zn cyclohexanol dehydrogenation catalyst

铜锌系环己醇脱氢催化剂的开发与应用

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18、

Studies on the Structure and Catalytic Properties of ZnO/ CaCO_3 Catalysts for Cyclohexanol Dehydrogenation

环己醇脱氢ZnO/CaCO3催化剂结构与催化性能的研究

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19、

It was pointed out that supports would be the focus for development of cyclohexanol dehydrogenation catalysts.

最后对环己醇脱氢制环己酮催化剂的发展方向进行了展望,提出了载体是环己醇脱氢催化剂需要突破的重点。

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20、

Preparation of Cu/ ZrO_2 cyclohexanol dehydrogenation catalyst

新型Cu/ZrO2环己醇脱氢催化剂的制备

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