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反应器开发    
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  reactor development
    THE ADVANTAGE OF MICRO REACTION KINETICS FOR REACTOR DEVELOPMENT
    微观反应动力学对于反应器开发的优势
短句来源
    Chemical Engineering Considerations to the Reactor Development of Oxidative Dehydrogenation of Butene
    丁烯氧化脱氢反应器开发中的工程问题
短句来源
    The importance of incorporation of chemical process researchs with engineering analysis,catatyst research with reactor development and also the tech- nology of catalyst manufacture with catalyst engineering design are stressed. Fur- thermore,the fundamental contents of catalyst engineering design are also sugssetd.
    论文强调了工艺研究与工程分析相结合,催化剂研究与反应器开发相结合,催化剂制备技术的开发放大和催化剂的工程设计相结合,并提出了进行工程设计的有关基本内容。
短句来源
  reactor development
    THE ADVANTAGE OF MICRO REACTION KINETICS FOR REACTOR DEVELOPMENT
    微观反应动力学对于反应器开发的优势
短句来源
    Chemical Engineering Considerations to the Reactor Development of Oxidative Dehydrogenation of Butene
    丁烯氧化脱氢反应器开发中的工程问题
短句来源
    The importance of incorporation of chemical process researchs with engineering analysis,catatyst research with reactor development and also the tech- nology of catalyst manufacture with catalyst engineering design are stressed. Fur- thermore,the fundamental contents of catalyst engineering design are also sugssetd.
    论文强调了工艺研究与工程分析相结合,催化剂研究与反应器开发相结合,催化剂制备技术的开发放大和催化剂的工程设计相结合,并提出了进行工程设计的有关基本内容。
短句来源
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  reactor development
The A-1 station, Czechoslovakia's first atomic power station, with the KS-150 heavy-water reactor (development and construction)
      
The helium-cooled fission-suppressed hybrid blanket, based on thorium fuel for production of233U, is identified as being a particularly attractive candidate for further hybrid reactor development work.
      
A cost/benefit analysis of commercial fusion-fission hybrid reactor development
      
Advantages of high-field tokamaks for fusion reactor development
      
Fischer-Tropsch synthesis: Overview of reactor development and future potentialities
      
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2~ethyl-2-hexenal was hydrogenated to 2-ethyl hexanol in both laboratory and pilot equipment. Trickle bed reactors were used. We find that log is

本实验采用涓流床反应器在2-乙基己烯-2-醛催化加氢制2-乙基己醇小试和模试装置中,取得了催化活性与液体空速和催化剂床层高度的关系,并运用最小二乘法分别得到在操作条件下的经验公式: LHSV~(-2/3)=-0.206-16.853log(A_i)/(A_o) log(A_i/A_o)=-0.027-0.0027L~(-1/3) 由上式可得出在操作条件下反应物转化为产品时的最大液体空速及最小催化剂层高度。所得到的催化活性对液体空速的关系与文献相符。实验认为由床层高度的变化所取得的加氢效果的变化是由于液体质量流速的变化而引起的。 本实验所得的数据对于涓流床反应器的开发、设计、操作是有益的。

In this study, the performance characteristics of various types of reactors or/ and their combinations for synthesis of MTBE have been analyzed and compared. These analyses are based on the results and information obtained from the studies of the reaction kinetics and its model identification for MTBE synthesis of mathanol and isobutene which is contained in mixed c4 distillate. By comparison, it is referenced to use a combined type of reactors, which contitutes a CSTR(or recycled reactor) and a adiabatic reactor,...

In this study, the performance characteristics of various types of reactors or/ and their combinations for synthesis of MTBE have been analyzed and compared. These analyses are based on the results and information obtained from the studies of the reaction kinetics and its model identification for MTBE synthesis of mathanol and isobutene which is contained in mixed c4 distillate. By comparison, it is referenced to use a combined type of reactors, which contitutes a CSTR(or recycled reactor) and a adiabatic reactor, being favorable to synthesis of MTBE. It is also believed that the results provided by this study is likely useful of developing the reactors for synthesis of MTBE.

根据用混合碳四中异丁和甲醇合成MTBE反应动力学研究所得的结果和模型检验所得到的信息,对几种不同的反应器及其组合形式的操作进行了比较,认为对合成MTBE的反应器开发,从全混釜反应器(或循环反应器)与绝热床反应器的组合为理想。这一结果可供合成MTBE反应器开发中参考。

The application of bio-technology in the modern chemical industry is essentially to introduce the bioprocess i. e. the bio-reactor into the chemical processes, Its main forms are chemical compounds or the industrial waste water can be manufactured or treated through enzyme reactions or microbial fermentation. The progress of fixing techniques for bio-catalysts has cansed the rapid development of bio-reactors. The target for the future development of application of bioproces in the modern chemical industry in...

The application of bio-technology in the modern chemical industry is essentially to introduce the bioprocess i. e. the bio-reactor into the chemical processes, Its main forms are chemical compounds or the industrial waste water can be manufactured or treated through enzyme reactions or microbial fermentation. The progress of fixing techniques for bio-catalysts has cansed the rapid development of bio-reactors. The target for the future development of application of bioproces in the modern chemical industry in the replacement of conventional fermentation process and enzyme process by the fixed bioreactor in the manufacture of chemical compounds and the provision of various active enzymes in large quantities.

生物技术在现代化工中的应用主要体现在将生物工艺(即生物反应器)引入化学工艺中,其主要形式有:通过酶反应和微生物发酵方法制取化合物及微生物处理工业废水。生物催化剂固定化技术的进步,使生物反应器的开发得到很大发展。生物工艺用于现代化工的今后开发目标是:用固定化生物反应器取代已往的发酵法和酶法制取化学品,提供种类繁多且数量较大的活性酶。

 
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