首页> 外文期刊>The Canadian Journal of Chemical Engineering >Slurry reactor system with inertial separation for Fischer-Tropsch synthesis and other three-phase hydrogenation processes
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Slurry reactor system with inertial separation for Fischer-Tropsch synthesis and other three-phase hydrogenation processes

机译:具有惯性分离的浆料反应器系统,用于费-托合成和其他三相加氢工艺

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摘要

An original inertial principle of solid and liquid phase separation and the construction of a slurry reactor system on this basis are investigated. A continuous operation reactor system ensures the presence of catalyst in the reaction mixture stays nearly constant while a minimum is withdrawn with the reaction products. The results of hydraulic tests on the developed system, consisting of reactors with volumes of 0.02 and 1.0m(3) and equipped with mechanical agitators, are discussed. The effect of agitation velocity on the velocity of slurry moving in the circulation loop, as well as the extent of withdrawal of solid particles with the clarified liquid stream leaving the reaction system, are investigated in detail. Technical characteristics of the developed reactor system for industrial-scale Fischer-Tropsch synthesis, hydrogenation, and other three-phase processes are discussed.
机译:研究了固液分离的原始惯性原理,并在此基础上构造了浆液反应器系统。连续运行的反应器系统可确保反应混合物中催化剂的存在几乎保持恒定,同时将反应产物的含量降至最低。讨论了在已开发的系统上进行的水力测试结果,该系统由容量为0.02和1.0m(3)的反应堆组成,并配备了机械搅拌器。详细研究了搅拌速度对浆料在循环回路中移动速度的影响,以及澄清的液流离开反应系统后固体颗粒的排出程度。讨论了用于工业规模的费-托合成,氢化和其他三相过程的已开发反应器系统的技术特性。

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