首页> 外文学位 >THERMAL BEHAVIOR OF A SLURRY REACTOR: APPLICATION TO FISCHER-TROPSCH REACTION (RUTHENIUM CATALYST, INDIRECT COAL LIQUEFACTION, THREE PHASE, MULTIPLE STEADY STATE).
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THERMAL BEHAVIOR OF A SLURRY REACTOR: APPLICATION TO FISCHER-TROPSCH REACTION (RUTHENIUM CATALYST, INDIRECT COAL LIQUEFACTION, THREE PHASE, MULTIPLE STEADY STATE).

机译:淤泥反应器的热行为:应用于费-托反应(钌催化剂,间接煤液化,三相,多稳态)。

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A number of industrially important hydroprocessing reactions are three phase and are highly exothermic. Experimental data on the thermal behavior of such reactors are scarce. An adiabatic, computer-controlled, slurry reactor has been designed and operated to evaluate the thermal behavior of a prototype commercial reactor. The Fischer-Tropsch (FT) reaction has been used as a case study using two different catalysts, supported ruthenium and fused iron. High conversion of carbon monoxide (>90%) and high rate of heat generation were obtained with the ruthenium catalyst, in contrast to fused iron where a maximum of 10% conversion of carbon monoxide was achieved. A fundamental study of the effects of temperature, pressure, stirrer speed and gas space velocity and feed composition, on the thermal behavior of an FT slurry reactor has been done. A jump in rate of heat generation and product distribution was observed at around 560K for both catalysts. Further study with supported ruthenium catalyst indicated the existence of multiple steady states in a three phase FT reactor. Depending upon start-up procedures and reactor operating conditions, the reactor can operate in three possible modes, 'FT mode', 'Methanation mode' or 'Deactivation mode'. Effects of the process variables on the existence and region of multiplicity have been studied. Based on these results, some important control problems of a commercial FT slurry reactor are discussed.
机译:许多工业上重要的加氢处理反应是三相的,并且放热很高。关于这种反应器的热行为的实验数据很少。已经设计并操作了绝热的计算机控制的淤浆反应器,以评估原型商业反应器的热行为。费-托(FT)反应已用作案例研究,使用了两种不同的催化剂,负载的钌和熔融铁。与熔融铁相比,用钌催化剂可获得高的一氧化碳转化率(> 90%)和高的产热率,而熔融铁的最大一氧化碳转化率达到10%。已经完成了温度,压力,搅拌器速度,气体空速和进料组成对FT浆料反应器热行为的影响的基础研究。两种催化剂的产热速率和产物分布速率均在560K左右跳跃。负载型钌催化剂的进一步研究表明在三相FT反应器中存在多个稳态。根据启动程序和反应堆运行条件,反应堆可以以三种可能的模式运行:“ FT模式”,“甲烷化模式”或“失活模式”。研究了过程变量对多重性存在和区域的影响。基于这些结果,讨论了商业FT浆料反应器的一些重要控制问题。

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