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Automation of a fixed-bedcontinuous–flow reactor

机译:固定床自动化连续流反应器

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摘要

This paper describes the design and operation of a laboratory plant with a fixed-bed continuous-flow reactor, fully automated and controlled from a personal computer. The automated variables include two gas flows, one liquid flow, six temperatures, two pressures, one circulation of a cooling liquid, and 10 electrovalves. An adaptive-predictive control system was used. The chemical process chosen to run the automated reactor was the conversion of methanol to gasoline over a ZSM-5 catalyst. This is a highly exothermal process, so a cascade control system had to be used to control the reactor internal temperature. Pressure and weight hourly space velocity (WHSV) were fixed at 1 arm and 1.5h-1 respectively. Accurate control (±0.2°C) of the reactor’s internal temperature was achieved and repeatability for the conversion of methanol to gasoline was good.
机译:本文介绍了具有固定床连续流反应器的实验室设备的设计和操作,该设备是全自动的,并由个人计算机控制。自动变量包括两个气体流量,一个液体流量,六个温度,两个压力,一个冷却液循环和10个电动阀。使用了自适应预测控制系统。选择运行自动反应器的化学过程是通过ZSM-5催化剂将甲醇转化为汽油。这是一个高度放热的过程,因此必须使用级联控制系统来控制反应器内部温度。压力和重量时空速度(WHSV)分别固定为1臂和1.5h -1 。实现了反应器内部温度的精确控制(±0.2 ° C),并且甲醇转化为汽油的重复性良好。

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