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Model-Based Design of a Control System for the Upgrade of Biogas with Zeolite Sorbent Reactors

机译:基于模型的沸石吸附剂反应器升级沼气的控制系统

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To remove carbon dioxide from biogas so as to produce biomethane, a fixed-bed tubular reactor filled with a zeolite pelleted solid sorbent is considered. To generate biomethane continuously, three batch reactors are operated in coordinated cycles. The control system operates in a two-level structure: a high-level coordination algorithm determines the shift from a process stage to another for each single reactor and computes the setpoints for the low-level controllers of each reactor; the low-level controllers regulate the process variables, such as the inlet gas flow rate, the inlet or outlet gas pressure and the sorbent temperature, according to the setpoints. In this paper, we first investigate the modelling of the batch process by means of mass, energy and momentum conservation equations. The concurrent adsorption of methane is also taken into account. The model parameters are identified by means of a two-stage procedure using experimental measurements from two plants, a laboratory-scale one located in Piacenza (Italy) and a pilot-scale one located in Camposampiero (Italy). With the identified model we design a control system for the coordination of three batch reactors.
机译:为了从沼气中除去二氧化碳以产生生物甲烷,考虑了填充有沸石粒状固体吸附剂的固定床管式反应器。为了连续产生生物甲烷,三个间歇反应器以协调的周期运行。控制系统以两级结构运行:高级协调算法确定每个反应堆从一个工艺阶段到另一个阶段的转换,并为每个反应堆的低层控制器计算设定点;低级控制器根据设定值调节过程变量,例如入口气体流速,入口或出口气体压力以及吸附剂温度。在本文中,我们首先通过质量,能量和动量守恒方程研究批处理过程的建模。还考虑了甲烷的同时吸附。模型参数是通过两阶段程序使用来自两个工厂的实验测量值来确定的,其中一个实验室规模的工厂位于意大利皮亚琴察(Piacenza),一个中规模的工厂位于意大利坎波桑皮耶罗(Camposampiero)。利用确定的模型,我们设计了一个用于协调三批反应堆的控制系统。

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