首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Pilot plant study of post-combustion carbon dioxide capture by reactive absorption: Methodology, comparison of different structured packings, and comprehensive results for monoethanolamine
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Pilot plant study of post-combustion carbon dioxide capture by reactive absorption: Methodology, comparison of different structured packings, and comprehensive results for monoethanolamine

机译:通过反应吸收捕集燃烧后二氧化碳的中试研究:方法,不同结构填料的比较以及单乙醇胺的综合结果

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摘要

Post-combustion carbon capture (PCC) from fossil fuel power plants by reactive absorption can substantially contribute to reduce emissions of the greenhouse gas CO2. To test new solvents for this purpose small pilot plants are used. The present paper describes results of comprehensive studies of the standard PCC solvent MEA (0.3 g/g monoethanolamine in water) in a pilot plant in which the closed cycle of absorption/desorption process is continuously operated (column diameters: 0.125 m, absorber/desorber packing height: 4.25/2.55 m, packing type: Sulzer BX 500, flue gas flow: 30-110 kg/h, CO2 partial pressure: 35-135 mbar). The data establish a base line for comparisons with new solvents tested in the pilot plant and can be used for a validation of models of the PCC process with MEA. The ratio of the solvent to the flue gas mass flow is systematically varied at constant CO2 removal rate, and CO2 partial pressure in the flue gas. Optimal operating points are determined. In the present study the structured packing Sulzer BX 500 is used. The experiments with the removal rate variation are carried out so that the results can directly be compared to those from a previous study in the same plant that was carried out using Sulzer Mellapak 250.Y. A strategy for identifying the influence of absorption kinetics on the results is proposed, which is based on a variation of the gas load at a constant L/G ratio and provides valuable insight on the transferability of pilot plant results.
机译:通过反应吸收从化石燃料发电厂燃烧后的碳捕获(PCC)可以大大减少温室气体CO2的排放。为了测试新的溶剂,使用了小型中试装置。本文介绍了在中试工厂中对标准PCC溶剂MEA(0.3 g / g单乙醇胺在水中)进行全面研究的结果,在该工厂中,吸收/解吸过程的封闭循环连续运行(色谱柱直径:0.125 m,吸收器/解吸器填料高度:4.25 / 2.55 m,填料类型:Sulzer BX 500,烟气流量:30-110 kg / h,CO2分压:35-135 mbar)。该数据为与中试工厂测试的新溶剂进行比较建立了基准,并可用于验证采用MEA的PCC工艺模型的验证。在恒定的CO2去除速率和烟道气中的CO2分压不变的情况下,溶剂与烟道气质量流量的比率会系统地变化。确定最佳工作点。在本研究中,使用了规整填料Sulzer BX 500。进行去除速率变化的实验,以便可以将结果直接与使用Sulzer Mellapak 250.Y进行的同一工厂中先前研究的结果进行比较。提出了一种确定吸收动力学对结果的影响的策略,该策略基于气体负载在恒定L / G比下的变化,并提供了关于试验工厂结果可传递性的宝贵见解。

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