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Assessment of the different parameters affecting the C0_2 purity from coal fired oxyfuel process

机译:评估影响燃煤含氧燃料过程中C0_2纯度的不同参数

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摘要

The oxyfuel process is one of the most promising options to capture CO_2 from coal fired power plants. The combustion takes place in an atmosphere of almost pure oxygen, delivered from an air separation unit (ASU), and recirculated flue gas. This provides a flue gas containing 80-90 vol% CO2 on a dry basis. Impurities are caused by the purity of the oxygen from the ASU, the combustion process and air ingress. Via liquefaction a C0_2 stream with purity in the range from 85 to 99.5 vol% can be separated and stored geologically. Impurities like 0_2, NO_x, SO_x, and CO may negatively influence the transport infrastructure or the geological storage site by causing geochemical reactions. Therefore the maximum acceptable concentrations of the impurities inthe separated C0_2 stream must be defined regarding the requirements from transportation and storage. The main objective of the research project COORAL therefore is to define the required CO_2 purity for capture and storage.
机译:富氧工艺是从燃煤电厂捕获CO_2的最有希望的选择之一。燃烧在从空气分离装置(ASU)输送的几乎纯净的氧气气氛中进行,并经过再循环的烟道气。这提供了以干基计包含80-90vol%的CO 2的烟道气。杂质是由来自ASU的氧气纯度,燃烧过程和空气进入引起的。通过液化,可以分离并在地质上储存纯度为85至99.5vol%的CO 2流。诸如0_2,NO_x,SO_x和CO之类的杂质可能通过引起地球化学反应而对运输基础设施或地质储藏场所产生负面影响。因此,必须根据运输和储存的要求确定分离出的CO_2物流中杂质的最大可接受浓度。因此,COORAL研究项目的主要目标是定义捕获和储存所需的CO_2纯度。

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