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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Integrated oxyfuel power plant with improved CO2 separation and compression technology for EOR application
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Integrated oxyfuel power plant with improved CO2 separation and compression technology for EOR application

机译:集成的含氧燃料发电厂,具有改进的CO2分离和压缩技术,用于EOR应用

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摘要

An integrated advanced supercritical coal-fired oxyfuel power plant with a novel cryogenic CO2 separation and compression technology for high purity CO2 to suit injection for Enhanced Oil Recovery purposes is investigated. The full process is modelled in Aspen Plus (R) consisting of: an Air Separation Unit (ASU), an Advanced Supercritical Pulverised Fuel (ASC PF) power plant with a bituminous coal as feedstock, a steam cycle, and a Carbon dioxide Purification Unit (CPU). The proposed CPU process accommodates a distillation column with an integrated reboiler duty to achieve a very high purity CO2 product (99.9%) with constrained oxygen levels (100 ppm). This work presents a detailed analysis of the CO2 separation and compression process within the full power plant, including effective heat integration to reduce the electricity output penalty associated with oxyfuel CO2 capture. The results of this analysis are compared with previous studies and indicate that the combined application of process optimisation in the CPU and advanced heat integration with the power plant offer promising results: In this work a high purity CO2 product was achieved while maintaining 90% capture for a net plant efficiency of 38.02% (LHV), compared with a thermal efficiency of 37.76% (LHV) for a reference simulation of an ASC PF oxy-fired plant with advanced heat integration, providing a lower purity CO2 product. Crown Copyright (C) 2016 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers. All rights reserved.
机译:研究了具有先进的低温超临界CO2分离和压缩技术的综合先进超临界燃煤含氧燃料发电厂,该技术可用于高纯度CO2,适合用于提高采油率的注入。整个过程以Aspen Plus(R)为模型,包括:空分装置(ASU),以沥青为原料的先进超临界粉燃料(ASC PF)电厂,蒸汽循环和二氧化碳净化装置(中央处理器)。拟议的CPU工艺可在蒸馏塔中集成再沸器功能,以实现高纯CO2产品(99.9%)和受约束的氧气水平(100 ppm)。这项工作对整个发电厂内的CO2分离和压缩过程进行了详细分析,包括有效的热集成以减少与含氧燃料CO2捕集相关的电力输出损失。该分析的结果与之前的研究进行了比较,表明在CPU中进行过程优化和与电厂进行先进的热集成相结合,可提供令人鼓舞的结果:在这项工作中,获得了高纯度的CO2产品,同时保持了90%的二氧化碳捕集率。净效率为38.02%(LHV),而热模拟效率为37.76%(LHV),这是对具有先进的热集成,提供较低纯度CO2产品的ASC PF含氧装置进行参考模拟的结果。官方版权(C)2016,由Elsevier B.V.代表化学工程师协会出版。版权所有。

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