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Feasibility assessment of CO2 capture retrofitted to an existing cement plant: post-combustion vs. oxy-fuel combustion technology

机译:CO2捕获改装到现有水泥厂的可行性评估:燃烧后对氧燃料燃烧技术

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This research presents a preliminary techno-economic evaluation of CO2 capture integrated with a cement plant. Two capture technologies are evaluated, monoethanolamine (MEA) post-combustion CO2 capture and oxy-fuel combustion. Both are considered potential technologies that could contribute to reduction of CO2 emissions in the cement industry. The study compares these two technologies in terms of technical performance, investment costs, and operational costs. The case study is applied to the one of the largest cement plants in Portugal, Alhandra. The results show that the amount of CO2 avoided using the post-combustion MEA technology is lower due to additional emissions from reboiler steam production. Moreover, the total capital investment of the post-combustion CO2 capture system is estimated at 260 M?2014 and the annual operation and maintenance costs of around 43 M?_(2014);; whereas the oxy-fuel combustion CO2 capture requires a capital investment of about 217 M?_(2014) and 37 M6_(2014) annually for operation and maintenance. This indicates that the oxy-fuel CO2 capture technology may be a better choice in terms of costs. However, this technology implies higher technical uncertainties concerning integration with the cement plant.
机译:本研究介绍了与水泥厂集成的CO2捕获的初步技术经济评价。评估两种捕获技术,单乙醇胺(MEA)后燃烧二氧化碳捕获和氧燃料燃烧。两者都被认为是可能有助于减少水泥行业的二氧化碳排放的潜在技术。该研究在技术性能,投资成本和运营成本方面比较了这两种技术。案例研究适用于葡萄牙葡萄糖中最大的水泥厂之一。结果表明,由于再沸器蒸汽生产的额外排放,使用后燃烧后MEA技术避免的CO2量较低。此外,燃烧后二氧化碳捕获系统的总资本投资估计为2014年260米,年度运营和维护成本约为43米?_(2014);;虽然氧气燃烧CO2捕获需要约217米?_(2014)和37 M6_(2014)的资本投资,用于运营和维护。这表明氧燃料CO2捕获技术可能是在成本方面更好的选择。然而,该技术意味着较高的技术不确定性与水泥厂的整合。

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