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Near-zero emission coal-fired power plant using advanced KM CDR process (TM)

机译:使用先进的KM CDR过程(TM)近零排放燃煤电厂

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摘要

CCS is expected to be one of the major measures contributing to carbon reduction and meet net zero emission in near future. Fossil fuel power plants equipped with CCS can be considered to be zero-carbon power generation if nearly full CO2 recovery is feasible. The objective of this paper is to investigate the process performance and plant economics at 99.5% CO2 capture ratio that has not been studied before using MHIENG's CO2 capture technology. It is expected that this work using experiences and empirical data that MHIENG has accumulated is more indicative of current commercial CCS technology and economics than previous work. The near-zero emission design proposed in this work using 50% additional absorption packing achieves 99.5% capture ratio with similar normalized OPEX ($/tonne CO2) and 6% higher normalized CAPEX compared to base case at 90% capture ratio. Near-zero emission coal-fired power plant is technically feasible using the Advanced KM CDR Process (TM) and KS-1 (TM) solvent and will increase cost of CO2 captured by 3% compared to default design at 90% capture ratio.
机译:CCS预计将成为导致碳减少的主要措施之一,并在不久的将来达到净零排放。如果近乎完整的二氧化碳恢复是可行的,则配备CCS的化石燃料电厂可以被认为是零碳发电。本文的目的是在使用MHIENG的CO2捕获技术之前,调查尚未研究的99.5%CO2捕获比率的过程性能和植物经济学。预计这项工作的经验和经验数据累积的经验和经验数据更为指示当前的商业CCS技术和经济学而不是以前的工作。使用50%额外吸收填料的本作作品中提出的接近零排放设计达到99.5%捕获比率与相似的常规OPEX($ /吨/吨/吨CO2)和6%的标准化支出,与碱壳相比以90%的捕获比率相比。近零排放燃煤发电厂使用先进的KM CDR工艺(TM)和KS-1(TM)溶剂技术可行,与90%捕获比率的默认设计相比,将CO2捕获的二氧化碳成本增加3%。

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