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Analysis of supercritical coal fired oxy combustion power plant with cryogenic oxygen unit and turbo-compressor

机译:带有低温氧气单元和涡轮压缩机的超临界燃煤氧气燃烧电厂的分析

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This paper reports the results of thermal, energy, exergy and economic analysis involving a hard coal fired power plant with a two-column cryogenic oxygen unit and operating in an oxy combustion process. As a novelty it was assumed that the auxiliary steam turbine drives the oxygen unit compressor and the bleeding steam for this purpose is extracted between intermediate- and low-pressure stage (ILS) of the main turbine. Calculations were performed to consider a number of alternative designs, in which the principal issue was to consider capacity and efficiency loss of the power plant resulting from the drive of the compressor from a cryogenic oxygen unit. The results showed that steam from ILS of the main turbine could be used for driving air separation unit (ASU) compressor. However, smaller loss of power and efficiency may be achieved with electrical supply of ASU. An application of oxy-fuel process to power plant will cause a decrease of gross efficiency in power unit by 12% points by using steam from ILS and 11% points by using electric motor for driving ASU. Profitability of oxy combustion technology will be achieved when the CO2 emissions price reaches a minimum of 52 Euro/EUAs. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文报告了热,能源,火用和经济分析的结果,该结果涉及具有两列低温氧气装置并在氧气燃烧过程中运行的硬煤电厂。作为一种新颖性,假设辅助蒸汽涡轮机驱动氧气单元压缩机,为此目的,在主涡轮机的中压级和低压级(ILS)之间抽取了放出的蒸汽。进行了计算以考虑许多替代设计,其中主要问题是要考虑由低温氧气装置驱动压缩机导致的发电厂的容量和效率损失。结果表明,来自主涡轮机的ILS的蒸汽可用于驱动空分单元(ASU)压缩机。但是,通过ASU供电可以实现较小的功率和效率损失。氧燃料工艺在发电厂中的应用将导致使用ILS产生的蒸汽使动力装置的总效率降低12%,而使用电动机驱动ASU将导致总效率降低11%。当二氧化碳的排放价格达到最低52欧元/ EUAs时,将实现氧气燃烧技术的盈利能力。 (C)2017 Elsevier Ltd.保留所有权利。

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