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Hydrogen-Based Power Generation from Bioethanol Steam Reforming

机译:生物乙醇蒸汽重整的氢基发电

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This paper is evaluating two power generation concepts based on hydrogen produced from bioethanol steam reforming at industrial scale without and with carbon capture. The power generation from bioethanol conversion is based on two important steps: hydrogen production from bioethanol catalytic steam reforming and electricity generation using a hydrogen-fuelled gas turbine. As carbon capture method to be assessed in hydrogen-based power generation from bioethanol steam reforming, the gas-liquid absorption using methyl-di-ethanol-amine (MDEA) was used. Bioethanol is a renewable energy carrier mainly produced from biomass fermentation. Steam reforming of bioethanol (SRE) provides a promising method for hydrogen and power production from renewable resources. SRE is performed at high temperatures (e.g. 800-900°C) to reduce the reforming by-products (e.g. ethane, ethene). The power generation from hydrogen was done with M701G2 gas turbine (334 MW net power output). Hydrogen was obtained through catalytic steam reforming of bioethanol without and with carbon capture. For the evaluated plant concepts the following key performance indicators were assessed: fuel consumption, gross and net power outputs, net electrical efficiency, ancillary consumptions, carbon capture rate, specific CO_2 emission etc. As the results show, the power generation based on bioethanol conversion has high energy efficiency and low carbon footprint.
机译:本文正在评估基于工业规模的生物乙醇蒸汽重整产生的两个发电概念,没有碳捕获。生物乙醇转化的发电基于两个重要步骤:使用氢气燃气涡轮机的生物乙醇催化蒸汽重整和发电产生的氢。作为从生物乙醇蒸汽重整中的氢基发电中评估的碳捕获方法,使用使用甲基二乙醇胺(MDEA)的气液吸收。生物乙醇是一种主要由生物质发酵产生的可再生能源载体。生物乙醇(SRE)的蒸汽重整为可再生资源提供了一种有希望的氢气和电力生产方法。 SRE在高温(例如800-900℃)下进行,以减少副产物的重整(例如乙烷,乙烯)。用M701G2燃气轮机(334MW净功率输出)完成氢的发电。通过催化蒸汽重整生物乙醇的催化蒸汽重整而没有碳捕获来获得氢。对于评估的工厂概念,评估以下关键绩效指标:燃料消耗,总额和净功率输出,净电效率,辅助消费,碳捕获率,特定的CO_2排放等作为结果表明,基于生物乙醇转换的发电具有高能效和低碳足迹。

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