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Exergoenvironmental analysis of methanol production by steam reforming and autothermal reforming of natural gas

机译:天然气蒸汽重整和自热重整制甲醇的环境环境分析

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Methanol is one of the most important chemicals serving as a base for a range of synthetic fuels and variety of other chemical derivates. Steam reforming and autothermal reforming of natural gas represent the major technologies used for syngas production in indirect low pressure methanol synthesis routes. Further process development is driven by technical and economic aspects, while environmental aspects often fade into the background. In this paper methanol production processes using steam reforming and autothermal reforming are investigated from the viewpoint of an exergoenvironmental analysis. The processes feature a coproduction of electricity for high efficiency. The pollutant formation within the chemical conversion units, particularly within the reformer and the furnace, reduces the environmental impact associated with the overall system. The environmental impact of generated methanol and electricity is calculated respectively as 156.4 mPt/kg and 98.2 mPt/MWh for the steam methane reforming process and has values of 134.0 mPt/kg and 71.3 mPt/MWh for the autothermal reforming process. (C) 2019 Elsevier Ltd. All rights reserved.
机译:甲醇是最重要的化学物质之一,可作为各种合成燃料和各种其他化学衍生物的基础。天然气的蒸汽重整和自热重整代表了间接低压甲醇合成路线中合成气生产的主要技术。进一步的工艺开发受技术和经济方面的驱动,而环境方面通常逐渐淡出背景。本文从能效环境分析的角度研究了采用蒸汽重整和自热重整的甲醇生产工艺。这些过程的特征是联合生产电力以提高效率。在化学转化装置内,特别是在重整炉和熔炉内,污染物的形成减少了与整个系统有关的环境影响。蒸汽甲烷重整过程产生的甲醇和电力对环境的影响分别计算为156.4 mPt / kg和98.2 mPt / MWh,自热重整过程的值为134.0 mPt / kg和71.3 mPt / MWh。 (C)2019 Elsevier Ltd.保留所有权利。

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