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A novel path for carbon-rich resource utilization with lower emission and higher efficiency: An integrated process of coal gasification and coking to methanol production

机译:发射较低和效率较高的碳化碳化利用的一种新途径:煤气化和焦化对甲醇生产的综合过程

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摘要

Coal gasification, the major approach to coal-based chemicals synthesis, suffers from substantial carbon dioxide emission. Reducing CO2 emission is the emphasis and hotspot in coal chemical industry. On the other hand, the traditional coking process is inefficiency of carbon and hydrogen resources utilization. For higher coal resource utilization and lower carbon emission, this paper proposes a novel methanol production process from coal gasification integrated with coal coking. This process consists of the units of coal gasification, coking, coke gasification, dry methane reforming, and methanol synthesis. Coke gasification transforms the low-valued coke to high-valued chemicals and makes the process suitable for market variation. DMR converts methane and CO2 into syngas, increasing the overall resource utilization efficiency. This integrated process has the advantages of higher valued products and larger methanol productivity. According to the simulation and detailed techno-economic analysis, the new process has a much higher carbon utilization efficiency of 51.6%, compared to 37.3% of the single coal to methanol (CTM) process, and the corresponding CO2 emission is reduced by 34.6%. The energy efficiency of the CGCTM process is 62%, which is about 21.6% higher than that of CTM process. As for economic benefits, the internal rate of return for the new process is 22.5%, much higher than 15.3% of the current CTM process. (C) 2019 Elsevier Ltd. All rights reserved.
机译:煤气化,煤基化学品合成的主要方法,遭受了大量二氧化碳排放。减少二氧化碳排放是煤化工中的重点和热点。另一方面,传统的焦化过程是碳和氢气资源利用率的低效率。对于更高的煤炭资源利用率和较低的碳排放,本文提出了一种与煤炭煤炭集成的煤气化的新型甲醇生产过程。该过程包括煤气化,焦化,焦化,干燥甲烷重整和甲醇合成的单位组成。焦炭气化将低价焦炭转化为高价值的化学品,并使该过程适用于市场变异。 DMR将甲烷和二氧化碳转化为合成气,提高整体资源利用效率。该综合工艺具有高价值产品和较大的甲醇生产率的优点。根据仿真和详细的技术经济分析,新工艺的碳利用效率高于51.6%,相比37.3%的单煤(CTM)工艺,相应的二氧化碳排放量减少了34.6% 。 CGCTM工艺的能效为62%,比CTM工艺高约21.6%。至于经济效益,新工艺的内部回报率为22.5%,远高于当前CTM过程的15.3%。 (c)2019 Elsevier Ltd.保留所有权利。

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