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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A multi-perspectives analysis of methane oxidative coupling process based on miniplant-scale experimental data
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A multi-perspectives analysis of methane oxidative coupling process based on miniplant-scale experimental data

机译:基于微孔级实验数据的甲烷氧化耦合过程的多视角分析

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A multi-perspectives analysis of the potentials, challenges and characteristics of possible future industrial-scale ethylene production via Oxidative Coupling of Methane (OCM) process was performed in this research. In doing so, miniplant-scale experimental data were utilized to scale-up, predict and represent the performance of the unit operations in the industrial-scale operation of a reference stand-alone and two different integrated OCM process configuration, each with an assumed capacity of one million tons per year ethylene production. Technical, environmental and economic performance of these alternative OCM processes were analyzed and compared using Aspen Plus simulations and Aspen Process Economic Analyzer. The assumptions and the conceptual conclusions made in the analysis are also discussed in this paper. The technologies and the costs associated with conditioning the methane feed stream originated from natural gas or biogas were compared and their impacts, through reducing the resulted price of methane-feed, on the economy of the OCM process are discussed. Moreover, the integration potentials of the OCM process with the ethane dehydrogenation process and the clear impacts of the resulted increase in the ethylene production on the whole process economy are also considered in this paper. The feasibility and the specifications of the selected integrated OCM process configuration, providing the fastest return of investments around 9.5 year, are discussed in this paper. The economic and environmental performance indicators of this integrated process along with the potentials and some suggestions for further improving its performance are also highlighted in this paper. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在本研究中,在该研究中进行了通过氧化偶联可能的未来工业规模乙烯生产的潜在,挑战和特征的多视角分析。在这样做时,利用微小的实验数据来扩大,预测和代表在参考单独和两个不同的集成OCM过程配置的工业规模操作中的单位操作的性能,每个都具有假设的容量每年乙烯生产一百万吨。通过Aspen Plus模拟和Aspen流程经济分析仪分析和比较了这些替代OCM过程的技术,环境和经济性能。本文还讨论了分析中的假设和概念结论。与调理源自天然气或沼气的甲烷进料流相关的技术和成本,并通过降低甲烷饲料价格的影响,讨论了OCM过程的经济性。此外,在本文中还考虑了在本文中考虑了乙烷脱氢过程与乙烷脱氢过程的含量升高的乙烯生产升高的透明影响。本文讨论了所选集成OCM流程配置的可行性和规范,提供最快的投资回报。本文还突出了这一综合进程的经济和环境绩效指标以及进一步提高其业绩的潜力和一些建议。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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