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Integrated strategy for N-methylformanilide production from carbon dioxide of flue gas in coal-fired power plant

机译:燃煤电厂烟气二氧化碳生产N-甲基甲酰苯胺的综合策略

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In this work, an integrated strategy is developed for producing N-methylformanilide from the carbon dioxide of flue gas in a coal-fired power plant. Based on lab-scale experimental studies presenting maximum yields (96%) with low reaction concentrations (below 25 wt% reactants) using large volumes of gamma-valerolactone as a solvent and catalyst, the integrated strategy focuses on the development of commercial-scale processes that consist of a monoethanolamine-based carbon dioxide separation subsystem and a catalytic conversion subsystem of N-Methylaniline with carbon dioxide to Nmethylformanilide. Moreover, a heat exchanger network is designed to minimize the total energy requirements by transferring the heat between subsystems. In the proposed integrated strategy, the energy efficiency after heat integration (77.5%) is higher than that before heat integration (74.5%). Economic analysis results show that the minimum selling price of N-methylformanilide ($1592.1 Mt(-1) using the best possible parameters) for use in this integrated strategy is cost-competitive with the current market price ($2984 Mt(-1)). (C) 2017 Elsevier Ltd.
机译:在这项工作中,开发了一种综合策略,用于在燃煤电厂中从烟道气中的二氧化碳生产N-甲基甲酰苯胺。基于实验室规模的实验研究,该实验利用大量的γ-戊内酯作为溶剂和催化剂,在低反应浓度(低于25 wt%反应物)的情况下获得最高收率(96%),该综合策略着重于商业规模工艺的开发它由基于单乙醇胺的二氧化碳分离子系统和N-甲基苯胺与二氧化碳催化转化为N甲基甲酰苯胺组成。此外,设计了一个热交换器网络,以通过在子系统之间传递热量来最小化总能量需求。在提出的整合策略中,热整合后的能源效率(77.5%)高于热整合前的能源效率(74.5%)。经济分析结果表明,用于该集成策略的N-甲基甲酰苯胺的最低售价($ 1592.1 Mt(-1)使用最佳参数)与当前市场价格($ 2984 Mt(-1))具有成本竞争力。 (C)2017爱思唯尔有限公司

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