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Energy-saving investigation for diethyl carbonate synthesis through the reactive dividing wall column combining the vapor recompression heat pump or different pressure thermally coupled technique

机译:通过反应分割壁柱的碳酸二乙酯合成的节能研究组合蒸汽再压瓶或不同压力热耦合技术

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The design of the diethyl carbonate (DEC) production process has received much attention due to its key role as the oxygenated gasoline additive with much fewer environmental and health issues than methyl tert-butyl ether. In this study, two configurations including vapor recompression heat pump (VRHP)-reactive dividing wall column (RDWC) with or without the splitting top stream are investigated for DEC production to screen out the best VRHP sequence. Furthermore, a novel alternative approach of different pressure thermally coupled-RDWC (DPTC-RDWC) is comparatively proposed to achieve less capital and energy cost. The effects of pressure within stripping section of the RDWC on total annualized cost (TAC) and the temperature difference between the condenser and reboiler are studied. The results illustrate that the proposed optimum process produces DEC production with the purity of 99.8 mol% and significant reduction of TAC is achieved by 20.52% with 10 years payback period. Apart from that, carbon dioxide emission of the process is decreased by 33.74% compared to that through conventional RDWC. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳酸二乙酯(DEC)生产过程的设计由于其主要作用而导致其作为含氧汽油添加剂的关键作用,其具有比甲基叔丁醚的甲基叔丁基醚更少的环境和健康问题。在该研究中,研究了包括具有或不具有分裂顶部物流的蒸汽再压热泵(VRHP) - 反应壁柱(RDWC)的两种配置,用于DEC生产以筛选最佳的VRHP序列。此外,相互恰当地提出了一种不同压力热耦合-RDWC(DPTC-RDWC)的替代方法,以实现更少的资金和能源成本。研究了RDWC剥离部分对年化总成本(TAC)的影响以及冷凝器和再沸器之间的温差。结果表明,所提出的最佳过程产生120例纯度的DEC生产,纯度为99.8摩尔%,TAC的显着降低为20.52%,回收期10年。除此之外,与通过常规RDWC相比,该方法的二氧化碳排放量减少了33.74%。 (c)2019 Elsevier Ltd.保留所有权利。

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