首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Revamping Dimethyl Ether Separation to a Single-Step Process Dedicated to Prof. Elena Stan on the occasion of her 70th birthday
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Revamping Dimethyl Ether Separation to a Single-Step Process Dedicated to Prof. Elena Stan on the occasion of her 70th birthday

机译:在Elena Stan教授诞辰70周年之际,将二甲醚分离技术改进为一步法

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Process intensification techniques were recently proposed to improve the eco-effi-ciency of the conventional dimethyl ether (DME) purification and methanol recovery distillation sequence, but they all require new specific equipment and hence rather high investment costs leading to several years of payback time. However, the alternative of reusing the existing equipment to revamp the two distillation columns of the downstream processing section into a single-step separation was so far overlooked in the open literature. To solve the problem of costly DME separation, a novel single-step DME separation taking place in a dividing-wall column (DWC) is proposed that effectively integrates in one shell the tasks of DME purification and methanol recovery. The new process is optimized in terms of minimal energy requirements, taking into account the restrictions caused by reusing one distillation column like, such as limited diameter or reboiler/conden-ser heat duty. The results demonstrate that the DWC alternative is feasible and has better performances as compared to the classic sequence, i.e., 28 % lower operating costs and 20 % less capital investment.
机译:最近提出了工艺强化技术来提高常规二甲醚(DME)提纯和甲醇回收蒸馏顺序的生态效率,但它们都需要新的专用设备,因此投资成本较高,因此需要数年的投资回收期。然而,迄今为止,在公开文献中仍未考虑到利用现有设备来将下游处理段的两个蒸馏塔改造成单步分离的选择。为了解决高成本的DME分离问题,提出了一种在分隔壁塔(DWC)中进行的新型单步DME分离方法,该方法将DME纯化和甲醇回收的任务有效地整合到了一个壳中。考虑到由重复使用一个蒸馏塔所造成的限制,例如直径受限或再沸器/冷凝器热负荷,对新工艺进行了最小化能量需求方面的优化。结果表明,与经典序列相比,DWC方案是可行的,并且具有更好的性能,即,运行成本降低了28%,资本投资减少了20%。

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