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Minimum energy of multicomponent distillation systems using minimum additional heat and mass integration sections

机译:使用最小额外的热和质量集成部分的多组分蒸馏系统的最小能量

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> Heat and mass integration to consolidate distillation columns in a multicomponent distillation configuration can lead to a number of new energy efficient and cost‐effective configurations. In this work, a powerful and simple‐to‐use fact about heat and mass integration is identified. The newly developed heat and mass integrated configurations, which we call as HMP configurations, involve first introducing thermal couplings to all intermediate transfer streams, followed by consolidating columns associated with a lighter pure product reboiler and a heavier pure product condenser. A systematic method of enumerating all HMP configurations is introduced. The energy savings of HMP configurations is compared with the well‐known fully thermally coupled (FTC) configurations. HMP configurations can have very similar and sometimes even the same minimum total vapor duty requirement as the FTC configuration is demonstrated, while using far less number of column sections, intermediate transfer streams, and thermal couplings than the FTC configurations. ? 2018 American Institute of Chemical Engineers AIChE J , 64: 3410–3418, 2018
机译: > 在多组分蒸馏构型中整合蒸馏塔的热量和质量集成可导致许多新的能量效率和成本效益的配置。在这项工作中,鉴定了关于热量和质量集成的强大而简单的使用。我们称之为HMP配置的新开发的热量和质量集成配置涉及首先将热耦合引入所有中间转移流,然后通过较轻纯产品再沸器和较重的纯产品冷凝器固结柱。介绍了枚举所有HMP配置的系统方法。将HMP配置的节能与众所周知的完全热耦合(FTC)配置进行比较。 HMP配置可以非常相似,有时甚至与FTC配置相同的最小总蒸汽占空比要求,同时使用比FTC配置的列部分,中间转移流和热耦合的较少数量。还2018年美国化学工程研究所 aiche j ,64:3410-3418,2018

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