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Verification of energy conservation for discretely heat integrated distillation column through commercial operation

机译:通过商业操作验证用于离散热集成蒸馏塔的节能

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The heat exchange among the stages in the rectifying and stripping sections increases the possibility of energy conservation for a distillation column. From that point of view, an internal heat integrated distillation column called HIDiC was proposed. In the conventional HIDiC structure, as the stripping section and the pressurized rectifying section are provided in parallel, it is difficult to supply and remove the heat to and from the stages so that those are similar to the case of the reversible distillation. We showed in the previous paper that by executing the heat exchanges among the appropriately selected stages in the rectifying and stripping sections in discrete manner, the amount of enthalpy change to the composition change that is similar to the ideal form can be obtained. We also proposed a design methodology to achieve it, and demonstrated that the process designed by using the proposed methodology showed high energy conservation performance by process simulation studies. Here, such HIDiC is called "discretely heat integrated distillation column" (D-HIDiC).
机译:整流和汽提部分中的阶段之间的热交换增加了蒸馏塔的节能的可能性。从该角度来看,提出了一种称为HIDIC的内部热集成蒸馏塔。在传统的隐藏结构中,随着剥离部分和加压整流部分并联设置,难以向级和从阶段送出并从阶段上移除,使得这些类似于可逆蒸馏的情况。 We showed in the previous paper that by executing the heat exchanges among the appropriately selected stages in the rectifying and stripping sections in discrete manner, the amount of enthalpy change to the composition change that is similar to the ideal form can be obtained.我们还提出了一种设计方法来实现它,并证明了通过使用所提出的方法设计的过程通过过程模拟研究表明了高能量守恒性能。这里,这种隐士称为“离散热集成蒸馏塔”(D-HIDIC)。

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