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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Energy Recovery in a Naphtha Splitter Process through Debottlenecking of Retrofitted Thermally Coupled and Double-Effect Distillation Sequences
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Energy Recovery in a Naphtha Splitter Process through Debottlenecking of Retrofitted Thermally Coupled and Double-Effect Distillation Sequences

机译:通过改型的热耦合和双效蒸馏序列的去瓶颈处理,在石脑油分离器工艺中回收能量

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摘要

A thermally coupled distillation sequence (TCDS) and a double-effect sequence (DES) were proposed to retrofit an existing naphtha splitter process in the refinery plant for enhanced energy efficiency. This, however, can create a bottleneck in the columns. A side reboiler was proposed to debottleneck the retrofitted columns. The concept of minimum vapor flow rate was used as a preliminary calculation to determine the benefits of these proposed arrangements. A practical optimization using the response surface methodology was applied to the design of TCDS and DES. In addition, a column grand composite curve was used to highlight the thermodynamic feasibility of the implementation of a side reboiler into the retrofitted sequences. As a result, the DES was shown as the best alternative through combination of a side reboiler, and this achieved 32.7% savings on operating costs with a maximum reuse of the existing equipment.
机译:提出了热耦合蒸馏程序(TCDS)和双效程序(DES)来改造炼油厂中现有的石脑油分离器工艺,以提高能源效率。但是,这可能会在列中造成瓶颈。有人建议使用侧面再沸器来消除改造后的塔的瓶颈。最小蒸气流速的概念被用作初步计算以确定这些拟议安排的好处。使用响应面方法的实际优化被应用于TCDS和DES的设计。另外,使用了一个柱状大复合曲线来强调在改造序列中实施侧再沸器的热力学可行性。结果,通过结合侧再沸器,DES被证明是最佳的选择,并且在最大程度地利用现有设备的情况下,这节省了32.7%的运营成本。

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