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Optimal retrofit and process design of distillation plants for energy saving and process intensification

机译:用于节能和工艺强化的蒸馏装置的最佳改造和工艺设计

摘要

This work is divided in two principal sections. The first concerns the application of more convenient structures to intensive energy consuming plants built before the energy crisis. Two case studies are considered. The first regards the implementation of a preflash device (drum or column) on a crude distillation unit. The limitations of both apparatuses are considered together with the energy saving realized. Particular emphasis is given to the evaluation of the best structure that matches the scope in the energy plant reduction and the respect of the production specifications. The second case considered regards a light ends distillation plant. Different separation sequences derived from the plant configuration are considered. The possibility to reach a reduction of the energy consumption is considered together with the maximum reusageudof the plant apparatus, that allows to minimize the capital cost investment. The total annual cost is associated to the required heat exchanger area for the condensers and the reboilers and to the column section diameter. The best solution, that satisfy the scope of the retrofit work minimizing at the same time the employing of new equipment and the energy consumption, is then identified.udIn the second section of the work the column sequence design is considered. The starting point was the separation of a four components mixture considered with five different feed compositions. All the possible simple column sequences were first analyzed using different sets of heuristic rules and after with more rigorous evaluation. The different solutions are compared to put in evidence the limitations of the heuristic rules, which anyway remain a good tool for a first screening of the most promising structures. The best distillation sequence for each feed composition case is also considered for the implementation of a divided wall column to perform a three component separation. The resulting “hybrid” sequences are made by a simple column that follows or precedes a divided wall column. This type of column was modeled using the modified Underwood-Fenske-Gilliland method to obtain the first design parameters to be utilized as the input to a more rigorous simulation performed with the Aspen Plus simulation package. The different hybrid configurations are then compared with respect to the best simple column structures from which are derived.udIn the last part of the work a new method to map the space of distillation columns with less than n-1 columns is proposed. Up to now this configuration space was never predicted in a systematic way and only heuristic rules are available to predict only a few of all the possible configurations. Including more distillation columnudconfigurations in the research space increases the possibility to identify the sequence that satisfies the research scope. The generation method is presented for a four components mixture but is absolutely general and can be applied for any number of components.ud
机译:这项工作分为两个主要部分。第一个问题涉及在能源危机之前将更方便的结构应用于密集的能源消耗工厂。考虑了两个案例研究。第一个方面涉及在粗蒸馏装置上实施预闪蒸设备(鼓式或塔式)。考虑到两种设备的局限性以及实现的节能效果。特别强调了对最佳结构的评估,该结构应与减少发电厂的范围以及对生产规格的尊重相匹配。考虑的第二种情况是关于轻馏分蒸馏装置。考虑了源自植物构型的不同分离序列。可以考虑降低能耗的可能性以及工厂设备的最大再利用/ ud,从而最大程度地减少了资本成本投资。每年的总成本与冷凝器和再沸器所需的换热面积以及塔截面直径有关。然后确定最佳解决方案,该方案应满足改造工作的范围,同时将新设备的使用和能耗降至最低。 ud在工作的第二部分中,考虑了列顺序设计。起始点是考虑使用五种不同的进料组合物分离四种组分的混合物。首先使用不同的启发式规则集分析所有可能的简单列序列,然后进行更严格的评估。比较了不同的解决方案,以证明启发式规则的局限性,无论如何,这些规则仍然是首次筛选最有希望的结构的好工具。为了实现三组分分离,还考虑了每种进料组成情况的最佳蒸馏顺序。产生的“混合”序列由分隔墙列之后或之前的简单列组成。使用改进的Underwood-Fenske-Gilliland方法对这种类型的色谱柱进行建模,以获得第一个设计参数,将其用作使用Aspen Plus模拟软件包进行的更严格模拟的输入。然后,针对不同的混合构型,从中得出最佳的简单塔结构进行比较。 ud在工作的最后一部分,提出了一种映射少于n-1个塔的蒸馏塔空间的新方法。迄今为止,从未以系统的方式预测此配置空间,只有启发式规则可用于预测所有可能配置中的少数几个。在研究空间中包括更多的蒸馏塔 ud配置,增加了确定满足研究范围的序列的可能性。给出了四组分混合物的生成方法,但绝对通用,可以应用于任意数量的组分。 ud

著录项

  • 作者

    Errico Massimiliano;

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  • 年度 2008
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