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Energetic optimization of Moroccan distillery using simulation and response surface methodology

机译:使用模拟和响应面方法对摩洛哥酒厂进行能源优化

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Distillation is one of the most widely used separation methods in chemical process industries. In a typical bioethanol distillation process, the high consumption of energy is the major disadvantage of this process. Consequently, the design and optimization of the distillation column have a critical impact on the economics of the entire process. This work aimed to investigate a vacuum distillation process in order to evaluate the operating energy and cost to produce ethanol considering a fermented must with 5 components. The simulation results were compared with industrial data collected from a Moroccan distillery. It was found that the simulation approach was able to correctly reproduce the industrial process. Response surface methodology based on a central composite design was applied to analyze some operating conditions and optimize the process. Two models were proposed to test the required energy for distillation column using simulation results. On the other hand, the reflux ratio has a greater effect on required energy of distillation column compared to the feeding tray position. Working under optimal values of the operating conditions, the results showed that the operating energy and cost of the industrial process were reduced about 7.49% and 5.91%, respectively.
机译:蒸馏是化学过程工业中使用最广泛的分离方法之一。在典型的生物乙醇蒸馏过程中,高能耗是该过程的主要缺点。因此,蒸馏塔的设计和优化对整个过程的经济性具有至关重要的影响。这项工作旨在研究真空蒸馏工艺,以评估考虑到具有5种成分的发酵葡萄汁的生产乙醇所需的操作能量和成本。将模拟结果与从摩洛哥酿酒厂收集的工业数据进行了比较。发现模拟方法能够正确地复制工业过程。应用基于中央复合设计的响应面方法来分析一些操作条件并优化过程。提出了两个模型,利用模拟结果测试蒸馏塔所需的能量。另一方面,与进料塔板位置相比,回流比对蒸馏塔的所需能量有更大的影响。在最佳运行条件下工作,结果表明,工业过程的运行能耗和成本分别降低了约7.49%和5.91%。

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