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Combining pinch and energy analysis for process improvement - a case study on an aromatics complex

机译:结合捏和能量分析以改进工艺-以芳烃复合物为例

摘要

Exergy Analysis, also known as Thermodynamic Analysis, is a tool that has been widely used to analyse the energy efficient of continuous processes. It is a powerful analysis tool that is based on the First and the Second Law of Thermodynamics. Pinch Technology, on the other hand, is a tool for optimization of a plant’s heat recovery. Pinch Analysis application however requires extensive process mass and energy balances data. Thus, it cannot provide a quick assessment of the efficiency of selected equipment or processes. Extensive literature exists on the applications of Pinch Analysis on chemical processes and Exergy Analysis on power plants for energy efficiency improvement. Study on combined Pinch-Exergy Analysis has so far been limited to power plant improvements. This work demonstrates that the powerful combination of Pinch and Exergy analysis can assist designers to pinpoint inefficiencies in specific locations in a plant and to help outline strategy to improve the energy efficiency for the plant. In this work, an aromatics plant steady state model has been developed and used as a case study. The analysis shows that the potential energy savings of up to 60% for hot utility and 20% of cold utility are achievable for the aromatics plant.
机译:火用分析,也称为热力学分析,是一种广泛用于分析连续过程的能效的工具。它是基于热力学第一定律和第二定律的强大分析工具。另一方面,Pinch Technology是优化工厂热量回收的工具。但是,捏分析应用程序需要大量的过程质量和能量平衡数据。因此,它不能快速评估所选设备或过程的效率。关于夹挤分析在化学过程中的应用以及火用分析在发电厂中的应用,以提高能效,已有大量文献。迄今为止,结合捏-火用分析的研究仅限于电厂的改进。这项工作表明,Pinch和Exergy分析的强大组合可以帮助设计人员查明工厂中特定位置的效率低下,并帮助概述提高工厂能源效率的策略。在这项工作中,芳香族植物稳态模型已经开发并用作案例研究。分析表明,对于芳烃工厂而言,热设施可节省多达60%的能源,冷设施可节省20%的能源。

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