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Computer-Aided Exergy Sensibility Analysis of Nitrobenzene Production through Benzene Nitration Using an Acid Mixture

机译:通过酸混合物通过苯硝化硝基苯产生的计算机辅助易受敏感性分析

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摘要

Nitrobenzene is widely produced via benzene nitration to be applied in several industries such as pharmaceutical, textile, and agricultural. In this work, an exergy sensibility analysis was performed with the aim of identifying possible opportunities of process improvements. The irreversibilities, exergy of wastes, and efficiency were calculated per stage through exergy balance. The simulation software Aspen plus V10.1 provided the physical exergies of process streams while chemical exergies were found in literature. A sensibility analysis was also carried out in order to study the effect of efficiency of some stages (polyfunctional reaction and cooling 1) on global exergy efficiency. This analysis reveals that nitrobenzene production from benzene is an efficient process from an exergy viewpoint (88%). The total irreversibilities, total exergy of wastes, and exergy of utilities-inlet were calculated in 41,647,341.85 MJ/h, 5,537,487.3 MJ/h, and 18,137,363.71 MJ/h, respectively. The results obtained from sensibility analysis suggested that heat flow of heat exchangers HE-201, HE-303, and HE-301 could provide energy requirements for heating.
机译:硝基苯广泛通过苯硝化生产,适用于药品,纺织和农业等几个行业。在这项工作中,旨在识别可能的过程改进机会的令人欣赏的敏感性分析。通过暴力平衡计算每阶段的浪费和效率的不可抗拒,效率。仿真软件Aspen Plus V10.1提供了过程流的物理出现,而在文献中发现了化学出现。还进行了一种敏感性分析,以研究一些阶段(多官能反应和冷却1)效率对全球漏洞效率的影响。该分析表明,来自苯的硝基苯生产是一种从暴露的观点(88%)的有效过程。在41,647,341.85MJ / h,5,537,487.3MJ / h和18,137,363.71 mj / h,分别计算出总不缩小,废物的总漏洞和公用事业漏洞。从敏感性分析中获得的结果表明,热交换器HE-201,HE-303和HE-301的热流可以为加热提供能量要求。

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