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Optimization and Economic Performance Improvement of Processes Using Aspen HYSYS and Streamlined Life Cycle Assessment

机译:使用Aspen Hysys和简化生命周期评估的过程优化和经济性能改进

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Due to the increase in population and demand for consumer products, chemical industries responsible for their production have grown rapidly year by year. Even if the positive effects are evident, they still threaten the environment due to their high energy consumption and harmful emissions. There is an urgent need to reduce the harmful environmental emissions and increase profitability at the same time. To address this problem, this study provided a method of process optimization wherein modifications may be quantified and compared in terms of economic and environmental performance. Life cycle assessment (LCA) of the process aids in the determination of the processes within the system with the most contribution to the environmental impact (EI). Characterization factors from ReCiPe2016 were used. Weighting of EI was applied with the use of the average weighting factors from EPA, BEES, and NOGEPA. Economic and environmental performance of the system was treated with equal weight with respect to the determination of the optimized process. Aspen HYSYS v8.8 was utilized in order to efficiently simulate the different modifications of the processes. This method of optimization was integrated in a program named ALCAPRO: Aspen HYSYS coupled with streamlined Life Cycle Assessment in Process Optimization. Three processes were studied: methylamine production from ammonia and methanol, methanol to olefins (MTO) process, and shell process. The study revealed that modifications of the processes and the process parameters within the system yielded optimized processes in terms of economic viability and environmental performance.
机译:由于人口的增加和消费品需求,负责其生产的化学工业逐年发展迅速。即使积极效应明显,它们仍然由于其高能耗和有害排放而威胁着环境。迫切需要减少有害的环境排放,同时增加盈利能力。为了解决这个问题,本研究提供了一种过程优化方法,其中可以在经济和环境性能方面进行调度和比较修改。过程中的生命周期评估(LCA)辅助对环境影响(EI)的最大贡献,确定系统内的过程。使用了来自Refipe2016的特征因子。 EI的加权用于使用EPA,BEES和NOGEPA的平均加权因子。对系统的经济和环境性能得到了相同的重量对确定优化过程的影响。利用Aspen Hysys V8.8以有效地模拟过程的不同修改。这种优化方法集成在名为Alcapro的程序中:Aspen Hysys耦合的过程优化中的流线型生命周期评估。研究了三种方法:从氨和甲醇,甲醇加入烯烃(MTO)加工,以及壳种方法。该研究表明,系统内的过程和过程参数的修改在经济存活率和环境性能方面产生了优化的过程。

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