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Environmental performance assessment for reactive distillation processes

机译:反应蒸馏过程的环境绩效评估

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Direct or indirect CO2 emission minimisation for energy intensive processes is a priority for reducing their environmental impact. For distillation this issue is observed redesigning the separation processes to improve the energy efficiency. Sustainability requests as well to enhance the usage of environmentally friendly products and to ensure good economic effectiveness. In this paper a new methodology is suggested for assessing environmental performance and economic viability of reactive distillation compared to classical schemes. Advanced process integration methodologies are used to save energy. Reactive distillation combines process integration and process intensification overcoming chemical equilibrium limitations, saving energy and ensuring economic effectiveness by reduced capital investment. Environmental performance is based on potential environmental impact (PEI), emissions, resource and energy conservation factors. PEI is obtained using waste reduction (WAR) algorithm as evaluation too]. Two examples illustrate the methodology comparing the performance of classical processes with reactive distillation synthesis processes (ethyl acetate - EtAc and t-amyl methyl ether - TAME) with the purpose to achieve a better sustainability. In both cases reactive distillation provides more sustainable schemes.
机译:减少能源密集型过程的直接或间接CO2排放量最小化是降低其对环境影响的优先事项。对于蒸馏,可以观察到该问题,重新设计了分离过程以提高能源效率。可持续性要求也要提高环保产品的使用率,并确保良好的经济效益。与传统方案相比,本文提出了一种评估反应性蒸馏的环境性能和经济可行性的新方法。先进的过程集成方法可节省能源。反应蒸馏结合了工艺整合和工艺强化,克服了化学平衡的局限性,通过减少资本投资节省了能源并确保了经济效益。环境绩效基于潜在的环境影响(PEI),排放,资源和节能因素。也使用废物减少(WAR)算法作为评估获得PEI]。两个示例说明了比较经典工艺与反应性蒸馏合成工艺(乙酸乙酯-EtAc和叔戊基甲基醚-TAME)的性能的方法,目的是实现更好的可持续性。在两种情况下,反应蒸馏都提供了更可持续的方案。

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