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Advanced process systems design technology for pollution prevention and waste treatment

机译:先进的过程系统设计技术,可防止污染和废物处理

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The paper presents a generic process synthesis and optimisation tool suitable to take up applications in the design of waste treatment systems and in pollution prevention. The main component of the technology is a generalized process synthesis representation for simultaneous consideration of reaction and separation in multiphase systems that is amenable for stochastic optimisation. The flexibility of the representation allows applications to overall process synthesis problems as well as to decomposed reactor, reactive separation and mass exchange network design problems. Applications of the synthesis framework to waste water treatments processes using activated sludge and to natural gas sweetening in hybrid membrane-adsorption processes are presented. The paper highlights the use of the systematic technology in environmental systems design and shows how novel designs of improved performance as well as optimal design knowledge can be revealed using the systematic design framework. Context abstract: Environmental process systems for waste treatment and pollution prevention become increasingly complicated to design. There is a strong need for technology that provides systematic decision support to the process synthesis team in order to enable the timely selection of processes that operate close to the performance limits of the system under consideration. Conventional, optimisation-based process design technology is severely limited by the number of design decisions they can support simultaneously as well as by the increasingly complex process models required for the meaningful mathematical representation of environmental process systems. We have devised an optimisation-based process design methodology for integrated reaction and separation systems that overcomes major limitations of existing tools. This paper illustrates the use of this technology to provide systematic decision-support to the environmental process systems designer.
机译:本文提出了一种通用的过程综合和优化工具,适用于废物处理系统设计和污染预防方面的应用。该技术的主要组成部分是通用过程综合表示,用于同时考虑多相系统中的反应和分离,适合随机优化。该表示法的灵活性允许将其应用于整体过程合成问题以及分解的反应器,反应分离和质量交换网络设计问题。介绍了合成框架在使用活性污泥的废水处理过程以及混合膜吸附过程中天然气脱硫中的应用。本文重点介绍了系统技术在环境系统设计中的使用,并展示了如何使用系统设计框架来揭示性能提高的新设计以及最佳设计知识。背景摘要:用于废物处理和污染预防的环境过程系统的设计变得越来越复杂。迫切需要能够为流程综合小组提供系统决策支持的技术,以便能够及时选择在考虑中的系统性能极限附近运行的流程。传统的基于优化的过程设计技术受到它们可以同时支持的设计决策数量以及环境过程系统的有意义的数学表示所需的日益复杂的过程模型的严重限制。我们为集成反应和分离系统设计了一种基于优化的过程设计方法,该方法克服了现有工具的主要局限性。本文说明了该技术如何为环境过程系统设计者提供系统的决策支持。

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