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Novel visualization and algebraic techniques for sustainable development through property integration.

机译:通过财产整合实现可持续发展的新型可视化和代数技术。

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The process industries are characterized by the significant consumption of fresh resources. This is a critical issue, which calls for an effective strategy towards more sustainable operations. One approach that favors sustainability and resource conservation is material recycle and/or reuse. In this regard, an integrated framework is an essential element in sustainable development. An effective reuse strategy must consider the process as a whole and develop plant-wide strategies. While the role of mass and energy integration has been acknowledged as a holistic basis for sustainable design, it is worth noting that there are many design problems that are driven by properties or functionalities of the streams and not by their chemical constituency. In this dissertation, the notion of componentless design, which was introduced by Shelley and El-Halwagi in 2000, was employed to identify optimal strategies for resource conservation, material substitution, and overall process integration.; First, the focus was given on the problem of identifying rigorous targets for material reuse in property-based applications by introducing a new property-based pinch analysis and visualization technique. Next, a non-iterative, property-based algebraic technique, which aims at determining rigorous targets of the process performance in material-recycle networks, was developed. Further, a new property-based procedure for determining optimal process modifications on a property cluster diagram to optimize the allocation of process resources and minimize waste discharge was also discussed. In addition, material substitution strategies were considered for optimizing both the process and the fresh properties. In this direction, a new process design and molecular synthesis methodology was evolved by using the componentless property-cluster domain and Group Contribution Methods (GCM) as key tools in developing a generic framework and systematic approach to the problem of simultaneous process and molecular design.
机译:加工工业的特点是大量消耗新鲜资源。这是一个关键问题,需要采取有效战略以实现更可持续的运营。有利于可持续性和资源节约的一种方法是材料回收和/或再利用。在这方面,综合框架是可持续发展的基本要素。有效的重用策略必须考虑整个流程,并制定全厂策略。尽管质量和能量集成的作用已被公认是可持续设计的整体基础,但值得注意的是,许多设计问题是由物流的特性或功能而不是由其化学组成驱动的。本文由Shelley和El-Halwagi于2000年提出的无组件设计概念被用来确定资源节约,材料替代和整个过程集成的最佳策略。首先,通过引入一种新的基于属性的夹点分析和可视化技术,重点关注为在基于属性的应用程序中确定用于材料重用的严格目标的问题。接下来,开发了一种基于属性的非迭代代数技术,旨在确定材料循环网络中过程性能的严格目标。此外,还讨论了一种新的基于属性的过程,该过程用于确定属性簇图上的最佳过程修改,以优化过程资源的分配并最大程度地减少浪费。另外,考虑了材料替代策略以优化工艺和新鲜性能。在这个方向上,通过使用无组分性质簇域和基团贡献方法(GCM)作为开发通用框架和系统方法同时解决过程和分子设计问题的关键工具,开发了一种新的过程设计和分子合成方法。

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