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Intelligent Resource Use to Deliver Waste Valorisation and Process Resilience in Manufacturing Environments : Moving towards sustainable process manufacturing

机译:智能资源用来提供制造环境中的废物储存和过程弹性:走向可持续的过程制造

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Circular economy (CE) thinking has emerged as a route to sustainable manufacture, with related cradle-to-cradle implications requiring implementation from the design stage. The challenge lies in moving manufacturing environments away from the traditional linear economy paradigm, where materials, energy and water have often been designed to move out of the system and into receivership of waste management bodies after use. Recent applications of industrial digital technologies (IDTs: for example internet of things, data-driven modelling, cyber-physical systems, cloud manufacturing, cognitive computing) to manufacturing may be instrumental in transforming manufacturing from linear to circular. However, although IDTs and CE have been the focus of intensive research, there is currently limited research exploring the relationship between IDTs and the CE and how the former may drive the implementation of CE. This article aims to close the knowledge gap by exploring how an IDT (data-driven modelling) may facilitate and advance CE principles within process manufacturing systems, specifically waste valorisation and process resilience. These applications are then demonstrated through two real-world manufacturing case studies: (a) minimising resource consumption of industrial cleaning processes and (b) transforming wastewater treatment plants (WWTPs) into manufacturing centres.
机译:循环经济(CE)思维被出现为可持续制造的途径,相关的摇篮到摇篮对设计阶段实施的影响。该挑战在于将制造环境脱离传统的线性经济范式,其中材料,能量和水经常被设计为在使用后离开系统并进入废物管理机构的入门。最近的工业数字技术应用(IDTS:例如:物质,数据驱动的建模,网络物理系统,云制造,认知计算)可能是仪器在从线性到圆形的情况下转换制造。然而,虽然IDTS和CE一直是密集研究的重点,但目前有有限的研究探索了IDTS与CE之间的关系以及前者可以如何推动CE的实施。本文旨在通过探索IDT(数据驱动的建模)如何促进和推进过程制造系统内的CE原则,特别是废旧储存和过程弹性来缩短知识差距。然后通过两个现实世界制造案例研究证明了这些应用:(a)将工业清洁工艺的资源消耗最小化,(b)将废水处理厂(WWTPS)转化为制造中心。

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