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Evaluation of VOC recovery strategies: Multi Objective Pinch Analysis (MOPA) for the evaluation of VOC recovery strategies

机译:挥发性有机化合物回收策略的评估:用于评估挥发性有机化合物回收策略的多目标夹点分析(MOPA)

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摘要

Many manufactured items receive surface coatings for decoration and/or protection against damage. In a number of places along the production line emissions of Volatile Organic Compounds (VOC) can occur. Because VOC are a major contributor to photochemical smog, control of VOC emissions is a major concern for the industries' commitment to the environment. Approaches for process optimisation have a long tradition within chemical and process engineering for the systematic identification of cost- and resource-efficient production options. The challenge in the context of supply chain management is the optimal recovery and reuse of materials not only for single substances or energy flows in large chemical installations, but also for smaller production processes and various mass and energy flows within and between enterprises. Based on a case study from the industrial coating of bicycle frames, an approach for Multi Objective Pinch Analysis (MOPA) for the evaluation of overall recovery potentials for energy, water and VOC is presented. Moreover, a metric for resource efficiency is introduced as a measure for the possible savings potential and for the savings ultimately realised. This integrated approach requires a tight coupling of mass, energy, economic and environmental assessment methods and demands a highly interdisciplinary approach.
机译:许多制成品接受表面涂层装饰和/或保护免受损坏。在生产线上的许多地方,都会发生挥发性有机化合物(VOC)的排放。由于挥发性有机化合物是造成光化学烟雾的主要因素,因此控制挥发性有机化合物的排放是各行业对环境的承诺的主要关注点。在化学和过程工程中,过程优化的方法由来已久,可以系统地确定成本和资源效率高的生产方案。供应链管理中的挑战是,不仅对于大型化学装置中的单一物质或能量流,而且对于较小的生产过程以及企业内部和企业之间的各种质量和能量流,材料的最佳回收和再利用也是如此。基于自行车车架工业涂层的案例研究,提出了一种多目标夹点分析(MOPA)方法,用于评估能量,水和VOC的总体回收潜力。此外,引入了一种资源效率的度量标准,作为对潜在节省潜力和最终实现的节省的度量。这种综合方法要求将质量,能源,经济和环境评估方法紧密结合起来,并且需要高度跨学科的方法。

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