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Exergy analysis of construction material manufacturing processes and assessment of their improvement potentials

机译:建筑材料制造过程的火用分析并评估其改进潜力

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摘要

This study presents the application of exergy analysis in assessing how effectively resources are utilised in construction material manufacturing. The role of exergy is discussed from several key perspectives such as quality, energy conservation and process improvement potentials. Both primary and secondary processes (recycling) of nine major non-renewable construction materials (steel, aluminium, copper, cement, concrete, ceramic, glass, polypropylene and polyvinylchloride (PVC)) have been evaluated in this study. The outlined theoretical exergy efficiency approach assesses the improvement potentials of the present manufacturing processes. The large difference between theoretical and industrial exergy demand suggests that exergy resources are utilised very inefficiently in current technologies. The study reveals that more than 55% of exergy is being lost in current technologies even though a significant amount of waste heat is recovered in different segments of the case study processes. Thus, attention is required to reduce the specific exergy losses through improved process design and introduction of new technology.
机译:这项研究提出了火用分析在评估建筑材料制造中如何有效利用资源方面的应用。从诸如质量,节能和工艺改进潜力等几个关键角度讨论了火用的作用。这项研究评估了九种主要不可再生建筑材料(钢,铝,铜,水泥,混凝土,陶瓷,玻璃,聚丙烯和聚氯乙烯)的初级和次级工艺(回收)。概述的理论火用效率方法评估了当前制造工艺的改进潜力。理论和工业用能需求之间的巨大差异表明,在现有技术中,用能资源的利用效率非常低。该研究表明,即使在案例研究过程的不同部分中回收了大量废热,目前的技术也损失了超过55%的火用。因此,需要注意通过改进的工艺设计和引入新技术来减少比能值损失。

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