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Effective utilization and recycling of mixed recycled aggregates for a greener environment

机译:有效利用和回收混合再生骨料,实现绿色环保

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Both global warming issue and ozone layer depletion have triggered the awareness of the utilization of recycled materials in construction industry for a greener environment. The utilization and recycling of mixed recycled aggregates (MRA) comprising recycled fine aggregates (RFA) and recycled coarse aggregates (RCA) were explored for construction applications using the coupled Taguchi-RSM optimization approach. Under stringent durability requirements, 35% RCA combined with 6% RFA can be utilized while 70% RCA combined with 30% RFA under non-stringent conditions for non-structural applications. Our study also revealed large potential applications of pretreated mixed recycled aggregates in above-ground structural construction applications. Furthermore, review of literatures revealed presence of behavioral, technical, legal and market barriers which can be overcome through proposed measures. Our study also revealed a payback period of 3 years for recycling investments and revenue generation of HK$ 12 billion within the first ten years of operation and prevention of 20.9-50.1 x 10(6) KgCO(2) equivalent emission annually. In order to achieve these benefits, a pragmatic, recycling-based closed-loop construction and demolition management approach is recommended to achieve a greener environment. Government should take active leading role towards CDW recycling through high-impact policy making and implementation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:全球变暖问题和臭氧层消耗都引发了人们对建筑业利用回收材料以实现绿色环境的意识。使用Taguchi-RSM优化方法,探索了包括再生细骨料(RFA)和再生粗骨料(RCA)在内的混合再生骨料(MRA)的利用和回收利用。在严格的耐久性要求下,对于非结构性应用,可以在非严格条件下使用35%的RCA和6%的RFA,而70%的RCA和30%的RFA。我们的研究还揭示了预处理的混合再生骨料在地上结构建筑应用中的巨大潜在应用。此外,对文献的回顾表明存在行为,技术,法律和市场障碍,可以通过提出的措施来克服这些障碍。我们的研究还表明,投资回收期为3年,在运营的头十年内可回收投资并创造120亿港元的收入,并防止每年产生20.9-50.1 x 10(6)KgCO(2)当量排放。为了获得这些好处,建议采用务实的,基于回收利用的闭环施工和拆除管理方法来实现绿色环境。政府应通过高影响力的政策制定和实施,在CDW回收方面发挥积极的领导作用。 (C)2019 Elsevier Ltd.保留所有权利。

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