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Environmental and technical feasibility study of upcycling wood waste into cement-bonded particleboard

机译:木材废料再生成水泥粘合刨花板的环境和技术可行性研究

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The scarceness of virgin resources and sustainable management of waste materials in high-density city arouse heightened focus on new technology development for waste recycling and local utilization. Wood waste recovery from construction activities and upcycling into secondary products allow the substitution of virgin resources and minimize the environmental burdens within the frontier of industrial ecology. This study assessed the technical viability and environmental sustainability of cement-bonded particleboards (CBPs) produced with recycled wood aggregates and alternative binder; and compared the performance of its counterpart produced with virgin wood and ordinary binder using experimental analysis and life cycle assessment (LCA). The experimental results showed acceptable mechanical performance of the developed CBPs in compliance with the required standards. Adoption of carbon dioxide curing technology further enhanced the durability of the developed CBPs. Although similar greenhouse gases (GHGs) emission was observed for imported conventional CBPs and locally produced CBPs with alternative materials, the considerations of direct carbon sequestration and landfill avoidance contributed to a 9% reduction of the total GHGs compared to conventional CBPs. The LCA results also demonstrated that substantial amount of GHGs can be potentially saved depending on the recycling rates of wood waste in Hong Kong. Hence, technological innovation can effectively address problem of wood waste disposal and enhance material utilization and sustainability of the construction industry. (C) 2018 Elsevier Ltd. All rights reserved.
机译:高密度城市的原始资源稀缺和废物的可持续管理引起了人们对新技术开发的关注,这些新技术用于废物回收和本地利用。从建筑活动中回收木材废物并升级为次级产品,可以替代原始资源,并在工业生态学前沿最大限度地减少环境负担。这项研究评估了用再生木骨料和替代粘合剂生产的水泥粘合刨花板的技术可行性和环境可持续性;并使用实验分析和生命周期评估(LCA)比较了用原木和普通粘合剂生产的同类产品的性能。实验结果表明,所开发的CBP符合要求的标准具有可接受的机械性能。采用二氧化碳固化技术进一步提高了已开发CBP的耐久性。尽管对于进口的常规CBP和使用替代材料的本地生产的CBP观察到了相似的温室气体(GHG)排放,但与常规CBP相比,直接碳封存和避免垃圾掩埋的考虑导致了总温室气体减少了9%。生命周期评估的结果还表明,根据香港木材废料的回收率,可以潜在地节省大量的温室气体。因此,技术创新可以有效解决木材废料处理问题,并提高建筑业的材料利用率和可持续性。 (C)2018 Elsevier Ltd.保留所有权利。

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