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Life cycle assessment on polylactide-based wood plastic composites toughened with polyhydroxyalkanoates

机译:聚羟基链烷酸酯增韧的聚乳酸基木塑复合材料的生命周期评估

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摘要

Wood plastic composites (WPC) have become the state-of-the-art commercial products with a growing market potential in the area of building, construction, and automotives in the past ten years. Increasing attention has been given to polylactide (PLA)-based WPC in recent years, due to the renewable raw materials, good mechanical and processing properties. However, the environmental impacts of the wood flour (WF) reinforced PLA-based WPC need be evaluated before they are produced and installed commercially. Life cycle assessment (LCA) based on the input-output model was carried out to evaluate the energy demand and environmental impacts, as well as the water requirement of the PLA-based WPC during the cradle-to-gate stages. An attribute hierarchy model (AHM) was used to determine the weighting factors of the different environmental impact categories to the environmental impact load (EIL). The results showed that the energy demand for 1000 kg of the unmodified PLA-based WPC (Sample A, 20 wt% WF+80 wt% PLA) and their polyhydroxyalkanoates (PHAs) toughened counterpart (Sample B, 20 wt% WF+55 wt% PLA+25 wt% PHAs) was 3.08 × 10~8 kJ and 3.05 × 10~8 kJ, respectively. Water requirement for Sample A was more than that of Sample B. The non-dimensional indicator EIL was 1.9 and 1.6 for Sample A and Sample B, respectively. Photochemical oxidation potential made up the largest part among the six environmental impact categories (global warming potential, acidification potential, photochemical oxidation potential, eutrophication potential, smog potential and eco-toxicity potential), while eutrophication potential was the least for both Sample A and Sample B. This cradle-to-gate LCA will contribute to optimizing the eco-design, reducing the energy consumption and pollutant emissions during the eco-profiles of the PLA-based WPC.
机译:在过去的十年中,木塑复合材料(WPC)已成为最先进的商业产品,在建筑,建筑和汽车领域具有不断增长的市场潜力。由于可再生原料,良好的机械和加工性能,近年来对基于聚丙交酯(PLA)的WPC给予了越来越多的关注。但是,必须先对木粉(WF)增强的PLA基WPC的环境影响进行评估,然后才能对其进行商业生产和安装。进行了基于投入产出模型的生命周期评估(LCA),以评估从摇篮到大门阶段的能源需求和环境影响以及以PLA为基础的WPC的需水量。属性层次模型(AHM)用于确定不同环境影响类别对环境影响负荷(EIL)的加权因子。结果表明,对1000千克未改性PLA基WPC(样品A,20 wt%WF + 80 wt%PLA)及其聚羟基链烷酸酯(PHA)的能量需求增韧了对等物(样品B,20 wt%WF + 55 wt%) %的PLA + 25wt%的PHA)分别为3.08×10〜8kJ和3.05×10〜8kJ。样品A的需水量高于样品B。样品A和样品B的无量纲指标EIL分别为1.9和1.6。在六种环境影响类别中(全球变暖潜能,酸化潜能,光化学氧化潜能,富营养化潜能,烟雾潜能和生态毒性潜能),光化学氧化潜能占最大比例,而样品A和样品的富营养化潜能最低B.从摇篮到大门的LCA将有助于优化生态设计,在基于PLA的WPC的生态环境中减少能耗和污染物排放。

著录项

  • 来源
    《Journal of Cleaner Production》 |2014年第1期|139-145|共7页
  • 作者单位

    Shaanxi Key Laboratory for Photoelectric Functional Materials and Devices, School of Materials Science and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China,School of Science, Xi'an Jiaotong University, Xi'an 710049, China,No. 2, Middle Xuefu Road, Weiyang College Park, School of Materials and Chemical Engineering, Xi'an Technological University, Xi'an 710021, PR China;

    School of Science, Xi'an Jiaotong University, Xi'an 710049, China;

    Polymers and Composites Division, Ningbo Institute of Material Technology & Engineering, Chinese Academy of Sciences, Ningbo 315201, China;

    School of Mechatronic Engineering, Xi'an Technological University, Xi'an 710021, China;

    Shaanxi Key Laboratory for Photoelectric Functional Materials and Devices, School of Materials Science and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China;

    Shaanxi Key Laboratory for Photoelectric Functional Materials and Devices, School of Materials Science and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China;

    Shaanxi Key Laboratory for Photoelectric Functional Materials and Devices, School of Materials Science and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China;

    Polymers and Composites Division, Ningbo Institute of Material Technology & Engineering, Chinese Academy of Sciences, Ningbo 315201, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wood plastic composites; Polylactide; Polyhydroxyalkanoate; Life cycle assessment; Energy consumption; Environmental impact potential;

    机译:木塑复合材料;聚丙交酯;聚羟基链烷酸酯;生命周期评估;能源消耗;潜在的环境影响;

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