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Recycled-PET fibre based panels for building thermal insulation: Environmental impact and improvement potential assessment for a greener production

机译:用于建筑隔热的再生PET纤维基板材:环境影响和改善潜力的评估,以实现绿色生产

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摘要

A screening of Life Cycle Assessment for the evaluation of the damage arising from the production of 1 kg of recycled Polyethylene Terephthalate (RPET) fibre-based panel for building heat insulation was carried out according to the ISO 14040:2006 and 14044:2006. All data used were collected on site based on observations during site visits, review of documents and interviews with technical personnel and management These data were processed by using SimaPro 7.3.3, accessing the Ecoinvent v.2.2 database and using the Impact 2002 + method. The study showed damage to be equal to 0.000299 points mostly due to the: 1) PET thermo-bonding fibre supply from China by means of a freight-equipped intercontinental aircraft; 2) production of bottle-grade granulate PET; 3) medium voltage electricity consumption during the manufacturing of RPET fibre panel. It was also highlighted that there were environmental benefits due to recycling through mainly avoiding significant emissions and reduced resource consumption. An improvement assessment was carried out to find solutions aimed at reducing the damage coming from the most impacting phases. Furthermore, the environmental impacts due to the production of the analysed RPET fibre-based panel were compared to other materials with the same insulating function, such as polystyrene foam, rock wool and cork slab. Finally, the environmental benefits of the recycling of PET bottles for flake production were highlighted compared to other treatment scenarios such as landfill and municipal incineration.
机译:根据ISO 14040:2006和14044:2006,对生命周期评估进行了筛选,以评估生产1千克的建筑隔热用再生对苯二甲酸乙二酯(RPET)纤维基板材所造成的损害。所有使用的数据都是根据现场访问,文档审查以及与技术人员和管理人员的访谈现场观察而收集的。这些数据是通过使用SimaPro 7.3.3,访问Ecoinvent v.2.2数据库以及使用Impact 2002 +方法处理的。研究表明,损失等于0.000299点,主要是由于:1)中国通过配备货运的洲际飞机从中国供应PET热粘合纤维; 2)生产瓶级粒状PET; 3)RPET纤维板制造过程中的中压电力消耗。还强调指出,回收利用主要通过避免大量排放和减少资源消耗而带来环境效益。进行了一项改进评估,以找到旨在减少来自影响最大的阶段的损害的解决方案。此外,将由于分析RPET纤维基板材的生产而产生的环境影响与具有相同绝缘功能的其他材料(如聚苯乙烯泡沫,岩棉和软木板材)进行了比较。最后,与其他处理方案(如垃圾填埋场和市政焚烧)相比,强调了将PET瓶用于薄片生产的回收所带来的环境效益。

著录项

  • 来源
    《Science of the total environment》 |2014年第15期|914-929|共16页
  • 作者单位

    C/o Valentina Siracusa, Department of Industrial Engineering, University of Catania, Viale Andrea Doria, 6 (Edificio n. 10) - 95125 Catania, Italy;

    Department of Quality and Operations Management, Faculty of Engineering and the Built Environment, University of Johannesburg, APB Campus, P. O. Box 524, Auckland Park 2006, Johannesburg, South Africa;

    Department of Economics, University of Foggia, Via Romolo Caggese 1, 71121 Foggia, Italy;

    Department of Economics, University of Foggia, Via Romolo Caggese 1, 71121 Foggia, Italy;

    Department of Quality and Operations Management, Faculty of Engineering and the Built Environment, University of Johannesburg, APB Campus, P. O. Box 524, Auckland Park 2006, Johannesburg, South Africa;

    Department of Industrial Engineering, University of Catania, Viale A. Doria 6, 95125 Catania, Italy;

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

    Life Cycle Assessment; RPET-fibre; Thermal insulation; Buildings; Environmental sustainability; Transportation;

    机译:生命周期评估;RPET纤维;保温;建筑物;环境的可持续性;运输;
  • 入库时间 2022-08-17 13:52:57

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