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Cradle-to-Gate Life-Cycle Impact Analysis of Glued-Laminated (Glulam) Timber: Environmental Impacts from Glulam Produced in the US Pacific Northwest and Southeast

机译:胶合层压(Glulam)木材的摇篮到浇口寿命造成循环分析:美国太平洋西北和东南部生产的Glulam的环境影响

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摘要

This study was an update on the 2000 life-cycle inventory data on material and energy inputs associated with the production of 1 m(3) of glued-laminated (glulam) timbers produced in the Pacific Northwest (PNW) and the Southeast (SE) regions of the United States. This article looks at the cradle to gate for the entire glulam production processes, which include forest harvest, lamstock production, and glulam beam production. Data collected from glulam beam manufacturers in 2013 allowed for the development of a life-cycle assessment utilizing the product category rules for North American Structural and Architectural Wood Products so that the results from these analyses can be used for the development of environmental product declarations of glulam beams produced in the United States. Comparing the results of this study with the life-cycle assessment based on the 2000 survey data shows 30 percent reductions in global warming potential of glulam beams produced in both the PNW and the SE and reductions in the use of energy derived from fossil fuels by 40 percent in the PNW and SE. The overall net carbon sequestered in 1 m(3) of PNW glulam is equivalent to 938 kg of CO2 and 1,038 kg of CO2 in the SE. Utilizing techniques that reduced the use of electricity and minimizing the transportation distances of the raw materials and resins to the mill could help to further reduce the carbon footprint of the glulam beam manufacturing process.
机译:本研究是关于2000年生命周期库存数据的更新,与在太平洋西北(PNW)和东南部(PNW)和东南部生产的胶合层压(Glulam)木材生产相关的材料和能量投入有关的材料和能量输入。美国地区。本文介绍整个Glulam生产过程的摇篮,包括森林收获,Lamstock生产和胶石束生产。 2013年从Glulam Beam制造商收集的数据允许利用北美结构和建筑木制品的产品类别规则开发生命周期评估,以便这些分析的结果可用于开发Glulam的环境产品声明在美国生产的梁。将本研究结果与基于2000年调查数据的生命周期评估进行比较显示,在PNW和SE中产生的胶石束的全球变暖潜力的减少30%,并减少了40的化石燃料的能量的使用PNW和SE的百分比。在1M(3)个PNW Glulam中螯合的总净碳相当于SE中的938kg CO 2和1,038kg CO 2。利用减少电力使用和最小化原料的运输距离和磨机的距离的技术可以有助于进一步降低胶石束制造过程的碳足迹。

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  • 来源
    《Forest Products Journal》 |2017年第6期|共13页
  • 作者单位

    Univ Washington Sch Environm &

    Forest Sci CINTRAFOR Seattle WA 98195 USA;

    WoodLife Environm Consultants LLC Corvallis OR USA;

    Univ Washington Sch Environm &

    Forest Sci CINTRAFOR Seattle WA 98195 USA;

    Univ Washington Sch Environm &

    Forest Sci CINTRAFOR Seattle WA 98195 USA;

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

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