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首页> 外文期刊>Forest Products Journal >Cradle-to-gate life-cycle assessment of a glued-laminated wood product from Quebec's boreal forest.
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Cradle-to-gate life-cycle assessment of a glued-laminated wood product from Quebec's boreal forest.

机译:魁北克北方森林的胶合层压木制品的从摇篮到大门的生命周期评估。

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The building sector is increasingly identified as being energy and carbon intensive. Although the majority of emissions are linked to energy usage during the operation part of a building's life cycle, choice of construction materials could play a significant role in reducing greenhouse gas emissions and other environmental end-point damages. Increasing the use of wood products in buildings may contribute to the solution, but their environmental impacts are difficult to assess and quantify because they depend on a variety of uncertain parameters. The present cradle-to-gate life-cycle analysis (LCA) focuses exclusively on a glued-laminated wood product (glulam) produced from North American boreal forests located in the province of Quebec, Canada. This study uses primary data to quantify the environmental impacts of all necessary stages of products' life cycle, from harvesting the primary resources, to manufacturing the transformed product into glulam. The functional unit is 1 m3 of glulam. This is the first study based on primary data pertaining to Quebec's boreal forest. Quebec's boreal glulam manufacturing was compared with two other LCAs on glulam in Europe and the United States. Our results show that Quebec's glulam has a significantly smaller environmental footprint than what is reported in the literature. From an LCA perspective, there is a significant advantage to producing glulam in Quebec, compared with the European and American contexts. The same holds true in regard to the four end-point damage categories.
机译:建筑行业越来越被认为是能源和碳密集型的。尽管大多数排放与建筑物生命周期的运营过程中的能源使用有关,但是建筑材料的选择在减少温室气体排放和其他环境端点损害方面可以发挥重要作用。在建筑物中增加木材产品的使用可能有助于解决方案,但由于它们取决于各种不确定参数,因此难以评估和量化其对环境的影响。当前的从摇篮到大门的生命周期分析(LCA)仅专注于由位于加拿大魁北克省的北美寒带森林生产的胶合层压木制品(胶合木)。这项研究使用主要数据量化了产品生命周期所有必要阶段的环境影响,从收获主要资源到将转化的产品生产成胶合木。功能单元是1 m 3 胶质树。这是第一项基于有关魁北克北方森林的原始数据的研究。在欧洲和美国,将魁北克的北方胶质树胶制造与其他两个关于胶质树的LCA进行了比较。我们的结果表明,魁北克的胶合层的环境足迹比文献报道的要小得多。从LCA的角度来看,与欧洲和美国的情况相比,在魁北克生产胶合层胶具有显着的优势。对于四个端点损坏类别也是如此。

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