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Climate change mitigation effect of harvested wood products in regions of Japan

机译:日本地区伐木产品对气候变化的缓解作用

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Background Harvested wood products (HWPs) mitigate climate change through carbon storage, material substitution, and energy substitution. We construct a model to assess the overall climate change mitigation effect (comprising the carbon storage, material substitution, and energy substitution effects) resulting from HWPs in regions of Japan. The model allows for projections to 2050 based on future scenarios relating to the domestic forestry industry, HWP use, and energy use. Results Using the production approach, a nationwide maximum figure of 2.9 MtC year ?1 for the HWP carbon storage effect is determined for 2030. The maximum nationwide material substitution effect is 2.9 MtC year ?1 in 2050. For the energy substitution effect, a nationwide maximum projection of 4.3 MtC year ?1 in 2050 is established, with at least 50 % of this figure derived from east and west Japan, where a large volume of logging residue is generated. For the overall climate change mitigation effect, a nationwide maximum projection of 8.4 MtC year ?1 in 2050 is established, equivalent to 2.4 % of Japan’s current carbon dioxide emissions. Conclusions When domestic roundwood production and HWP usage is promoted, an overall climate change mitigation effect is consistently expected to be attributable to HWPs until 2050. A significant factor in obtaining the material substitution effect will be substituting non-wooden buildings with wooden ones. The policy of promoting the use of logging residue will have a significant impact on the energy substitution effect. An important future study is an integrated investigation of the climate change mitigation effect for both HWPs and forests.
机译:背景技术伐木产品(HWP)通过碳储存,材料替代和能源替代来缓解气候变化。我们构建了一个模型来评估日本地区HWP产生的总体气候变化缓解效应(包括碳存储,材料替代和能量替代效应)。该模型允许根据与国内林业,HWP使用和能源使用相关的未来情景预测到2050年。结果使用生产方法,确定了2030年HWP碳储存效应的全国最高数值2.9 MtC year?1。2050年全国最大材料替代效应是2.9 MtC year?1。确定了2050年第1年4.3 MtC年的最大预测值,其中至少50%来自日本东部和西部,在日本东部和西部会产生大量的伐木残渣。为了整体缓解气候变化的影响,到2050年,全国范围内的最高预测值为8.4 MtC 1年,相当于日本目前二氧化碳排放量的2.4%。结论当促进国内圆木生产和HWP的使用得到推广时,一直希望到2050年HWP能够总体上减轻气候变化的影响。获得材料替代效果的一个重要因素是用木结构代替非木结构建筑。促进采伐残余物使用的政策将对能源替代效应产生重大影响。一项重要的未来研究是对HWP和森林的减缓气候变化影响的综合研究。

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