利用森林清查数据预测瑞典森林生物量的未来采购潜力

IF 2.7 2区 农林科学 Q1 FORESTRY
K. Kons, D. Athanassiadis, D. Agar
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引用次数: 0

摘要

在过去的20年里,瑞典利用森林生物质进行能源生产、锯木和纸浆生产的比例分别增长了68%、11%和31%。由于瑞典正努力在2045年之前实现温室气体净零排放,未来对生物质的高需求也是可以预期的。因此,开发了一种预测工业空间可用生物量分类数量的方法。利用森林清查数据和2035-2039年全国可用生物量预测分析,在一个基于网络的工具中对不同森林种类的可用数量进行了估计和可视化。在这段时间内,可利用的生物量和圆木的最大数量将在瑞典北部。结果还表明,与未来可利用生物量相比,现有的收获强度非常高。该行业可以预期,在未来100年期间,可利用的生物质将显著增加。随着大型纸浆厂和生物炼制厂之间的竞争加剧,供应区域可以超过200公里,以满足原料需求。长距离和大批量的供应链需求将要求进一步改善波罗的海地区的国内和跨境运输解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Forecasting Future Procurement Potential of Swedish Forest Biomass Using Forest Inventory Data
In the last 20 years the use of forest biomass for energy production and sawlog and pulpwood production has increased by 68%, 11% and 31% in Sweden. As Sweden is trying to achieve net zero greenhouse gas emissions by 2045, the high demand for biomass can also be expected in future. Therefore, a method to project the amount of spatially available biomass assortments for industries was developed. Available amounts of different forest assortments were estimated and visualised in a web-based tool using forest inventory data and nationwide projection analyses of available biomass for 2035–2039. In this interval, the greatest amount of available biomass and roundwood will be in Northern Sweden. Results also indicate that already existing harvesting intensity is very high compared to the available biomass in the future. The industry can expect noticeably more available biomass in the coming 100 year period. With increased competition between large pulp mills and biorefineries, the supply areas can exceed 200 km to satisfy raw material demand. The long distance and high volume supply chain requirements will demand further improvement in transportation solution nationally and cross-border in the Baltic Sea Region.
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来源期刊
CiteScore
5.20
自引率
12.50%
发文量
23
审稿时长
>12 weeks
期刊介绍: Croatian Journal of Forest Engineering (CROJFE) is a refereed journal distributed internationally, publishing original research articles concerning forest engineering, both theoretical and empirical. The journal covers all aspects of forest engineering research, ranging from basic to applied subjects. In addition to research articles, preliminary research notes and subject reviews are published. Journal Subjects and Fields: -Harvesting systems and technologies- Forest biomass and carbon sequestration- Forest road network planning, management and construction- System organization and forest operations- IT technologies and remote sensing- Engineering in urban forestry- Vehicle/machine design and evaluation- Modelling and sustainable management- Eco-efficient technologies in forestry- Ergonomics and work safety
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