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Intensive,Integrated,Biomass-based Material and Energy Systems: Swedish Experience

机译:基于密集的,集成,生物量的材料和能源系统:瑞典经验

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Sustainable development of the built environment requires the production of increased quantities of construction materials and energy services,produced within the constraints of natural systems.This paper presents recent findings from Sweden on the intensive use of renewable forest resources within integrated material and energy systems.Production of materials for wood-framed construction uses less primary energy than for comparable reinforced concrete construction.Multiple wood-based products can be coproduced from the forest biomass,increasing the efficiency of raw material use.Biomass byproducts from the entire wood product chain,including forestry,wood processing,construction and demolition,can be recovered for use as biofuel.The biofuel energy available over the life cycle of a wood-framed building is greater than the primary energy used to produce the materials.Increasing forest management intensity gives greater energy returns on management energy inputs.Intensive production of forest biomass is maintained by closing nutrient cycles through application of wood ash and nitrogen fertiliser.
机译:建筑环境的可持续发展需要在自然系统的限制内生产的建筑材料和能源服务增加。本文提出了瑞典的最近调查结果,在集成材料和能源系统内的可再生森林资源集约使用。生产木材框架建筑的材料使用的主要能量不如可比的钢筋混凝土施工。方法可以从森林生物量泛滥,增加原料使用的效率。来自整个木材产品链的副产品,包括林业的副产品。 ,木材加工,施工和拆迁,可以恢复用作生物燃料。木制框架建筑的生命周期中可用的生物燃料能量大于用于生产材料的主要能量。森林管理强度提供更大的能量回报关于管理能源投入。耐用通过在灰烬和氮肥中施加营养循环来维持森林生物量。

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