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Quantification of the impact of the end-of-life scenario on the overall resource consumption for a dwelling house

机译:量化报废方案对住宅整体资源消耗的影响

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In this work. fractions that at e the result of the dennolition phase of a dwelling house have been investigated with respect to their recovery potential: stony material, wood, metals, glass. synthetic materials and a rest fraction. Depending on their nature, different alternative end-of-life scenarios have been investigated to replace disposal, Such as re-use, recycling or incineration with heat and electricity production. All resources necessary for these scenarios have been inventoried. At the same time, those that are not longer necessary for the disposal and those that would have been necessary to make the obtained products from virgin resources are quantified. Based on these three items, the overall balance results into the calculation of net virgin resource savings for different end-of-life scenarios, quantified in cumulative Exergy Consumption (MJ of exergy). For this specific case, the best end-of-life scenario can save virgin natural resources with a content of 258 GJ of exergy. Looking at the entire life cycle of the house i.e. construction phase, use phase and end-of-life phase, the quantitative analysis shows a saving of virgin natural resources of 15% with the implementation of the best end-of-life scenario instead of disposal as end-or-life.
机译:在这项工作中。已针对住宅恢复阶段的结果对碎石的回收潜力进行了研究:石质材料,木材,金属,玻璃。合成材料和其余部分。根据其性质,已研究了不同的替代寿命终止方案来替代处置,例如以热和电生产方式进行重复利用,回收或焚烧。这些情况所需的所有资源都已清点。同时,对那些不再需要进行处置的物质以及从原始资源生产所获得的产品所必需的物质进行了量化。基于这三个项目,总余额将用于计算不同报废方案的净原始资源节省量,并以累积能量消耗(MJ of exergy)进行量化。对于这种特定情况,最佳的报废方案可以节省原始自然资源,其可用热量为258 GJ。观察房屋的整个生命周期,即建设阶段,使用阶段和报废阶段,定量分析显示,采用最佳报废方案代替了原始的自然资源节省了15%作为报废处理。

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