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Effects of including nitrogen emissions from soil in environmental systems analysis of waste management strategies

机译:将土壤氮排放纳入环境系统的废物管理策略分析中的影响

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The environmental impacts of nitrogen emissions from soil resulting from the use of organic fertilizers, such as manure, are large compared with the corresponding impacts of mineral fertilizers. However, soil emissions are rarely included in systems analysis of waste management strategies. This study examines whether the inclusion of soil emissions can affect the environmental ranking of systems for managing solid biodegradable waste. Waste management scenarios based on incineration, anaerobic digestion and composting, respectively, were compared. The scenarios were analysed using the organic waste research (ORWARE) simulation model. A simplified model for calculating nitrogen availability and emissions was also constructed. Life-cycle analysis methodology was used for choosing system boundaries and evaluating the results. Global warming, acidification and eutrophication were the impact categories considered. The results indicate the vital importance of considering nitrogen emissions from soil when comparing biological waste management systems with other waste management methods, especially with regard to eutrophication effects. Soil emissions are also important when comparing the environmental impacts of anaerobic digestion and composting systems. However, the variation in nitrogen emissions from soil is large and depends on the spreading technique used, climate, drainage and soil texture.
机译:与矿物肥料的相应影响相比,使用有机肥料(如肥料)对土壤氮排放的环境影响大。但是,土壤排放很少包括在废物管理策略的系统分析中。这项研究检查了土壤排放物是否会影响固体可降解废物管理系统的环境等级。比较了分别基于焚烧,厌氧消化和堆肥的废物管理方案。使用有机废物研究(ORWARE)模拟模型对方案进行了分析。还建立了一个简化的模型,用于计算氮的有效性和排放量。生命周期分析方法用于选择系统边界并评估结果。全球变暖,酸化和富营养化是考虑的影响类别。结果表明,在将生物废物管理系统与其他废物管理方法进行比较时,特别是在富营养化影响方面,考虑土壤中的氮排放至关重要。当比较厌氧消化和堆肥系统对环境的影响时,土壤排放也很重要。但是,土壤中氮排放的变化很大,取决于所使用的传播技术,气候,排水和土壤质地。

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