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Life cycle assessment of biosolids land application and evaluation of the factors impacting human toxicity through plants uptake

机译:生物固体土地应用的生命周期评估以及通过植物吸收影响人类毒性的因素的评估

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摘要

Due to the increasing environmental concerns in the wastewater treatment sector, the environmental impacts of organic waste disposal procedures require careful evaluation. However, the impacts related to the return of organic matter to agricultural soils are difficult to assess. The aim of this study is to assess the environmental impacts of land application of two types of biosolids (dried and composted, respectively) from the same wastewater treatment plant in France, and to improve the quantification of human toxicity.udA Life Cycle Assessment (LCA) was carried out on a case study based on validated data from an actual wastewater treatment plant. Numerous impacts were included in this analysis, but a particular emphasis was laid on human toxicity via plant ingestion. For six out of the height impact categories included in the analysis, the dried biosolids system was more harmful to the environment than the composting route, especially regarding the consumption of primary energy. Only human toxicity via water, soil and air compartments and ozone depletion impacts were higher with the composted biosolids.ud
机译:由于废水处理部门对环境的关注日益增加,有机废物处理程序对环境的影响需要仔细评估。但是,与有机物返回农业土壤有关的影响很难评估。这项研究的目的是评估来自法国同一污水处理厂的两种类型的生物固体(分别干燥和堆肥)土地应用对环境的影响,并改善人类毒性的量化。 udA生命周期评估( LCA)是根据来自实际废水处理厂的经过验证的数据进行的案例研究。该分析包括许多影响,但特别强调通过植物摄入对人体的毒性。对于分析中涉及的高度影响类别中的六种,干燥的生物固体系统比堆肥路线对环境的危害更大,尤其是在消耗一次能源方面。使用堆肥生物固体时,只有通过水,土壤和空气隔室的人类毒性以及臭氧消耗的影响更高。 ud

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