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首页> 外文期刊>Journal of Cleaner Production >In quest of environmental hotspots of sewage sludge treatment combining anaerobic digestion and mechanical dewatering: A life cycle assessment approach
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In quest of environmental hotspots of sewage sludge treatment combining anaerobic digestion and mechanical dewatering: A life cycle assessment approach

机译:寻求结合厌氧消化和机械脱水的污泥处理环境热点:生命周期评估方法

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Life cycle assessment was used to assess environmental impacts and a sensitivity analysis of 17 key technological parameters to identify the main environmental hotspots associated with the performance of a sewage sludge treatment. The scenario takes into account primary and secondary sludge and includes gravity and centrifugal thickening, anaerobic digestion with cogeneration of heat and electricity from biogas, mechanical dewatering and spreading on agricultural fields. All the relevant inputs (electricity, heat, reagents, infrastructure, fuel, transport) and outputs (emissions to air, water and soil) are accounted for in the assessment, including the sludge return liquors from thickening and dewatering processes. This study focuses on climate change, terrestrial acidification, freshwater eutrophication, human toxicity and ionizing radiation impact categories assessed using the ReCiPe E v1.08/Europe baseline method. The results showed that the most sensitive parameters are the biodegradation rate of volatile solids and the nitrogen mineralization rate during anaerobic digestion, phosphorus and nitrogen capture rates during the thickening and dewatering processes, and the consumption of FeCl3 for the treatment of sludge before dewatering. The results suggest that the environmental performances of the sewage sludge treatment line could be enhanced by increasing the production of biogas (by increasing the biodegradation rate of volatile solids), by decreasing the consumption of FeCl3 used for sludge treatment, and by finding alternative treatments for sludge return liquors. (C) 2016 Elsevier Ltd. All rights reserved.
机译:生命周期评估用于评估环境影响,并对17个关键技术参数进行敏感性分析,以识别与污水污泥处理性能相关的主要环境热点。该方案考虑了一级和二级污泥,包括重力和离心浓缩,厌氧消化,沼气热电联产,机械脱水和在农业领域的扩散。评估中考虑了所有相关的投入(电,热,试剂,基础设施,燃料,运输)和产出(向空气,水和土壤的排放),包括来自浓缩和脱水过程的污泥回流液。这项研究的重点是使用ReCiPe E v1.08 /欧洲基准方法评估的气候变化,陆地酸化,淡水富营养化,人类毒性和电离辐射影响类别。结果表明,最敏感的参数是厌氧消化过程中挥发性固体的生物降解率和氮矿化率,增稠和脱水过程中磷和氮的捕获率以及脱水前处理污泥的FeCl3消耗量。结果表明,污水处理污泥处理线的环境性能可以通过增加沼气的产生(通过增加挥发性固体的生物降解率),减少用于污泥处理的FeCl3的消耗量以及寻找替代方法来提高。污泥回流液。 (C)2016 Elsevier Ltd.保留所有权利。

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