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Life cycle assessment of an intensive sewage treatment plant in Barcelona (Spain) with focus on energy aspects

机译:西班牙巴塞罗那的一个污水处理厂的生命周期评估,重点是能源方面

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Life Cycle Assessment was used to evaluate environmental impacts associated to a full-scale wastewater treatment plant (WWTP) in Barcelona Metropolitan Area, with a treatment capacity of 2 million population equivalent, focussing on energy aspects and resources consumption. The wastewater line includes conventional pre-treatment, primary settler, activated sludge with nitrogen removal, and tertiary treatment; and the sludge line consists of thickening, anaerobic digestion, cogeneration, dewatering and thermal drying. Real site data were preferably included in the inventory. Environmental impacts of the resulting impact categories were determined by the CLM 2 baseline method. According to the results, the combustion of natural gas in the cogeneration engine is responsible for the main impact on Climate Change and Depletion of Abiotic Resources, while the combustion of biogas in the cogeneration unit accounts for a minor part. The results suggest that the environmental performance of the WWTP would be enhanced by increasing biogas production through improved anaerobic digestion of sewage sludge.
机译:“生命周期评估”被用来评估与巴塞罗那大都市区的一个大型污水处理厂(WWTP)相关的环境影响,该污水处理厂的处理能力为200万人口当量,重点关注能源方面和资源消耗。废水线包括常规预处理,一级沉降器,脱氮活性污泥和第三级处理;污泥生产线包括增稠,厌氧消化,热电联产,脱水和热干燥。真实站点数据最好包含在清单中。最终影响类别的环境影响通过CLM 2基线方法确定。根据结果​​,热电联产发动机中的天然气燃烧是对气候变化和非生物资源枯竭的主要影响,而热电联产机组中的沼气燃烧只占一小部分。结果表明,通过改善污泥的厌氧消化来增加沼气产量,可以提高污水处理厂的环境性能。

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