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Emergy evaluation of an integrated livestock wastewater treatment system

机译:综合畜牧废水处理系统的能值评估

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Wastewater treatment practices should pay more attention to their environmental performances due to their resources consumption and emissions' impact. While reclaimed water reuse seems to have become a promising practice, is it always feasible in any condition? To address this issue, this study carried out an extended emergy evaluation of a holistic wastewater treatment system. On one hand, this method was extended to include the emissions' impact. On the other hand, this study integrated a wastewater treatment plant, its excess sludge disposal system and treated water disposal system into an integrated wastewater treatment system (IWTS), so as to evaluate its performances more completely. And then several indicators, including cost per unit pollutant eliminated (CUPE), ratio of positive output (RPO), environmental load ratio (ELR), and sustainability index (SI), were proposed for evaluating the performances of an IWTS. Two scenarios (scenario A: wastewater treatment + sludge landfilling + treated water discharges; scenario B: wastewater treatment + sludge landfilling + reclaimed water reuse) for a livestock wastewater treatment plant in Sichuan Agricultural University located in Ya'an City in Southwest China, as cases, were researched. The results show that scenario B has lower positive output efficiency and greater environmental load than scenario A. Meanwhile, the reclaimed water reuse raises cost per unit pollutant eliminated compared with the treated water being discharged directly; emissions' impact enhances the environmental load of the two scenarios to different degree; emissions' impact has decisive effect on the sustainability of the two scenarios. These results mean that the reclaimed water reuse should not be advocated in this case. This study provides some policy implications: (1) wastewater treatment process should be comprehensively evaluated from its resources consumption and impact of emissions; (2) reclaimed water reuse should be carefully evaluated from its pros and cons simultaneously; (3) the local conditions should be considered when implementing reclaimed water reuse, such as local water body conditions, market demands, the related laws and regulations, corporations' economic conditions, etc.
机译:废水处理实践因其资源消耗和排放影响而应更加关注其环境绩效。尽管再生水的回用似乎已成为一种有前途的做法,但在任何情况下都总是可行的吗?为了解决这个问题,本研究对整体废水处理系统进行了扩展的能值评估。一方面,此方法已扩展到包括排放的影响。另一方面,本研究将废水处理厂,其多余的污泥处理系统和经处理的水处理系统集成到集成的废水处理系统(IWTS)中,以便更全面地评估其性能。然后,提出了一些指标,包括单位污染物消除成本(CUPE),正输出比率(RPO),环境负荷比率(ELR)和可持续性指数(SI),以评估IWTS的性能。四川农业大学一家畜禽废水处理厂的两种方案(方案A:废水处理+污泥填埋+处理过的水排放;方案B:废水处理+污泥填埋+再生水回用)为:案例,进行了研究。结果表明,方案B的正输出效率和环境负荷均高于方案A。同时,与直接排放的经处理水相比,再生水的回用提高了单位污染物排放的成本。排放的影响在不同程度上增强了两种情景的环境负荷;排放的影响对这两种情况的可持续性具有决定性影响。这些结果意味着在这种情况下不应提倡再生水回用。这项研究提供了一些政策含义:(1)应从废水处理过程的资源消耗和排放影响方面对其进行综合评价; (2)中水回用应同时从优缺点进行认真评估; (3)实施再生水回用时应考虑当地条件,例如当地水体条件,市场需求,相关法律法规,企业经济状况等。

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