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Assessing environmental impacts of large centralized wastewater treatment plants with combined or separate sewer systems in dry/wet seasons by using LCA

机译:使用LCA评估大型集中污水处理厂对干/湿季节的单独下水道系统的环境影响

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Rainfall can affect influent flow rate and compositions of wastewater, and thus further affect wastewater treatment performance and the effluent quality. This study aims to study the influence of rainfall on the environmental impacts of centralized wastewater treatment plants. The correlations between rainfall, and influent flow rate and compositions of wastewater in wet and dry seasons with two sewer systems, i.e. combined and separate sewer systems, were primarily established. Environmental impacts were assessed with life cycle assessment (LCA) to understand the temporal environmental burdens in wet and dry seasons. Functional units as per m(3) treated wastewater (FU1) and as per kg PO43-eq. removed (FU2), respectively, were used to evaluate impacts of wastewater treatment to the environment. Strong correlation between rainfall and the influent flow rate was found in the wastewater treatment plants with either a combined sewer system (with Pearson correlation coefficient r at 0.66) or a separate sewer system (with r at 0.84), where r represents the strength of the association between two variables. The rainfall effect is more obvious on the eutrophication potential and global warming potential than on other environmental indicators while sewer system, i.e. combined or separate, seems not important in the two cases studied. Both wastewater treatment plants (WWTPs) show a lower environmental burden in the wet season than in the dry season partially due to the dilution of wastewater by using FU1. The WWTP receiving high strength wastewater, however, demonstrates higher environmental impacts in the wet season by using FU2 than FU1, due to the less efficient treatment caused by heavy rainfall. Meanwhile, it is found that environmental impacts from the WWTP receiving low strength wastewater have no difference when using either FU1 or FU2. The results indicate that the environmental burdens particularly eutrophication and global warming caused by WWTPs are dependent on the correlations of rainfall intensity with wastewater quantity and quality instead of combined or separate sewer system. This could be used to guide a stricter control of eutrophication in a more sensitive season in more vulnerable receiving waters.
机译:降雨可能影响废水的流动流速和组合物,从而进一步影响废水处理性能和流出质量。本研究旨在研究降雨对集中废水处理厂环境影响的影响。利用两个下水道系统的湿法和干燥季节的降雨和流动性流速和废水组成的相关性,即合并和单独的下水道系统。通过生命周期评估(LCA)评估环境影响,以了解潮湿和干燥季节的时间环境负担。功函数单位,如M(3)处理的废水(FU1)和按kg PO43-eq。除去(FU2)分别用于评估废水处理对环境的影响。在废水处理厂中发现了污水处理厂之间的强烈相关性,其中包括组合的下水道系统(具有0.66的Pearson相关系数R)或单独的下水道系统(在0.84时的R),其中R表示强度两个变量之间的关联。在下水道系统的同时,富营养化潜力和全球变暖潜力的降雨量效果比其他环境指标更明显,即,在两种情况下,似乎并不重要。污水处理厂(WWTPS)都显示出湿季节的环境负担低于干燥季节,部分原因是通过使用FU1稀释废水。然而,由于大雨造成的效率较低,WWTP接受高强度废水,通过使用FU2,通过使用FU2来涉及湿季的环境影响。同时,发现使用FU1或FU2时,来自WWTP接受低强度废水的环境影响无差异。结果表明,由WWTPS引起的环境负担特别是富营养化和全球变暖依赖于降雨强度与废水量和质量而不是组合或单独的下水道系统的相关性。这可用于引导更敏感季节在更脆弱的接收水域中更严格的富营养化控制。

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