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The Role of Location in Sustainable Nitrogen Removal for Onsite Wastewater Treatment Systems

机译:位置在现场废水处理系统可持续脱氮中的作用

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Onsite Wastewater Treatment Systems (OWTSs) play a significant role in nutrient removal to control the impact of nutrient pollution on human and aquatic health. However, studies assessing the sustainability of OWTSs are limited and the impact of the location of the OWTS on sustainability indicators such as greenhouse gas emissions and eutrophication have yet to be examined. This study evaluates the life-cycle environmental and economic impacts of OWTSs relative to their nutrient management capabilities and highlights the influence of locational variation. The results show that the location influences the OWTS's nutrient removal, life-cycle environmental impacts and cost. The less permeable soil type and higher soil temperature both positively improved the TN removal efficiency, reduced nutrient-related impacts like eutrophication, and improved cost-effectiveness. Compared to the advanced OWTS, the locational variation of soil conditions had a higher impact on the conventional OWTS due to its strong reliance on the performance of the drainfield. On the other hand, locational variation of energy mix had a strong influence on environmental performance of the advanced OWTS in terms of greenhouse gas emissions and fossil fuel depletion.
机译:现场废水处理系统(OWTS)在去除养分方面发挥着重要作用,以控制养分污染对人类和水生健康的影响。但是,评估OWTS可持续性的研究是有限的,并且OWTS的位置对诸如温室气体排放和富营养化等可持续性指标的影响尚待研究。这项研究评估了OWTS相对于其养分管理能力的生命周期对环境和经济的影响,并强调了位置变化的影响。结果表明,该位置影响OWTS的养分去除,生命周期环境影响和成本。渗透性较低的土壤类型和较高的土壤温度都积极提高了总氮的去除效率,减少了与营养相关的影响,例如富营养化,并提高了成本效益。与先进的OWTS相比,土壤条件的位置变化对传统OWTS的影响更大,这是由于其强烈依赖流失场的性能。另一方面,就温室气体排放和化石燃料的消耗而言,能源结构的位置变化对先进的OWTS的环境性能有很大影响。

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