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Nutrient Recovery from Municipal Wastewater for Sustainable Food Production Systems: An Alternative to Traditional Fertilizers

机译:来自市政废水的营养回收可持续食品生产系统:传统肥料的替代品

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Traditional wastewater management uses end-of-pipe approaches to remove pollutants in wastewater before discharge. Although effective in human health protection for decades, this approach of removal and disposal requires a high investment of energy and materials and overlooks the values of the key nutrients in wastewater such as phosphorus (P). Phosphorus in wastewater comes from the human metabolites of food, resulted from crop uptakes of fertilizer that ultimately derived from phosphate rock (PR). PR, however, could be depleted in this century, which would lead to a global food crisis. To address the question whether nutrient recovery is indeed a more efficient strategy from a system perspective and provides more benefits to society, this research compares fertilizer production from struvite to the traditional commercial fertilizers (e.g., diammonium phosphate, DAP). Emergy defined as the available energy required directly and indirectly through all transformations to make a product, process, or service is the tool used for system analysis in this study. Emergy accounting provides system analysis of total resource use and whole system efficiency. The results show that struvite production uses one order of magnitude less emergy than DAP production to produce one unit of fertilizer, indicating that struvite production is a more efficient process. This research sheds light on alternative nutrient management through nutrient recovery, which may achieve economic and environmental benefits and overall higher system efficiency.
机译:传统的废水管理使用尾气末端方法去除排水前的污染物。虽然有效地在人类健康保护数十年中,但这种拆除和处置方法需要高度的能量和材料投资,并忽略废水中的关键营养素的价值,如磷(P)。废水中的磷来自食物的人代代谢物,原因是肥料最终源于磷酸盐岩(PR)的肥料的作物。然而,公关可能在本世纪中耗尽,这将导致全球粮食危机。为了解决问题,营养恢复是否实际上是一种从系统的角度来看的更有效的策略,并为社会提供更多的利益,这项研究将肥料生产与传统的商业肥料(例如,磷酸铵,DAP)的施肥量进行比较。 emergy定义为直接和间接通过所有转换所需的可用能量,以制作产品,过程或服务是本研究中用于系统分析的工具。 Emergy会计提供了对总资源使用和整个系统效率的系统分析。结果表明,Struvite生产使用比Dap生产的一个数量级,以产生一个单位的肥料,表明Struvite生产是一种更有效的过程。这项研究通过营养回收来揭示替代营养管理,可以实现经济和环境效益和整体更高的系统效率。

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