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Global phosphorus recovery from wastewater for agricultural reuse

机译:全球磷从农业再利用废水中回收

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Phosphorus is a nutrient necessary for the development of crops and is thus commonly applied as fertilizer to sustain agricultural production. It occurs naturally, in indefinite quantities of uncertain quality in phosphate rock formations, but also accumulates in urban and livestock wastewater wherefrom it is often lost as a pollutant. Recovering phosphorus from wastewater, however, is feasible through struvite crystallization technologies and has the potential to reduce phosphorus pollution of the environment as well as lower the agricultural demand for artificial P fertilizers. In this study, we developed a model to assess the global potential of P fertilizer recovery from wastewater and to visualize its trade at sub-national resolution. Results show that humans discharge a maximum of 3.7MtP into wastewater, thereby potentially satisfying 20% of the global fertilizer demand. Provided 2015 market dynamics, however, the model determines that only 4% of this discharge is technologically and economically recoverable in a market that offers cheap rock phosphate products also. The results of this study demonstrate that in the current economic context, phosphorus recovery from wastewater offers only a small contribution to resolving global phosphorus issues. Nevertheless, this recovery offers many wastewater treatment facilities the opportunity to contribute to creating sustainable communities and protecting the environment locally, while reducing their own operational costs.
机译:磷是作物发展所必需的营养素,因此通常应用于肥料以维持农业生产。它自然地发生,在磷酸盐岩层的无限量的不确定品质中,也在城市和牲畜废水中积累,从而从它通常丢失作为污染物。然而,从废水中回收磷是可行的,通过Struvite结晶技术是可行的,并且有可能降低环境的磷污染,以及降低人造P化肥的农业需求。在这项研究中,我们开发了一种评估来自废水的P肥料恢复的全球潜力,并以亚国家分辨率可视化其贸易。结果表明,人类最多排放到废水中,从而占全球肥料需求的20%。但是,2015年市场动态,该模型决定在市场上只有4%的出院在提供廉价岩石产品的市场中可以技术和经济上恢复。本研究的结果表明,在目前的经济背景下,废水中的磷恢复仅为解决全球磷问题提供了一小部分贡献。尽管如此,这种复苏提供了许多废水处理设施,有助于创造可持续社区并在本地保护环境,同时降低自己的运营成本。

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