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Phosphorus recovered from human excreta: A socio-ecological-technical approach to phosphorus recycling

机译:磷从人类排泄中恢复:一种社会生态学技术方法磷回收

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This article provides a comprehensive and cross-disciplinary overview of the phosphorus cycle through the wastewater and agri-food system. While mineral phosphorus stocks are finite, the use of mined phosphorus is accompanied with many losses, leading to pollution of water bodies. Recovering phosphorus from human excreta can contribute to more efficient use of phosphorus to ensure its availability for food production in the future. Phosphorous can be recovered through different recovery technologies and consequently used in agriculture via different recycling routes. Each recycling route has its own particularities in terms of interactions with technologies, actors and the environment to bring the recovered phosphorus back into agriculture. In this literature review, we adopt a socio-ecological-technical approach to map three phosphorus-recycling routes, via municipal sewage sludge, struvite recovered from municipal wastewater and source-separated urine. We firstly show that improvements are still needed in all three routes for achieving high P recovery efficiency, and a combination of these recycling routes are needed to achieve maximum recovery of phosphorus. Second, we identify key issues for each recycling route that currently limit the use of recovered phosphorus in agriculture. We indicate where interaction between disciplines is needed to improve recycling routes and identify gaps in research on how recovered phosphorus accesses agriculture.
机译:本文通过废水和农业食品系统提供了磷循环的全面和交叉学科概述。虽然矿物磷股是有限的,但使用开采的磷伴随着许多损失,导致水体污染。从人排泄物中回收磷会有助于更有效地使用磷来确保未来的食品生产可用性。可以通过不同的恢复技术恢复磷,因此通过不同的回收路线在农业中使用。每个回收路线都在与技术,行动者和环境的互动方面具有自己的特殊性,使回收的磷恢复农业。在本文综述中,我们采用社会生态技术方法来映射三条磷回收路线,通过市政污水污泥,从城市废水中恢复的Struvite和源分离的尿液。我们首先表明,在实现高P恢复效率的所有三个路线中仍然需要改进,并且需要这些回收路线的组合来实现磷的最大回收率。其次,我们确定目前限制在农业中回收磷的使用的每个循环路线的关键问题。我们表明需要学科之间的互动,以改善回收路线,并在研究如何回收的磷来获得农业的研究中。

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