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喂养作物而非土壤:重新思考食物链中的磷管理。

Feed the crop not the soil: rethinking phosphorus management in the food chain.

机构信息

School of Environment, Natural Resources & Geography, Bangor University , Bangor, Gwynedd LL57 2UW, United Kingdom.

出版信息

Environ Sci Technol. 2014 Jun 17;48(12):6523-30. doi: 10.1021/es501670j. Epub 2014 Jun 3.

Abstract

Society relies heavily on inorganic phosphorus (P) compounds throughout its food chain. This dependency is not only very inefficient and increasingly costly but is depleting finite global reserves of rock phosphate. It has also left a legacy of P accumulation in soils, sediments and wastes that is leaking into our surface waters and contributing to widespread eutrophication. We argue for a new, more precise but more challenging paradigm in P fertilizer management that seeks to develop more sustainable food chains that maintain P availability to crops and livestock but with reduced amounts of imported mineral P and improved soil function. This new strategy requires greater public awareness of the environmental consequences of dietary choice, better understanding of soil-plant-animal P dynamics, increased recovery of both used P and unutilized legacy soil P, and new innovative technologies to improve fertilizer P recovery. In combination, they are expected to deliver significant economic, environmental, and resource-protection gains, and contribute to future global P stewardship.

摘要

社会在其食物链中高度依赖无机磷 (P) 化合物。这种依赖性不仅效率非常低,而且成本越来越高,还正在消耗全球有限的磷矿储量。它还导致土壤、沉积物和废物中磷的积累,这些磷正在渗漏到我们的地表水,导致广泛的富营养化。我们主张在磷肥料管理中采用一种新的、更精确但更具挑战性的范例,旨在开发更可持续的食物链,为作物和牲畜提供可用的磷,但减少进口的矿物磷,并改善土壤功能。这种新策略需要公众更加意识到饮食选择的环境后果,更好地理解土壤-植物-动物磷动态,增加对已用磷和未利用的遗留土壤磷的回收,以及新的创新技术来提高肥料磷的回收。它们结合在一起有望带来显著的经济、环境和资源保护收益,并为未来的全球磷管理做出贡献。

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