Quantitative evaluation of legacy phosphorus and its spatial distribution

Author: Lou, Hezhen; Zhao, Changsen; Yang, Shengtian; Shi, Liuhua; Wang, Yue; Ren, Xiaoyu; Bai, Juan

Description: A phosphorus resource crisis threatens the security of global crop production, especially in developing countries like China and Brazil. Legacy phosphorus (legacy-P), which is left behind in agricultural soil by over-fertilization, can help address this issue as a new resource in the soil phosphorus pool. However, issues involved with calculating and defining the spatial distribution of legacy-P hinder its future utilization. To resolve these issues, this study applied remote sensing and ecohydrological modeling to precisely quantify legacy-P and define its spatial distribution in China’s Sanjiang Plain from 2000 to 2014. The total legacy-P in the study area was calculated as 579,090 t with an annual average of 38,600 t; this comprises 51.83% of the phosphorus fertilizer applied annually. From 2000 to 2014, the annual amount of legacy-P increased by more than 3.42-fold, equivalent to a 2460-ton increase each year. The spatial distribution of legacy-P showed heterogeneity and agglomeration in this area, with peaks in cultivated land experiencing long-term agricultural development. This study supplies a new approach to finding legacy-P in soil as a precondition for future utilization. Once its spatial distribution is known, legacy-P can be better utilized in agriculture to help alleviate the phosphorus resource crisis.

Subject headings: Agriculture; Brazil; China; Fertilizers; Phosphorus; Soil; Legacy phosphorus; Quantitative evaluation; Remote sensing; Spatial distribution

Publication year: 2018

Journal or book title: Journal of Environmental Management

Volume: 211

Pages: 296-305

Find the full text: https://www.sciencedirect.com/science/article/abs/pii/S0301479718300720

Find more like this one (cited by): https://scholar.google.com/scholar?cites=3873195058239571355&as_sdt=1000005&sciodt=0,16&hl=en

Serial number: 4124

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