Accumulation and release of organic phosphorus (P) from legacy P-affected soils to adjacent drainage water

被引:0
|
作者
Suwei Xu
Nicolas F. Martin
Jeffrey W. Matthews
Yuji Arai
机构
[1] University of Illinois at Urbana-Champaign,Department of Natural Resources and Environmental Sciences
[2] University of Illinois at Urbana-Champaign,Department of Crop Sciences
来源
Environmental Science and Pollution Research | 2022年 / 29卷
关键词
Organic phosphorus; P; Ratio; Soil; Ditchwater; Agricultural management;
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中图分类号
学科分类号
摘要
Legacy effects of P in agricultural soils have been highlighted in recent literature. However, co-accumulation and release of organic P (Po) have often been ignored in current agro-environmental assessments. The mineralizable Po fraction has a potential to increase the activity of phosphate in pore water, increasing fertility or degrading water quality. In this study, the effects of agricultural management practices (fertilizer applied corn-soybean rotation cropland and dairy manure applied pasture) on the Po/phosphate ratio were investigated in P-rich (290–1232 mg kg−1) agricultural soils and adjacent ditchwater using experimental soil–water chemistry. The effect of agricultural management was significant on both Po and the Po/phosphate ratio in soil and adjacent ditchwater. The Po content, dominated by orthophosphate monoesters, in the manure-amended pasture (average ~ 245 mg kg−1) was significantly greater than that in the fertilizer-applied cropland (average 103 mg kg−1). The Po/phosphate ratio was also significantly greater in the manure-amended pasture (0.54) than in the fertilizer-applied cropland (0.42). Similarly, water quality data also showed that ditchwater near the pasture had a significantly greater flux of dissolved non-reactive P and a greater Po/phosphate ratio compared to the water near the fertilizer-applied sites. Furthermore, a greater Po/phosphate ratio in ditchwater was often observed during wet periods, and the ratio was positively correlated to the discharge (r = 0.42, p = 0.003). The study showed the agricultural management-specific Po accumulation and release and − Po/phosphate ratio that might affect the fate of P in agroecosystems.
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页码:33885 / 33899
页数:14
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