土壤水分
底土
化学
表土
溶解有机碳
环境化学
生物地球化学循环
有机质
地下水
磷
矿化(土壤科学)
微观世界
溶解
环境科学
氧化还原
土壤科学
地质学
无机化学
物理化学
有机化学
岩土工程
作者
Sabry M. Shaheen,Jianxu Wang,Karen Baumann,Shan‐Li Wang,Peter Leinweber,Jörg Rinklebe
出处
期刊:Chemosphere
[Elsevier BV]
日期:2021-02-11
卷期号:275: 129928-129928
被引量:26
标识
DOI:10.1016/j.chemosphere.2021.129928
摘要
Abstract Mobilization of phosphorus (P) in arable soils might be affected by groundwater fluctuations and the associated changes in redox potential (EH). However, the impact of systematic changes of EH on P mobilization in redoximorphic arable soils along a catena has not been studied so far. Therefore, we investigated P mobilization under different redox conditions in top- and sub-soil horizons of three groundwater affected arable soils along a slight slope (toe-, mid-, and upper-slope position) in Northern Germany using an automated biogeochemical microcosm system. The impact of pH, Al, Fe, Mn, and dissolved organic carbon (DOC) on P mobilization was also studied. The initial EH (+351 to +431 mV) and pH (6.5–7.0) decreased in all soil samples (EH = −280 mV; pH = 4.4) when creating a slurry. Thereafter, the pH increased to 7.1 and 6.4 with increasing EH in the mid-and toe-slope soil, respectively. Concentrations of dissolved P ranged between 20.8 mg L−1 under low EH in the toe slope topsoil and 0.69 mg L−1 under high EH in the toe- and mid-slop subsoil. Concentrations (mg L−1) of dissolved Fe (0.31–13.3) and DOC (92–2651) increased under low EH and decreased under high EH. The increase of P mobilization under low EH and pH in the soils might be due to the release of P via the reductive and acidic dissolution of Fe-(oxhydr)oxides and/or due to soil organic matter mineralization. The high mobilization of P under reducing conditions may increase its bioavailability; however, it may increase its loss in the soils, particularly in the toe slope profile.
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