Physicochemical mechanisms underlying soil and organic amendment effects on runoff P losses

被引:2
作者
Mamedov, Amrakh I. [1 ,2 ,3 ]
Bar-Yosef, Benayahu [1 ]
Levkovich, Irit [1 ]
Fine, Pinchas [1 ]
Silber, Avner [1 ]
Levy, Guy J. [1 ]
机构
[1] Agr Res Org, Volcani Ctr, Inst Soil Water & Environm Sci, IL-7505101 Bet Dagan, Israel
[2] Tottori Univ, Fac Agr, Arid Land Res Ctr, Tottori 6680001, Japan
[3] OMU, Fac Agr, TR-55139 Samsun, Turkey
关键词
bicarbonate soluble P; arid and semi-arid regions; humic acid; Langmuir; P adsorption; pH; runoff P losses; runoff sediment; soil texture; PHOSPHORUS LOSSES; HUMIC-ACID; AGRICULTURAL PHOSPHORUS; AMENDING SOIL; MANURE; PHOSPHATE; SLUDGE; ORTHOPHOSPHATE; EXTRACTION; COMPLEXES;
D O I
10.1002/ldr.3607
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Phosphorus depletion from cultivated lands by runoff is a significant contributor to soil chemical degradation. Our objective was to elucidate the mechanisms through which soil and organic matter amendments affect rain-induced runoff P losses in Mediterranean soils. Clay, loam, and loamy sand mixed with noncomposted activated sludge (AS), manure compost (MC), industrial humic acid (HA), orthophosphate (Pi), or inositol hexaphosphate (IHP) were subjected to six consecutive artificial rainstorms. Adding amendments significantly increased runoff available Pi loss (the sum of solution and sediments bicarbonate extractable Pi) for all soils. The order of loss (Pi, mg m(-2)) was soil dependent; greatest and lowest in the loam and loamy sand, respectively (loam: Pi[270] > IHP[128] > AS[108] > MC[97] > HA[49] > Control[33], and loamy sand: AS[42] > HA[23] > Pi[22] > IHP[18] > MC[13] > Control[4]), although order of runoff and soil loss were clay > loam > loamy sand. Treating with IHP and Pi at a similar total P level led to comparable cumulative total-P runoff losses, but runoff available Pi loss was much greater in the Pi treatment of soils with higher clay content (clay > loam > loamy sand). A derived isotherm relating sediment Olsen Pi to dissolved reactive Pi (DRP) concentration in runoff was found useful for estimating runoff Pi losses from measured DRP, runoff volume, and sediment concentration. The results could be explained by the impact of the amendments on soil structure stability, sealing, runoff, and erosion levels associated with soil physical and chemical degradation.
引用
收藏
页码:2395 / 2404
页数:10
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