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Soil chemical and fertilizer influences on soluble and medium-sized colloidal phosphorus in agricultural soils

机译:土壤化学和肥料对农业土壤溶解和中胶磷的影响

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摘要

Colloid-facilitated transport can be important for preferential transfer of phosphorus (P) through the soil profile to groundwater and may in part explain elevated P concentrations in surface water during baseflow and particularly high flow conditions. To investigate the potential for colloidal P (P_(coll)) mobilisation in soils, this study assessed the role of soil chemical properties and P fertilizer type on medium-sized soil P_(coll) (200-450 nm) and its association with soil solution soluble bioavailable P (<450 nm). Hillslope soils from three agricultural catchments were sampled and untreated and treated (cattle slurry and synthetic fertilizer) subsamples were incubated. Soil supernatants were analysed for P and soil Water Dispersible Colloids (WDC) were extracted for analysis of P and P-binding materials. Soils physicochemical properties including degree of P saturation (DPS) and P sorption properties were determined. Results indicated that medium-sized P_(coll) was mostly unreactive P associated to some extent to amorphous forms of Fe. Medium-sized P_(coll) concentrations correlated negatively with soil maximum P sorption capacity and soluble P concentrations increased with increasing DPS. In soil with low sorption properties, cattle slurry increased soluble P concentrations by 0.008-0.013 mg 1~(-1) and DPS but did not influence medium-sized P_(coll). Synthetic fertilizer increased medium-sized reactive P_(coll) by 0.011 mg l~(-1) (0.088 mg kg~(-1) soil) and DPS in a soil with lower DPS whereas it decreased it by 0.005 mg l~(-1) (0.040 mg kg~(-1) soil) in a soil with higher DPS. Additional soil parameters (M3-Fe, M3-A1, M3-P, and DPS) should be included in soil testing, especially in Cambisol/Podzol soils, to identify critical areas where risks of P_(coll) mobilisation are important. Further research should include the roles of finer colloidal and nanoparticulate (<200 nm) soil P fractions and soluble P to inform understanding of plant uptake and assess environmental risk.
机译:胶体促进的运输对于通过土壤曲线到地下水的优先转移(P)的优先转移是重要的,并且可以部分地解释基础流动期间表面水中的升高的P浓度。为了探讨胶体P(P_(COLL))在土壤中动员的潜力,本研究评估了土壤化学性质和P肥料对中尺寸土壤P_(COLL)(200-450nm)的作用及其与土壤的关系溶液可溶性生物可利用p(<450nm)。孵育并未治疗三种农业流域的山坡土壤和未处理和治疗(牛浆料和合成肥料)归类。分析土壤上清液对P和土壤水分散胶体(WDC)萃取,用于分析P和P粘结材料。确定土壤物理化学性质,包括P饱和度(DPS)和P吸附性能。结果表明,中等大小的P_(COLL)大多是在一定程度上与无定形形式相关的不反应性的P.随着DPS的增加,中尺寸的P_(Coll)浓度与土壤最大P吸附能力和可溶性P浓度产生负相关。在吸附性低的土壤中,牛浆液将可溶性P浓度增加0.008-0.013mg 1〜(-1)和DP,但没有影响中尺寸的P_(Coll)。合成肥料将中等大小的反应性P_(COLL)增加0.011mg L〜(-1)(0.088mg kg〜(-1)土壤)和具有较低DP的土壤中的DP,而它将其降低0.005 mg L〜( - 1)(0.040mg kg〜(-1)土壤)在具有较高DPS的土壤中。额外的土壤参数(M3-Fe,M3-A1,M3-P和DPS)应包括在土壤测试中,特别是在雪巴醇/潮汐醇土壤中,以确定P_(COLL)动员的风险重要的关键区域。进一步的研究应包括细粒胶体和纳米颗粒(<200nm)土壤p部分和可溶性P的作用,以了解植物摄取并评估环境风险。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第1期|142112.1-142112.11|共11页
  • 作者单位

    Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland Crops Environment and Land Use Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland School of Geography and Environmental Sciences Ulster University Coleraine UK;

    School of Geography and Environmental Sciences Ulster University Coleraine UK;

    Crops Environment and Land Use Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland;

    Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland Crops Environment and Land Use Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland;

    Crops Environment and Land Use Programme Teagasc Johnstown Castle Environment Research Centre Wexford Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil water dispersible colloids; Mobilisation; Cattle slurry; Synthetic fertilizer; Agriculture; Groundwater pollution;

    机译:土壤水分散胶体;动员;牛浆;合成肥;农业;地下水污染;

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