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首页> 外文期刊>Environmental Science & Technology >Organic Carbon Linkage with Soil Colloidal Phosphorus at Regional and Field Scales: Insights from Size Fractionation of Fine Particles
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Organic Carbon Linkage with Soil Colloidal Phosphorus at Regional and Field Scales: Insights from Size Fractionation of Fine Particles

机译:区域和场尺度土壤胶体磷的有机碳键:来自细颗粒的大小分馏的见解

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摘要

Nano and colloidal particles (1-1000 nm) play important roles in phosphorus (P) migration and loss from agricultural soils; however, little is known about their relative distribution in arable crop soils under varying agricultural geolandscapes at the regional scale. Surface soils (0-20 cm depth) were collected from 15 agricultural fields, including two sites with different carbon input strategies, in Zhejiang Province, China, and water-dispersible nanocolloids (0.6-25 nm), fine colloids (25-160 nm), and medium colloids (160-500 nm) were separated and analyzed using the asymmetrical flow field flow fractionation technique. Three levels of fine-colloidal P content (3583-6142, 859-2612, and 514-653 μg kg~(-1)) were identified at the regional scale. The nanocolloidal fraction correlated with organic carbon (C_(org)) and calcium (Ca), and the fine colloidal fraction with C_(org), silicon (Si), aluminum (Al), and iron (Fe). Significant linear relationships existed between colloidal P and C_(org), Si, Al, Fe, and Ca and for nanocolloidal P with Ca. The organic carbon controlled colloidal P saturation, which in turn affected the P carrier ability of colloids. Field-scale organic carbon inputs did not change the overall morphological trends in size fractions of water-dispersible colloids. However, they significantly affected the peak concentration in each of the nano-, fine-, and medium-colloidal P fractions. Application of chemical fertilizer with carbon-based solid manure and/or modified biochar reduced the soil nano-, fine-, and medium-colloidal P content by 30-40%; however,the application of chemical fertilizer with biogas slurry boosted colloidal P formation. This study provides a deep and novel understanding of the forms and composition of colloidal P in agricultural soils and highlights their spatial regulation by soil characteristics and carbon inputs.
机译:纳米和胶体颗粒(1-1000nm)在农业土壤中的磷(P)迁移和损失中起重要作用;然而,在区域规模的不同农业良性地理芽孢杆菌下,对耕地土壤中的相对分布知之甚少。从15个农业领域收集地表土(0-20厘米深度),包括两个具有不同碳投入策略的站点,中国和水分散纳米胶体(0.6-25nm),细胶体(25-160nm ),使用不对称流场流量分馏技术分离和分析中胶体(160-500nm)。在区域规模上鉴定了三种细胶体P含量(3583-6142,859-2612和514-653μgkg〜(-1))。与有机碳(C_(ORG))和钙(CA)相关的纳米曲线级分,以及用C_(ORG),硅(Si),铝(Al)和铁(Fe)的细胶体级分。胶体P和C_(ORG),Si,Al,Fe和Ca之间存在显着的线性关系,以及用CA的纳米孔P.有机碳受控胶体P饱和度,这反过来影响了胶体的P载体能力。现场规模的有机碳输入没有改变水分散胶体尺寸分数的整体形态趋势。然而,它们显着影响了每种纳米,细胞和中胶体P馏分中的峰浓度。用碳基固体粪便和/或改性生物炭的应用将土壤纳米,细胞和中胶体P含量降低30-40%;然而,用沼气浆料促进胶体P形成的化肥应用。本研究为农业土壤中胶体P的形式和组成提供了深入和新颖的理解,并突出了土壤特性和碳投入的空间调节。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第9期|5815-5825|共11页
  • 作者单位

    Key Laboratory of Environment Remediation and Ecological Health Ministry of Education College of Environmental and Resources Sciences Zhejiang University Hangzhou 310058 China College of Water Resources and Architectural Engineering Tarim University Xinjiang 843300 China;

    Institute of Bio- and Geosciences Agrosphere (IBG-3) Eorschungszentrum Juelich GmbH 52425 Juelich Germany Institute for Environmental Research Biology 5 RWTH Aachen University 52074 Aachen Germany;

    Institute of Bio- and Geosciences Agrosphere (IBG-3) Forschungszentrum Juelich GmbH 52425 Juelich Germany;

    Institute of Bio- and Geosciences Agrosphere (IBG-3) Forschungszentrum Juelich GmbH 52425 Juelich Germany School of Natural Sciences Environment Centre Wales Bangor University Bangor LL57 2UW Unitedf Kingdom;

    Central Institute for Engineering Electronics and Analytics Analytics (ZEA-3) Forschungszentrum Juelich 52425 Juelich Germany;

    Northeast Key Laboratory of Conservation and Improvement of Cultivated Land (Shenyang) Ministry of Agriculture Shenyang Agricultural University Shenyang Liaoning 110866 China;

    Key Laboratory of Environment Remediation and Ecological Health Ministry of Education College of Environmental and Resources Sciences Zhejiang University Hangzhou 310058 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    organic carbon; nanocolloidal phosphorus; colloidal phosphorus; asymmetric flow field flow fractionation; biochar; regional scale; field scale;

    机译:有机碳;纳米孔磷;胶体磷;不对称流场流量分馏;生物炭;区域规模;现场规模;

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