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首页> 外文期刊>Science of the total environment >Trace element concentrations in leachates and mustard plant tissue (Sinapis alba L.) after biochar application to temperate soils
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Trace element concentrations in leachates and mustard plant tissue (Sinapis alba L.) after biochar application to temperate soils

机译:生物炭施于温带土壤后渗滤液和芥菜植物组织(Sinapis alba L.)中的微量元素浓度

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摘要

Biochar application to agricultural soils has been increasingly promoted worldwide. However, this may be accompanied by unexpected side effects in terms of trace element (TE) behavior. We used a greenhouse pot experiment to study the influence of woodchip-derived biochar (wcBC) on leaching and plant concentration of various TEs (Al, Cd, Cu, Pb, Mn, As, B, Mo, Se). Three different agricultural soils from Austria (Planosol, Cambisol, Chernozem) were treated with wcBC at application rates of 1 and 3% (w/w) and subsequently planted with mustard (Sinapis alba L.). Soil samples were taken 0 and 7 months after the start of the pot experiment, and leachate water was collected twice (days 0 and 54). The extractability (with NH_4NO_3) of cationic TEs was decreased in the (acidic) Planosol and Cambisol after wcBC application, whereas in the (neutral) Chernozem it hardly changed. In contrast, anionic TEs were mobilized in all three soils, which resulted in higher anion concentrations in the leachates. The application of wcBC had no effect on Al and Pb in the mustard plants, but increased their B and Mo concentrations and decreased their Cd, Cu and Mn concentrations. A two-way analysis of variance showed significant interactions between wcBC application rate and soil type for most TEs, which indicates that different soil types may react differently upon wcBC application. Correlation and partial correlation analyses revealed that TE behavior was primarily related to soil pH, whereas the involvement of other factors such as electrical conductivity (EC), organic carbon (OC) content and dissolved organic carbon (DOC) was found to be more soil and TE-specific. The application of wcBC may be a useful strategy for the remediation of soils with elevated levels of cationic TEs, but could lead to deficiencies of cationic micronutrients and enhance short-term transloca-tion of anionic TEs towards the groundwater at high leaching rates.
机译:生物炭在农业土壤中的应用在世界范围内得到了越来越多的促进。但是,这可能会伴随微量元素(TE)行为带来意想不到的副作用。我们使用温室盆栽实验研究了木屑衍生的生物炭(wcBC)对各种TE(Al,Cd,Cu,Pb,Mn,As,B,Mo,Se)的浸出和植物浓度的影响。用wcBC处理了来自奥地利的三种不同的农业土壤(普兰索尔,坎比索尔,切尔诺泽姆),施用量分别为1%和3%(w / w),然后种植芥末(Sinapis alba L.)。在盆栽试验开始后的0和7个月内取样土壤样品,并收集两次沥滤液水(第0和54天)。施用wcBC后,(酸性)普莱诺索和Cambisol中阳离子TEs的可萃取性(用NH_4NO_3降低),而在(中性)黑尔诺则中几乎不变。相反,阴离子TEs在所有三种土壤中均被迁移,这导致沥滤液中的阴离子浓度更高。 wcBC的施用对芥菜植物中的Al和Pb没有影响,但是增加了其B和Mo的浓度并降低了Cd,Cu和Mn的浓度。双向方差分析显示,大多数TE的wcBC施用率与土壤类型之间存在显着的相互作用,这表明不同的土壤类型在wcBC施用后可能会有不同的反应。相关性和偏相关性分析表明,TE行为主要与土壤pH值有关,而其他因素(例如电导率(EC),有机碳(OC)含量和溶解的有机碳(DOC))的参与则更多。 TE特定的。 wcBC的应用可能是修复阳离子TEs水平升高的土壤的有用策略,但可能导致阳离子微量营养素缺乏,并提高了阴离子TEs在高浸出率下向地下水的短期迁移。

著录项

  • 来源
    《Science of the total environment 》 |2014年第15期| 498-508| 共11页
  • 作者单位

    University of Natural Resources and Life Sciences, Department of Forest and Soil Sciences, Institute of Soil Research, Peter-Jordan-Str. 82, 1190 Vienna, Austria,Department of Health and Environment, AIT Austrian Institute of Technology, A-3430 Tulln, Austria;

    University of Natural Resources and Life Sciences, Department of Forest and Soil Sciences, Institute of Soil Research, Peter-Jordan-Str. 82, 1190 Vienna, Austria;

    University of Natural Resources and Life Sciences, Department of Forest and Soil Sciences, Institute of Soil Research, Konrad-Lorenz-Str. 24, 3430 Tulln, Austria;

    Water Management in Mining Landscapes, Dresden Groundwater Research Center, MeranerStr. 10, 01217 Dresden, Germany;

    Federal Research and Training Centre for Forests, Natural Hazards and Landscape, Seckendorff-Gudent-Weg 8, 1131 Vienna, Austria;

    University of Natural Resources and Life Sciences, Department of Forest and Soil Sciences, Institute of Soil Research, Konrad-Lorenz-Str. 24, 3430 Tulln, Austria;

    Department of Health and Environment, AIT Austrian Institute of Technology, A-3430 Tulln, Austria;

    Department of Health and Environment, AIT Austrian Institute of Technology, A-3430 Tulln, Austria;

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

    Biochar; Trace elements; Heavy metals; Soil remediation; Leaching; Plant uptake;

    机译:生物炭微量元素;重金属;土壤修复;浸出植物吸收;

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