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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Long-term fate and transformations of vanadium in a pine forest soil with added converter lime
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Long-term fate and transformations of vanadium in a pine forest soil with added converter lime

机译:添加转化石灰的松林土壤中钒的长期命运和转化

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摘要

A field-trial with different application rates of converter lime (0.2, 0.7 and 1.0 kg m(-2)) was set up in a pine forest stand in southern Sweden in 1984. The lime contained 14.6 g kg(-1) vanadium. The aim with this study was to evaluate the vanadium concentration and speciation in the soil 26 years after application. Samples of the organic mar layer and the mineral soil were analyzed separately. The vanadium concentration decreased with soil depth, from 680 to 8 mg kg(-1) soil. Analysis by vanadium K-edge}CANES spectroscopy showed that vanadium(IV) was the predominant species in the mar layer. Further, iron and/or aluminum (hydr)oxides were important sorbents for vanadium(V) in the mineral soil. The spedation of dissolved vanadium, as determined by HPLC-ICP-MS, was dominated by vanadium(V), which is considered the most toxic vanadium species. However, the vanadium sorption capacity of the soil was sufficient to reduce the total bioavailable vanadium below phytotoxic levels. By combining two different vanadium spedation methods, this study was able to conclude that vanadium speciation in soils is governed by soil properties such as pH, organic matter content and the content of metal (hydr)oxides, but not by the vanadium species added to the soil. (C) 2015 Elsevier B.V. All rights reserved.
机译:1984年在瑞典南部的一片松树林中建立了具有不同转化率石灰用量(0.2、0.7和1.0 kg m(-2))的田间试验。石灰中含有14.6 g kg(-1)钒。这项研究的目的是评估施用26年后土壤中的钒浓度和形态。分别分析了有机破坏层和矿物土壤的样品。钒浓度随土壤深度而降低,从680降低到8 mg kg(-1)。钒K边} CANES光谱分析表明,钒(IV)是mar层中的主要物质。此外,铁和/或铝(氢)氧化物是矿物土壤中钒(V)的重要吸附剂。通过HPLC-ICP-MS测定的溶解钒的形成主要是钒(V),钒被认为是最有毒的钒物质。但是,土壤对钒的吸附能力足以将总生物利用钒降低到低于植物毒性水平。通过结合两种不同的钒促进作用方法,这项研究能够得出结论,土壤中的钒形态是由土壤性质(例如pH值,有机物含量和金属(氢)氧化物的含量)控制的,而不是由添加到土壤中的钒物种决定的。泥。 (C)2015 Elsevier B.V.保留所有权利。

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