首页> 外文期刊>The Science of the Total Environment >Copper and zinc in rhizospheric soil of wild plants growing in long-term acid vineyard soils. Insights on availability and metal remediation
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Copper and zinc in rhizospheric soil of wild plants growing in long-term acid vineyard soils. Insights on availability and metal remediation

机译:长期酸性葡萄园土壤中生长的野生植物晶体土壤中的铜和锌。有关可用性和金属修复的见解

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Total and available Cu and Zn levels were assessed in plant biomass, as well as in two rhizosphere fractions (tightly adhering rhizosphere (TAR), and loosely adhering rhizosphere (LAR)), in wild plants species from vineyard soils. Both TAR and LAR fractions were enriched in total Cu and Zn (1.7 and 1.6 times, respectively), and in available Cu and Zn (2.2 and 19.5 times, respectively), with the former being significantly higher for TAR than for LAR fractions. Mean values for total Cu accumulation in root and aerial biomass of the studied wild plants were 84 and 66 mg kg(-1), respectively, being 57 and 79 mg kg(-1), for Zn. No correlations were found among metal contents in plant biomass and available Cu and Zn concentrations in the rhizosphere fractions. Translocation factor (TF) values for Zn (range 1.0-3.5) indicate preferential accumulation in the aerial biomass in all the studied wild plants. On the contrary, TF for Cu shows a greater variability, depending on plant species, and ranging from 0.2 to 5.9. Regarding bioaccumulation factor (BAF), ranges were 0.03-0.27 and 0.13-0.58, for Cu and Zn, respectively. Results suggest that D. sanguinalis, P. hieracioides, S. viridis, and T. barbata could be useful for Cu remediation in the studied soils, by means of phytostabilization processes. (C) 2019 Elsevier B.V. All rights reserved.
机译:在植物生物质中评估总和可用的Cu和Zn水平,以及两种根际分数(紧密粘附的根际(焦油),并松散地粘附在葡萄园土壤中的野生植物中。焦油和碎片分别均富含Cu和Zn(分别为1.7和1.6倍),以及在可用的Cu和Zn(2.2和19.5次)中,前者对于焦虑的显着高于RAR级分。研究的野生植物的根和空中生物质中总Cu积累的平均值分别为84和66mg kg(-1),为Zn为57和79mg kg(-1)。在根际馏分中植物生物质和可用的Cu和Zn浓度的金属含量中没有发现相关性。 Zn(范围1.0-3.5)的易位因子(TF)值表示所有研究的野生植物中的空中生物质中的优先积累。相反,Cu的TF显示出更大的可变性,这取决于植物物种,范围为0.2至5.9。关于生物累积因子(BAF),分别为Cu和Zn的范围为0.03-0.27和0.13-0.58。结果表明,D.Sangainalis,P.Hieracioides,S.Viridis和T.Barbata可以通过植物化方法对所研究的土壤中的Cu修复有用。 (c)2019 Elsevier B.v.保留所有权利。

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