首页> 外文期刊>Journal of Hazardous Materials >Role of Brassica juncea (L.) Czern. (var. Vaibhav) in the phytoextraction of Ni from soil amended with fly ash: Selection of extractant for metal bioavailability
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Role of Brassica juncea (L.) Czern. (var. Vaibhav) in the phytoextraction of Ni from soil amended with fly ash: Selection of extractant for metal bioavailability

机译:芥菜油菜(L.) (var。Vaibhav)在用粉煤灰改良的土壤中镍的植物提取中:金属生物利用度提取剂的选择

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A pot experiment was carried out to study the potential of the plant of Brassica juncea for the phytoextraction of metal from fly ash amended soil and to study correlation between different pool of metals (total, DTPA, CaCl_2 and NH_4NO_3) and metal accumulated in the plant in order to assess better extractant for plant available metals. The results of total metal analysis in the soil revealed the presence of Cr, which was found below detection limit (BDL) in the plants. The fly ash (FA) amendments and soil samples were extracted with different extractants and the level of metal vary from one extractant to another. The regression analysis between total and extractable metals showed better regression for all the tested metals except Mn (R~2 = 0.001) in DTPA extraction. Correlation coefficient between metal accumulation by the plant tissues and different pool of metals showed better correlation with DTPA in case of Fe, Zn and Ni, whereas, Cu was significantly correlated with NH_4NO_3 and other metals (Pb, Mn) with CaCl_2. The soil analysis results revealed that the mobility and plant availability of metals (Fe, Mn, Zn, Ni) within the profiles of amended soils was influenced by the change in pH, however, Pb and Cu was not affected. The metal accumulation in total plant tissues was found in the order of Fe > Ni > Zn > Mn > Cu > Pb and its translocation was found more in upper part. The plants grown on soil amended with 25%FA have shown significant increase in plant biomass, shoot and plant height, whereas, no significant effect was observed in root length. The cluster analysis showed 10%FA behave differently on the basis of physico-chemical properties and metal behavior. Thus, it may be concluded that B. juncea can be used for phytoextraction of metals, especially Ni in fly ash amendment soil.
机译:通过盆栽试验研究了芸苔属植物从粉煤灰改良土壤中提取金属的潜力,并研究了不同种类的金属(总量,DTPA,CaCl_2和NH_4NO_3)与植物中积累的金属之间的相关性。为了评估植物可用金属的更好萃取剂。土壤中的总金属分析结果表明存在Cr,发现其在植物中的检出限(BDL)以下。粉煤灰(FA)改良剂和土壤样品是用不同的萃取剂萃取的,金属的含量因一种萃取剂而异。总金属和可萃取金属之间的回归分析表明,在DTPA萃取中,除Mn(R〜2 = 0.001)外,所有测试金属的回归更好。在铁,锌和镍的情况下,植物组织中金属积累与不同金属库之间的相关系数与DTPA有更好的相关性,而铜与NH_4NO_3和其他金属(Pb,Mn)与CaCl_2显着相关。土壤分析结果表明,土壤中金属(铁,锰,锌,镍)的迁移率和植物有效性受到pH值变化的影响,而铅和铜则不受影响。整个植物组织中的金属积累依次为铁>镍>锌>锰>铜>铅>且其上部易位。在用25%FA修正的土壤上生长的植物显示出植物生物量,枝条和植物高度显着增加,而在根长上未观察到显着影响。聚类分析表明,10%FA的理化性质和金属行为不同。因此,可以得出结论,芥菜芽孢杆菌可用于植物提取金属,特别是粉煤灰改良土壤中的Ni。

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