...
首页> 外文期刊>Environmental Science and Pollution Research >Interactions between heavy metals and other mineral elements from soil to medicinal plant Fengdan (Paeonia ostii) in a copper mining area, China
【24h】

Interactions between heavy metals and other mineral elements from soil to medicinal plant Fengdan (Paeonia ostii) in a copper mining area, China

机译:中国铜矿区土壤中重金属与土壤矿物质矿物质矿床(Paeonia Ostii)之间的相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

In order to analyze the interaction relationship between heavy metals and other mineral elements during the processes of absorption and translocation by plant grown on heavy metal-contaminated area, the concentrations of Cu, Zn, Mn, Cd, Pb, Ca, Mg, Fe, and K in the medicinal plantPaeonia ostiiT. Hong et J. X. Zhang and its rhizospheric soil were determined, which grow around an abandoned copper tailings reservoir in Tongling City, China. Geo-accumulation index (I-geo) calculation indicated that Cu and Pb are the main pollution elements in the rhizospheric soil. Moreover, the Cu and Pb concentrations in the cortex moutan ofP. ostiiexceeded the maximum permissible limits for food product safety. The bioaccumulation factor values of the tested metals in plant roots were found < 0.50, with the exception of Ca (maximum 5.99). The translocation factor values of detected heavy metals Cd and Pb were more than 1.00, which indicated thatP. ostiicould be considered a potential accumulator plant for Cd and Pb. Significant positive correlations including Cu-Cd, Cu-Zn, Cu-Pb, Cd-Zn, Cd-Fe, Cd-Fe, Zn-Pb, Pb-Fe, Mn-Fe, and Ca-Mg in the cortex moutan and Cu-Zn, Cu-Fe, Zn-Mg, Zn-Fe, and Mn-K in the leaves were observed (P< 0.05). Significant positive correlation between Cu, Zn, Mg, and Fe was also confirmed in the processes of absorption and translocation from the soil to plant (P< 0.05), which evidenced that synergistic element interactions of the essential elements Cu, Zn, Mg, and Fe are a result of the similarity in their ionic radii and octahedral coordination geometry.
机译:为了分析重金属和其他矿物元素之间的吸收和运转的通过植物的处理过程中生长于重金属污染区域的相互作用关系,铜,锌,锰,镉,铅,钙,镁,铁的浓度,和K在药用plantPaeonia ostiiT。 Hong等J.十张其根际土壤进行了测定,其周围长出一个废弃的尾矿铜铜陵市,中国水库。地理累积索引(I-GEO)计算表明,铜和铅是在根际的主要污染元素。此外,在皮质中的铜和铅浓度牡丹皮OFP。 ostiiexceeded食品产品安全所允许的最大限额。被发现在植物的根的试验金属的富集因子值<0.50,用Ca(最大5.99)除外。检测重金属镉和铅的移位因子值均大于1.00,这表明thatP。 ostiicould考虑镉和铅的电位累加器植物。显著正相关,包括铜 - 镉,铜 - 锌,铜 - 铅,镉,锌,镉,铁,镉铁,锌,铅,铅铁,锰,铁,钙,镁中的牡丹皮和Cu -Zn,铜 - 铁,锌,镁,锌,铁,和Mn-K在叶中观察到(P <0.05)。铜,锌,镁,和Fe之间显著正相关,还确认在吸收和易位从土壤到植物的处理(P <0.05),这证明的基本要素铜,锌,镁的该协同元件相互作用,并铁在他们的离子半径和八面体形状相似的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号