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Elemental Composition Study of Heavy Metal (Ni, Cu, Zn) in Riverbank Soil by Electrokinetic-Assisted Phytoremediation using XRF and SEM/EDX

机译:XRF和SEM / EDX电动辅助植物综合植物河岸土壤重金属(Ni,Cu,Zn)的元素组成研究

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Electrokinetic (EK)-assisted phytoremediation is one of the methods that have a big potential in enhancing the ability of plant uptake in soils remediation process. This research was conducted to investigate the difference in elemental composition concentration of riverbank soil and the change of pH between pre- and post-phytoremediation under the following condition: 1) control or as-receive sample; 2) Dieffenbachia spp plant with EK system (a pair of EK electrodes connected to a direct current (DC) power supply). After the electrodes were connected to a magnitude of 6V/cm~(-1) electric field for 4 hours/day, the soil and plant samples were analyzed using and X-ray Fluorescence Spectrometer (XRF) and Scanning Electron Microscope / Energy Dispersive X-ray Spectroscopy (SEM/EDX). The SEM/EDX analysis showed that concentration of elemental composition (Ni, Cu and Zn) in post-phytoremediation plant powder samples had increase while elemental concentrations in the post-phytoremediation soil samples were decreased. XRF analysis presented a variation in soil elemental composition concentration from anode to cathode where the concentration near anode region increased while decreased near the cathode region. A significant changes in soil pH were obtained where the soil pH increase in cathode region while decrease in anode region. The results reveal that the assistance of EK in phytoremediation process has increase the efficiency of plant uptake.
机译:电动(ek)型植物植物化是具有巨大潜力的方法之一,即提高土壤修复过程中的植物摄取能力。进行该研究以研究河岸土壤的元素组成浓度的差异及以下条件下的植物前和后期后的pH值:1)对照或接受样品; 2)DieffenBachia SPP植物与EK系统(连接到直流电流(DC)电源的一对EK电源)。在电极连接到6V / cm〜(-1)电场的幅度4小时之后,使用X射线荧光光谱仪(XRF)和扫描电子显微镜/能量分散X分析土壤和植物样品-REAY光谱学(SEM / EDX)。 SEM / EDX分析表明,植物后植物粉末样品中的元素组合物(Ni,Cu和Zn)的浓度增加,而植物后疫灭土壤样品中的元素浓度降低。 XRF分析提出了从阴极附近的阳极浓度增加的阴极的土壤元素组合物浓度的变化,同时在阴极区域附近降低。获得土壤pH的显着变化,其中阴极区域的土壤pH增加而导致阳极区的降低。结果表明,EK在植物修复过程中的辅助增加了植物摄取的效率。

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