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首页> 外文期刊>Radiation Protection Dosimetry >THE OPTIMISATION OF ELECTROKINETIC REMEDIATION FOR HEAVY METALS AND RADIOACTIVITY CONTAMINATION ON HOLYROOD-LUNAS SOIL (ACRISOL SPECIES) IN SRI GADING INDUSTRIAL AREA, BATU PAHAT, JOHOR, MALAYSIA
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THE OPTIMISATION OF ELECTROKINETIC REMEDIATION FOR HEAVY METALS AND RADIOACTIVITY CONTAMINATION ON HOLYROOD-LUNAS SOIL (ACRISOL SPECIES) IN SRI GADING INDUSTRIAL AREA, BATU PAHAT, JOHOR, MALAYSIA

机译:马来西亚柔佛州巴都巴伊SRI Gading工业区重金属的电子动力学优化和放射性-LUNAS土壤(手性物种)的放射性污染

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摘要

The optimisation of electrokinetic remediation of an alluvial soil, locally named as Holyrood-Lunas from Sri Gading Industrial Area, Batu Pahat, Johor, Malaysia, had been conducted in this research. This particular soil was chosen due to its relatively high level of background radiation in a range between 139.2 and 539.4 nGy h~(-1). As the background radiation is correlated to the amount of parent nuclides, ~(238)U and ~(232)Th, hence, a remediation technique, such as electrokinetic, is very useful in reducing these particular concentrations of heavy metal and radionuclides in soils. Several series of electrokinetics experiments were performed in laboratory scale in order to study the influence of certain electrokinetic parameters in soil. The concentration before (pre-electrokinetic) and after the experiment (post-electrokinetic) was determined via X-ray fluorescence (XRF) analysis technique. The best electrokinetic parameter that contributed to the highest achievable concentration removal of heavy metals and radionuclides on each experimental series was incorporated into a final electrokinetic experiment. Here, High Pure Germanium (HPGe) was used for radioactivity elemental analysis. The XRF results suggested that the most optimised electrokinetic parameters for Cr, Ni, Zn, As, Pb, Th and U were 3.0 h, 90 volts, 22.0 cm, plate-shaped electrode by 8 × 8 cm and in 1-D configuration order whereas the selected optimised electrokinetic parameters gave very low reduction of ~(238)U and ~(232)Th at 0.23 ± 2.64 and 2.74 ± 23.78 ppm, respectively.
机译:在这项研究中,对冲积土壤的电动修复进行了优化,该土壤从马来西亚柔佛州tu株巴辖的Sri Gading工业区本地命名为Holyrood-Lunas。选择这种特殊的土壤是因为其背景辐射水平较高,范围在139.2至539.4 nGy h〜(-1)之间。由于背景辐射与母核素的量相关,〜(238)U和〜(232)Th,因此,诸如电动的修复技术对于减少土壤中这些特定浓度的重金属和放射性核素非常有用。为了研究土壤中某些电动参数的影响,在实验室规模内进行了一系列的电动实验。通过X射线荧光(XRF)分析技术确定实验前(电动前)和实验后(电动后)的浓度。将每个实验系列中可实现的最高重金属和放射性核素浓度去除率最高的最佳电动参数纳入最终的电动实验。此处,高纯锗(HPGe)用于放射性元素分析。 XRF结果表明,最优化的Cr,Ni,Zn,As,Pb,Th和U的电动参数为3.0 h,90伏,22.0 cm,8×8 cm的板状电极,且呈一维排列而所选的最佳电动参数分别在0.23±2.64和2.74±23.78 ppm时极低的〜(238)U和〜(232)Th降低。

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  • 来源
    《Radiation Protection Dosimetry 》 |2015年第3期| 160-164| 共5页
  • 作者

    S. Mohamed Johar; Z. Embong;

  • 作者单位

    Faculty of Science, Technology and Human Development, Universiti Tun Hussein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia;

    Faculty of Science, Technology and Human Development, Universiti Tun Hussein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia,Research Center for Soft Soil (RECESS), Faculty of Civil and Environmental Engineering, Universiti Tun Hussein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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