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首页> 外文期刊>Ecotoxicology and Environmental Safety >Influence of direct and alternating current electric fields on efficiency promotion and leaching risk alleviation of chelator assisted phytoremediation
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Influence of direct and alternating current electric fields on efficiency promotion and leaching risk alleviation of chelator assisted phytoremediation

机译:直流和交流电场对螯合剂辅助植物修复的效率提高和浸出风险减轻的影响

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摘要

Direct and alternating current electric fields with various voltages were used to improve the decontamination efficiency of chelator assisted phytoremediation for multi-metal polluted soil. The alleviation effect of electric field on leaching risk caused by chelator application during phytoremediation process was also evaluated. Biomass yield, pollutant uptake and metal leaching retardation under alternating current (AC) and direct current (DC) electric fields were compared. The biomass yield of Eucalyptus globulus under AC fields with various voltages (2, 4 and 10 V) were 3.91, 4.16 and 3.67 kg, respectively, significantly higher than the chelator treatment without electric field (2.71 kg). Besides growth stimulation, AC fields increased the metal concentrations of plant tissues especially in aerial parts manifested by the raised translocation factor of different metals. Direct current electric fields with low and moderate voltages increased the biomass production of the species to 3.45 and 3.12 kg, respectively, while high voltage on the contrary suppressed the growth of the plants (2.66 kg). Under DC fields, metal concentrations elevated obviously with increasing voltages and the metal translocation factors were similar under all voltages. Metal extraction per plant achieved the maximum value under moderate voltage due to the greatest biomass production. DC field with high voltage (10 V) decreased the volume of leachate from the chelator treatment without electric field from 1224 to 56 mL, while the leachate gathered from AC field treatments raised from 512 to 670 mL. DC field can retard the downward movement of metals caused by chelator application more effectively relative to AC field due to the constant water flow and electroosmosis direction. Alternating current field had more promotive effect on chelator assisted phytoremediation efficiency than DC field illustrated by more metal accumulation in the species. However, with the consideration of leaching risk, DC field with moderate voltage was the optimal supplementary technique for phytoremediation.
机译:为了改善螯合剂辅助植物修复多金属污染土壤的效率,使用了各种电压的直流和交流电场。还评估了电场对植物修复过程中螯合剂施用引起的浸出风险的缓解作用。比较了交流(AC)和直流(DC)电场下的生物量产量,污染物吸收和金属浸出延迟。在不同电压(2、4和10 V)的交流电场下,桉树的生物量产量分别为3.91、4.16和3.67 kg,显着高于无电场的螯合剂处理(2.71 kg)。除生长刺激外,交流场还增加了植物组织中的金属浓度,尤其是在空中部分,这是由不同金属的易位因子升高所表现的。具有低电压和中等电压的直流电场分别使该物种的生物量产生增加到3.45和3.12 kg,而相反,高电压抑制了植物的生长(2.66 kg)。在直流电场下,金属浓度随电压的升高而明显升高,并且在所有电压下金属的迁移系数均相似。由于最大的生物量生产,每棵植物的金属提取量在中等电压下达到了最大值。高压(10 V)的直流场将没有电场的螯合剂处理的渗滤液体积从1224减少到56 mL,而通过交流场处理收集的渗滤液从512 mL增加到670 mL。由于恒定的水流和电渗方向,相对于交流场,直流场可以更有效地抑制由螯合剂施加导致的金属向下运动。交流电场对螯合剂辅助植物修复效率的促进作用比直流电场对物种的更多金属积累有更大的促进作用。然而,考虑到浸出风险,中等电压的直流电场是植物修复的最佳补充技术。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2018年第3期|241-247|共7页
  • 作者单位

    Yangtze Univ, Coll Resources & Environm, 111 Univ Rd, Wuhan, Hubei, Peoples R China;

    Yangtze Univ, Coll Resources & Environm, 111 Univ Rd, Wuhan, Hubei, Peoples R China;

    China Univ Geosci, 388 Lumo Rd, Wuhan 430074, Hubei, Peoples R China;

    China Univ Geosci, 388 Lumo Rd, Wuhan 430074, Hubei, Peoples R China;

    Univ Melbourne, Grattan St Parkville, Melbourne, Vic 3010, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrokinetic remediation; Phytoremediation; Chelator; Leaching risk; Heavy metal;

    机译:电动修复;植物修复;螯合剂;浸出风险;重金属;

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