首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Application Of Advanced Oxidation Processes And Electrooxidation For The Remediation Of River Sediments Contaminated By Pahs
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Application Of Advanced Oxidation Processes And Electrooxidation For The Remediation Of River Sediments Contaminated By Pahs

机译:先进的氧化工艺和电氧化技术在Pahs污染的河道底泥修复中的应用

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This study was performed to assess and compare the effectiveness of electrochemical oxidation and chemical oxidation with hydrogen peroxide and modified Fenton's reagent for the remediation of sorbed polycyclic aromatic hydrocarbons (PAHs) in river sediments. The initial total PAH concentration in the sediment samples ranged from about 1032.8 mg/kg_(DW) to 2816.4 mg/kg_(DW) and a 90% degradation was required to meet the remediation goals. Several tests were performed at laboratory scale, the removal efficiency being evaluated in terms of contaminant removal and of ecotoxicity. The chemical oxidation tests resulted in about 95% total PAH degradation, when a sufficient oxidant dose was used (i.e. about 50-100 mmol of H_2O_2 per 30 g sediment samples), but proved to increase the ecotoxitity of the treated sediments significantly. Electrooxidation showed degradation efficiencies above 90%, with a negligible residual toxic effect, after 4-week treatments at constant voltage gradients of 1-2 V/cm. This technique seems to be effectively applicable either for the in situ or for the ex situ recovery of the target sediments.
机译:进行这项研究的目的是评估和比较过氧化氢和改良的Fenton试剂对河流沉积物中吸附的多环芳烃(PAHs)的电化学氧化和化学氧化的有效性。沉积物样品中最初的总PAH浓度在约1032.8 mg / kg_(DW)到2816.4 mg / kg_(DW)的范围内,需要90%的降解才能达到修复目标。在实验室规模上进行了几次测试,根据污染物的去除和生态毒性评估了去除效率。当使用足够的氧化剂剂量(即每30 g沉积物样品约50-100 mmol H_2O_2)时,化学氧化试验导致PAH总量降低约95%,但事实证明,该处理后的沉积物具有显着的生态毒性。在1-2 V / cm的恒定电压梯度下进行4周的处理后,电氧化显示出90%以上的降解效率,残留的毒性作用可忽略不计。该技术似乎可以有效地应用于目标沉积物的原位或异位回收。

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