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Effects of tidal operation on pilot-scale horizontal subsurface flow constructed wetland treating sulfate rich wastewater contaminated by chlorinated hydrocarbons

机译:潮汐运行对氯化烃污染硫酸盐富含废水的潮汐尺度水平地下流动的影响

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Three different flow regimes were carried out in a pilot-scale horizontal subsurface flow constructed wetland-treating sulfate rich wastewater contaminated with monochlorobenzene (MCB) and perchloroethene (PCE). The three regimes were continuous flow, 7-day cycle discontinuous flow, and 2.5-day cycle discontinuous flow. The results show that intensifying the tidal regime (2.5-day cycle) significantly enhanced MCB removal before 2 m from the inlet and increasing PCE removal efficiency at 0.5 m. The PCE dechlorination process was promoted with tidal operation, especially under the 2.5-day cycle regime, with significant increases of cis-1,2- dichloroethenes (DCEs), vinyl chloride (VC), and ethene, but trans-1,2-DCE was significantly decreased after tidal operation. Due to the high sulfate concentration in the influent, sulfide was observed in pore water up to 20 and 23 mg L-1 under continuous flow and 7-day cycle regime, respectively. However, sulfide concentrations decreased to less than 4 mg L-1 under intensified tidal operation (2.5-day cycle). The increase of oxygen concentration in pore water through intensified tidal operation resulted in better MCB removal performance and the successful inhibition of sulfate reduction. In conclusion, intensifying tidal operation is an effective approach for the treatment of chlorinated hydrocarbons and inhibiting sulfide accumulation in horizontal subsurface flow constructed wetland.
机译:三种不同的流动制度是在先导级水平地下流动中进行的湿地处理硫酸盐含有二氯苯(MCB)和全氯乙烯(PCE)的耐污染的湿地处理硫酸盐。三个制度是连续流动,7天循环不连续流动和2.5天的循环不连续流量。结果表明,加强潮汐制度(2.5天循环)显着增强了从入口2米之前的MCB去除,并增加了0.5米的PCE去除效率。 PCE脱氯加入潮汐运算促进,特别是在2.5天的循环状态下,随着CIS-1,2-二氯甲烷(DCE),氯乙烯(VC)和乙烯的显着增加,但Trans-1,2-在潮汐运行后,DCE显着降低。由于在流动性流入中的硫酸盐浓度高,在连续流动和7天循环状态下,在孔隙水中观察到孔隙水中的硫化物。然而,在增强的潮汐操作(2.5天循环)下,硫化物浓度降低至小于4mg L-1。通过强化潮汐操作的孔隙水中氧浓度的增加导致了MCB去除性能的更好,并且成功抑制硫酸盐。总之,增强潮汐作用是治疗氯化烃的有效方法,抑制水平地下流动构建湿地的硫化物积累。

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