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Treatment of high-salinity reverse osmosis concentrate by electrochemical oxidation on BDD and DSA electrodes

机译:BDD和DSA电极上的电化学氧化处理高盐度反渗透浓缩液

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摘要

The present work revealed an electrochemical oxidation approach for the treatment of a high-salinity reverse osmosis (RO) concentrate on boron doped diamond (BDD) and two titanium based dimensionally stable anodes (DSAs), Ti/IrO2-Ta2O5 and Ti/IrO2-RuO2. The electrochemical characterization, morphological characterization, COD removal and energy consumption of the three electrodes were comparably studied, and the effects of current density and initial pH on the treatment performance were investigated. Both direct oxidation and indirect oxidation by active chlorines played a role on the treatment of RO concentrate, but the contribution was different on three anodes. A highest COD removal was observed on BDD electrode at the same current density, and a least energy consumption was obtained on Ti/IrO2-RuO2 electrode, while only partial COD removal was achieved on Ti/IrO2-Ta2O5 electrode. The feasibility of the electrochemical treatment of RO concentrate was validated, and the Ti/IrO2-RuO2 electrode showed the greatest potential for industrial application owing to its comparably large removal efficiency, low energy consumption and suitability in wide pH ranges.
机译:本工作揭示了一种电化学氧化方法,用于处理掺硼金刚石(BDD)和两个钛基尺寸稳定阳极(DSAs)的高盐度反渗透(RO)精矿,Ti / IrO2-Ta2O5和Ti / IrO2- RuO2。比较了三个电极的电化学表征,形态表征,COD去除和能量消耗,并研究了电流密度和初始pH对处理性能的影响。活性氯的直接氧化和间接氧化都对RO精矿的处理起作用,但在三个阳极上的贡献却不同。在相同的电流密度下,在BDD电极上观察到最高的COD去除,而在Ti / IrO2-RuO2电极上获得的能量消耗最小,而在Ti / IrO2-Ta2O5电极上仅实现了部分COD去除。验证了RO精矿电化学处理的可行性,并且Ti / IrO2-RuO2电极具有较高的去除效率,较低的能耗以及在宽pH范围内的适用性,显示出工业应用的最大潜力。

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