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Applicability Of Boron-doped Diamond Electrode To The Degradation Of Chloride-mediated And Chloride-free Wastewaters

机译:掺硼金刚石电极在降解氯介导和无氯废水中的适用性

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The electrochemical degradation of chloride-mediated and chloride-free dye wastewaters was investigated on a boron-doped diamond (BDD) electrode in comparison with that on a dimensionally stable anode (DSA), and the applicability of BDD electrode to the degradation of these two kinds of wastewaters was explored. In chloride-free wastewater, the electrochemical degradation efficiency of dye on BDD electrode was much higher than that on DSA, with a chemical oxygen demand (COD) removal of 100% and 26% for BDD and DSA, respectively. In chloride-mediated dye wastewater, COD removal was faster than that in chloride-free wastewater on both BDD and DSA electrodes with COD removal efficiencies higher than 95%, whereas the rate of COD removal on DSA was faster than that on BDD electrode. The investigation indicates that DSA is more suitable than BDD electrode in degradation of originally chloride contained dye wastewaters for the sake of energy and time saving. However, for chloride-free dye wastewaters, with the aim of environmental protection, BDD electrode is more appropriate to realize complete mineralization. At the same time, the secondary pollution can be avoided.
机译:研究了掺硼金刚石(BDD)电极与尺寸稳定阳极(DSA)上的氯化物介导的无氯染料废水的电化学降解,以及BDD电极对这两种降解的适用性探索了各种废水。在无氯废水中,BDD电极上染料的电化学降解效率远高于DSA,BDD和DSA上化学需氧量(COD)的去除率分别为100%和26%。在氯离子介导的染料废水中,BDD和DSA电极上的COD去除速度均快于无氯废水,其COD去除效率高于95%,而DSA上的COD去除速度要快于BDD电极。研究表明,出于节省能源和时间的考虑,DSA比BDD电极更适合降解原来含氯的染料废水。但是,对于无氯染料废水,以环境保护为目的,BDD电极更适合实现完全矿化。同时,可以避免二次污染。

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