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首页> 外文期刊>Journal of Environmental Science and Technology >Influence of Some Operating Parameters on Electro-Oxidation of Phenol using Boron Doped Diamond Anode and Graphite Cathode
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Influence of Some Operating Parameters on Electro-Oxidation of Phenol using Boron Doped Diamond Anode and Graphite Cathode

机译:硼掺杂金刚石阳极和石墨阴极对某些操作参数的影响对苯酚的电氧化

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The influences of current density, initial pH, initial phenol concentration and Na2SO4 electrolyte dosage on electro-oxidation of 100-1000 mg L-1 phenol using Boron-doped Diamond (BDD) anode and graphite cathode were investigated. The evolutions of phenol and its oxidation byproducts were monitored with HPLC and GC-MS instruments. Removal efficiencies of phenol, Total Organic Carbon (TOC) and Chemical Oxygen Demand (COD) were found to be mainly influenced by initial pH and initial phenol concentration with current density and Na2SO4 dosage having less significant effects. Complete oxidation of phenol was achievable under acidic and neutral pH regardless of initial phenol concentration; while under basic pH, accumulation of intermediary byproducts severely hindered the oxidation of 100 mg L-1 phenol. Effective electro-oxidation of phenol was kinetically controlled process by direct oxidation process mediated by the electro-generated hydroxyl radicals (OH?) produced at the BDD anode surface. The evolutions of TOC, COD and phenol oxidation byproducts suggests initial pH and initial phenol concentration dependant pathways from which effective phenol oxidation been initiated by speciation molecules and subsequent generation of aromatic intermediates which were further converted to aliphatic acids. The final step in the pathway involved the destruction of the aliphatic acids to CO2.
机译:电流密度,初始pH,初始苯酚浓度和Na 2 SO 4 电解质用量对100-1000 mg L -1的电氧化的影响研究了硼掺杂金刚石(BDD)阳极和石墨阴极的SUP>苯酚。用HPLC和GC-MS仪器监测苯酚及其氧化副产物的演变。发现苯酚,总有机碳(TOC)和化学需氧量(COD)的去除效率主要受初始pH和初始苯酚浓度以及电流密度和Na 2 SO 4 < / SUB>剂量效果不明显。无论初始苯酚浓度如何,在酸性和中性pH下均可实现苯酚的完全氧化。在碱性pH条件下,中间副产物的积累严重阻碍了100 mg L -1 苯酚的氧化。苯酚的有效电氧化是由在BDD阳极表面产生的电生成的羟基自由基(OH )介导的直接氧化过程动力学控制的过程。 TOC,COD和苯酚氧化副产物的演变表明,初始pH和初始苯酚浓度依赖性途径,物种分子开始有效的苯酚氧化,随后生成芳族中间体,然后进一步转化为脂肪族酸。该途径的最后一步涉及将脂肪酸破坏为CO 2

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