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Electrochemical oxidation of table olive processing wastewater over boron-doped diamond electrodes: Treatment optimization by factorial design

机译:掺硼金刚石电极上食用橄榄加工废水的电化学氧化:因子设计优化处理

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摘要

The electrochemical treatment of an effluent from edible olive processing over boron-doped diamond electrodes was investigated. The effect of operating conditions, such as initial organic loading (from 1340 to 5370 mg/L chemical oxygen demand (COD)), reaction time (from 30 to 120 min), current intensity (from 5 to 14A), initial pH (from 3 to 7) and the use of 500 mg/L H_2O_2 as an additional oxidant, on treatment efficiency was assessed implementing a factorial experimental design. Of the five parameters tested, the first three had a considerable effect on COD and total phenols removal, while the other two were statistically insignificant. In most cases, high levels of phenols degradation and decolorization were achieved followed by moderate mineralization. The analysis was repeated at more intense conditions, i.e., initial COD up to 10,000 mg/L, reaction times up to 240 min and current up to 30 A; at this level, the effect of treatment time and applied current was far more important than the starting COD concentration. Treatment for 14 h at optimal conditions (30 A and an initial loading of about 10,000 mg/L) led to 73% COD removal with a zero-order kinetic constant of 8.5mg/(L min) and an energy consumption efficiency of 16.3 gCOD/(m~3Ah).
机译:研究了在掺硼金刚石电极上食用橄榄加工产生的废水的电化学处理。操作条件的影响,例如初始有机负荷(从1340至5370 mg / L化学需氧量(COD)),反应时间(从30至120分钟),电流强度(从5至14A),初始pH(从参照图3至7)以及使用析因实验设计评估了使用500 mg / L H_2O_2作为附加氧化剂对处理效率的影响。在所测试的五个参数中,前三个参数对COD和总酚的去除有相当大的影响,而其他两个参数在统计学上是无关紧要的。在大多数情况下,实现了高水平的苯酚降解和脱色,随后发生了中等矿化作用。在更严格的条件下重复分析,即初始COD最高10,000 mg / L,反应时间最高240分钟,电流最高30 A;在这个水平上,处理时间和施加电流的影响远比起始COD浓度重要。在最佳条件下(30 A,初始负荷约10,000 mg / L)处理14 h导致了73%的COD去除,零级动力学常数为8.5mg /(L min),能耗效率为16.3 gCOD /(m〜3Ah)。

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