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Highlighting the cathodic contribution of an electrooxidation pretreatment study on waste activated sludge disintegration

机译:突出电氧化预处理研究对废物活性污泥崩解的阴极贡献

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In this study, the effect of the cathodic contribution in the performance of electro-oxidation (EO) pretreatment of waste activated sludge (WAS) was investigated using different electrode pairs, namely titanium dioxide (TiO_2)/TiO_2, TiO_2/TiO_2 coated Platine (Pt) and TiO_2/TiO_2 coated ruthenium dioxide (RuO_2) and main operational parameters such as dosage of electrolyte solution (Na_2SO_4), initial pH, applied current, and electrolysis time were optimized. Disintegration degree (DD) in terms of soluble chemical oxygen demand (CODs) increased with an increase in initial pH of WAS, applied current, and electrolysis time for all pairs of electrodes. Under the optimized conditions (5 g/L Na_2SO_4, pH 10, 3 A of current, and 100 min of e time), a maximum DD value of 23.93 and 14.26% was obtained using TiO_2/RuO_2 and Pt/TiO_2 electrodes, respectively. However, lower DD_(COD) value of 12.85% was obtained for TiO_2/TiO_2 electrodes at similar conditions except for 4 A current. Soluble extracellular polymeric substances analysis and their protein and polysaccharide concentrations confirmed the disintegration of WAS floes by the EO process. The operational cost (OC) of applied processes was also calculated and OC values were found in the following order: TiO_2/RuO_2 (46.54 €/m~3) > TiO_2/TiO_2 (41.77 €/m~3) > TiO_2/Pt (32.99.54 €/m~3) from the point of energy consumption.
机译:在这项研究中,使用不同的电极对研究了阴极贡献在电氧化(EO)预处理废物活性污泥(A)的预处理,即二氧化钛(TiO_2)/ TiO_2,TiO_2 / TiO_2涂布铂( PT)和TiO_2 / TiO_2涂覆的二氧化钌(RuO_2)和主要操作参数,例如电解质溶液(Na_2SO_4),初始pH,施加电流和电解时间的剂量。在可溶性化学需氧量(CODS)方面崩解度(DD)随着初始pH的初始pH,施加电流和所有对电极的电解时间而增加。在优化条件下(5g / L Na_2SO_4,pH10,3a的电流和100分钟),使用TiO_2 / Ruo_2和Pt / TiO_2电极获得最大DD值为23.93和14.26%。然而,除了4个电流之外,对于类似条件的TiO_2 / TiO_2电极,获得了12.85%的DD_(COD)值。可溶性细胞外聚合物物质分析及其蛋白质和多糖浓度证实了EO过程的絮凝物的崩解。还计算了应用过程的操作成本(OC),并按以下顺序发现OC值:TiO_2 / RUO_2(46.54€/ m〜3)> TiO_2 / TiO_2(41.77€/ m〜3)> TiO_2 / PT(从能量消耗点32.99.54€/ m〜3)。

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