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Treatability of a Simulated Spent Disperse Dyebath by Chemical and Electrochemical Processes

机译:用化学和电化学方法处理模拟废分散染料的可处理性

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Electrocoagulation (EC) using aluminum (Al) and stainless steel (SS) electrodes was investigated for color and chemical oxygen demand (COD) removal from a simulated spent disperse dyebath. EC was optimized for electrolyte (NaCl) concentration (750–3000 mg/L), current density (9–87 mA/cm2), and initial pH (3.5–11.5). Optimum EC conditions were established as 2,500 mg/L NaCl, pHo = 7.0 and 44 mA/cm2 for 100% color and 58% COD removals using Al electrodes (total treatment time = 30 min), whereas 100% color and 45% COD removals were obtained for 2,000 mg/L NaCl, pHo = 7.3 and a current density of 44 mA/cm2 when SS electrodes were employed for a 60-min treatment. EC results were compared with color and COD removals achieved via coagulation with alum, ferrous sulfate, and ferric chloride at varying doses (200–2,000 mg/L). Alum was more effective in color (100%) and COD (64%) removals than ferrous sulfate and ferric chloride. The amount of sludge formed during EC using SS electrodes was approximately 10 times less than the sludge produced during EC with Al electrodes, whereas electrical energy requirements to achieve 100% color and 50% COD removals were 10 and 30 times higher, respectively, when SS electrodes were employed for EC.
机译:研究了使用铝(Al)和不锈钢(SS)电极的电凝(EC)从模拟废分散染浴中去除颜色和化学需氧量(COD)的情况。 EC针对电解质(NaCl)浓度(750–3000 mg / L),电流密度(9–87 mA / cm2)和初始pH(3.5–11.5)进行了优化。使用Al电极将100%的颜色和58%的COD去除(总处理时间= 30分钟)时,最佳EC条件设置为2500 mg / L NaCl,pHo = 7.0和44 mA / cm2(总处理时间= 30分钟),而100%的颜色和45%的COD去除当使用SS电极进行60分钟处理时,对于2,000 mg / L NaCl,pHo = 7.3和44 mA / cm2的电流密度,获得了1,2-三氯乙烷。将EC结果与通过不同剂量(200–2,000 mg / L)的明矾,硫酸亚铁和氯化铁凝结获得的颜色和COD去除进行了比较。与硫酸亚铁和氯化铁相比,明矾在颜色(100%)和COD(64%)去除方面更有效。使用SS电极在EC期间形成的污泥量大约是使用Al电极在EC期间产生的污泥量,而当SS达到100%色度和50%COD去除时所需的电能分别分别高10倍和30倍。电极用于EC。

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