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Preparation, Characterization of Coal Ash Adsorbent and Orthogonal Experimental Rsearch on Treating Printing and Dyeing Wastewater

机译:粉煤灰吸附剂和正交实验研究的制备,对染色废水的正交试验研究

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Using high temperature activated sodium flying ash and carboxymethyl chitosan as raw material to prepare carboxymethylchitosan wrapping fly-ash adsorbent (CWF), combined with iron-carbon micro-electrolysis treatment of simulated and actual printing and dyeing wastewater. The conditions for obtaining are from the literature: the best condition for CWF to treat simulated printing and dyeing wastewater pretreated with iron-carbon micro-electrolysis is that the mixing time is 10min, the resting time is 30 min, pH=6, and the adsorbent dosage is 0.75 g/L. The results showed that COD removal efficiency and decoloration rate were above 97 %, and turbidity removal rate was over 90 %. The optimum dyeing conditions were used to treat the dyeing wastewater. The decolorization rate was 97.30 %, the removal efficiency of COD was 92.44 %, and the turbidity removal rate was 90.37 %.
机译:使用高温活化钠飞灰和羧甲基壳聚糖作为原料,制备羧甲基苯胺包装粉煤灰吸附剂(CWF),结合铁碳微电解处理模拟和实际印染废水。 从文献中获得的条件:CWF治疗模拟印刷和染色废水的最佳条件用铁 - 碳微电解进行预处理是混合时间为10min,静止时间为30分钟,pH = 6,以及 吸附剂剂量为0.75克/升。 结果表明,COD去除效率和脱色率高于97%以上,浊度去除率超过90%。 最佳染色条件用于治疗染色废水。 脱色率为97.30%,鳕鱼的去除效率为92.44%,浊度去除率为90.37%。

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