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Removal of pollutants of coking wastewater by adsorption

机译:吸附去除焦化废水中的污染物。

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Electrocoagulation treated coking wastewater was subjected to further treatment using adsorption in batch mode. A commercial powder activated carbon (PAC) was used as an adsorbent. Effects of pH, adsorbent dose, phenol concentration, adsorption temperature and contact time were studied on removal of phenol and chemical oxygen demand (COD). First- and second-order kinetics models were tested, conforming second-order to fitted well. Adsorption was found to decrease slightly with increase in temperature. Sorption performances were also evaluated using Freundlich, Langmuir and Temkin isotherm models. All the models were fitted well with similar accuracy (maximum deviation 5%). The thermodynamic study shows the process to be exothermic. Adsorption at best condition: pH = 6, PAC load = 3 kg/m(3) and contact time = 4 h; phenol, COD and ammonia N removal were found to 99%, 33.5% and 91%, respectively, from 272 mg/dm(3) phenol, 793 mg/dm(3) COD and 65.9 mg/dm(3) ammonia N. Pareto analysis of variance (ANOVA) showed a high coefficient of determination values for phenol removal (R-2 = 0.9766) between the experimental values and predicted values in a second-order regression model. Treated effluent can be recycled for quenching of hot coke of coke oven.
机译:电凝处理的焦化废水采用分批吸附方式进行进一步处理。使用市售粉末活性炭(PAC)作为吸附剂。研究了pH,吸附剂量,苯酚浓度,吸附温度和接触时间对苯酚去除量和化学需氧量(COD)的影响。测试了一阶和二阶动力学模型,使二阶动力学模型拟合得很好。发现吸附随着温度的升高而略有降低。还使用Freundlich,Langmuir和Temkin等温模型评估了吸附性能。所有模型都以相似的精度(最大偏差5%)很好地拟合。热力学研究表明该过程是放热的。最佳条件下的吸附:pH = 6,PAC负载= 3 kg / m(3),接触时间= 4 h;分别从272 mg / dm(3)苯酚,793 mg / dm(3)COD和65.9 mg / dm(3)氨氮中分别去除99%,33.5%和91%的苯酚,COD和91%氨氮。帕累托方差分析(ANOVA)显示,二阶回归模型中的实验值和预测值之间的苯酚去除率测定值系数高(R-2 = 0.9766)。可以将处理后的流出物再循环以用于焦炉的热焦炭淬火。

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