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Removal of hazardous azocoumarin dye from aqueous solutions using activated carbon prepared from rice straw

机译:使用稻草制备的活性炭去除水溶液中的有害偶氮香豆素染料

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Activated carbon made from rice straw (ACRS) was tested as a low-cost adsorbent for the removal of hazardous azocoumarin dye from aqueous solution in batch adsorption procedure. The effect of different variables in the batch method as a function of solution pH, contact time, concentration of adsorbate, adsorbent dosage, and temperature were investigated and optimal experimental conditions were ascertained. More than 85% removal efficiency was obtained within 65min at adsorbent dose of 0.5g for initial dye concentration of 100mgL(-1) at pH 3. The Brunauer-Emmett-Teller surface area and Barrett-Joyner-Halenda pore volume were calculated and found to be 67.4m(2)g(-1) and 0.134cm(3)g(-1), respectively. The point of zero charge (pH(PZC)) of ACRS was determined and found to be 7. The experimental equilibrium data were tested by the isotherm models namely, Langmuir and Freundlich adsorption and the isotherm constants were determined. The results revealed that Freundlich isotherm fit the experimental results well. The kinetic data obtained with different initial concentration and temperature were analyzed using a pseudo-first-order and pseudo-second-order equations. The pseudo-second-order sorption kinetics was the best model and indicates that physorption controls the process. Thermodynamic parameters, such as Gibbs free energy, enthalpy, and entropy of adsorption of the dye-rice straw fly ash systems were evaluated and it was found that the reaction was spontaneous and exothermic in nature.
机译:测试了稻草制成的活性炭(ACRS)作为一种低成本吸附剂,用于分批吸附过程中从水溶液中去除有害的偶氮香豆素染料。研究了分批方法中不同变量随溶液pH,接触时间,吸附物浓度,吸附剂剂量和温度的影响,并确定了最佳实验条件。在pH为3的100mgL(-1)的初始染料浓度下,在0.5g吸附剂量下,在65分钟内可获得超过85%的去除效率。计算并发现了Brunauer-Emmett-Teller表面积和Barrett-Joyner-Halenda孔体积分别为67.4m(2)g(-1)和0.134cm(3)g(-1)。确定了ACRS的零电荷点(pH(PZC)),发现其为7。用等温线模型Langmuir和Freundlich吸附测试了实验的平衡数据,并确定了等温线常数。结果表明,Freundlich等温线很好地符合了实验结果。使用伪一级方程和伪二级方程分析了在不同初始浓度和温度下获得的动力学数据。拟二级吸附动力学是最好的模型,表明吸附是控制吸附的过程。对染料-稻草粉煤灰系统的热力学参数,如吉布斯自由能,焓和吸附熵进行了评估,发现该反应是自然发生的并且是放热的。

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