Effect of Salinity and PH on the Industrial Effluent Treatment by Activated Carbon: Modeling of the Kinetic Adsorption and Equilibrium Isotherms

E. F. Mohamed, G. Awad, C. Andriantsiferana, H. Delmas
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引用次数: 1

Abstract

In recent years, interest has been focused on the removal of phenols from contaminated by using a variety of purification techniques. Adsorption of bio-industrial effluent on commercial activated carbon S23 was investigated at ambient conditions. In this wok, phenol and p-hydroxyl benzoic acid (PHBA) was studied as an example of the organic compounds present in the industrial effluent. The effect of temperature, pH, and the presence of inorganic salt NaCl on the pollutants adsorption were studied to give further comprehension of the optimal conditions of the organic compounds adsorption onto activated carbon. It was noted that the increase in temperature resulted in a decrease in phenols adsorption capacity by S23. Lower phenol adsorption was also observed at the solution pH 2 and 10, whereas, favourable adsorption was reached at neutral solution pH, and the coexisting inorganic salt NaCl exerts slightly positive effect on the adsorption process. The isotherms obtained at pH 2.2 and 3.5 (non-buffered solution) are very similar and showed a higher adsorption capacity compared with that obtained at pH 7 and 10 for PHBA which is more adsorbable than phenol. The kinetic of the adsorption processes can be better represented by the pseudo-second order. The results showed also that the total organic carbon (TOC) of the industrial effluent reduced for about 20 %. Freundlich, Langmuir and Jovanovic adsorption models were used for mathematical description of adsorption equilibrium of phenols. The results showed that the experimental data fitted very well to the Freundlich and Jovanovic models.
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盐度和PH对活性炭处理工业废水的影响:动力学吸附和平衡等温线的建模
近年来,利用各种净化技术去除污染物中的酚类物质已成为人们关注的焦点。在环境条件下,研究了商用活性炭S23对生物工业废水的吸附性能。本工作以苯酚和对羟基苯甲酸(PHBA)为例,研究了工业废水中存在的有机化合物。研究了温度、pH和无机盐NaCl的存在对活性炭吸附污染物的影响,进一步了解了活性炭吸附有机物的最佳条件。结果表明,温度升高导致S23对苯酚的吸附能力下降。溶液pH为2和10时,苯酚吸附较低,而在中性溶液pH下,苯酚吸附较好,共存的无机盐NaCl对吸附过程有轻微的积极作用。PHBA在ph2.2和3.5(非缓冲溶液)下的等温线非常相似,与ph7和ph10下的等温线相比,PHBA的吸附能力更高,PHBA比苯酚更容易吸附。吸附过程的动力学可以用拟二级方程更好地表示。结果还表明,工业废水的总有机碳(TOC)降低了约20%。采用Freundlich、Langmuir和Jovanovic吸附模型对苯酚的吸附平衡进行了数学描述。结果表明,实验数据与Freundlich和Jovanovic模型拟合得很好。
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