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Adsorption/desorption of BTEX on activated carbon prepared from rice husk

机译:稻壳制得的活性炭对BTEX的吸附/解吸

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The differences in the adsorption/desorption behavior of benzene, toluene, ethyl-benzene, and p-xylene (BTEX) using rice husk activated carbon (RHAC) were studied. It was proved that RHAC were quite effective in removing BTEX compounds from aqueous solutions. About 48 h was sufficient to attain maximum BTEX adsorption and desorption. Adsorption kinetics data proved a closer fit to the Weber-Morris model, while the isotherm experimental data were better fit to the Freundlich model, producing values of 1 less than one, indicating favorable adsorption. Adsorption isotherms were determined in polluted surface water and it was found that the removal efficiency depends on the initial concentration of BTEX pollutants. Desorption equilibrium is less rapid than the adsorption equilibrium. BTEX adsorption/desorption was affected by chemical structure, solubility, and molecular weight. About 22% benzene, 33% toluene, 58% ethylbenzene, and 18.8% of p-xylene were released from RHAC after contact between the loaded matrix and reagent water. Sorption/desorption of p-xylene in RHAC was found to yield co-incident equilibrium isotherms and no significant hysteresis was observed.
机译:研究了稻壳活性炭(RHAC)对苯,甲苯,乙苯和对二甲苯(BTEX)的吸附/解吸行为的差异。事实证明,RHAC在从水溶液中去除BTEX化合物方面非常有效。大约48小时足以达到最大的BTEX吸附和解吸。吸附动力学数据证明更符合Weber-Morris模型,而等温线实验数据更符合Freundlich模型,产生的值小于1的n,表明吸附良好。在受污染的地表水中测定了吸附等温线,发现其去除效率取决于BTEX污染物的初始浓度。解吸平衡不如吸附平衡快。 BTEX吸附/解吸受化学结构,溶解度和分子量的影响。在负载的基质和试剂水接触后,从RHAC中释放出约22%的苯,33%的甲苯,58%的乙苯和18.8%的对二甲苯。发现对二甲苯在RHAC中的吸附/解吸产生了偶发的平衡等温线,并且未观察到明显的滞后现象。

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