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Study on simultaneous adsorption of Zn(II) and methylene blue on waste-derived activated carbon for efficient applications in wastewater treatment

机译:Zn(II)和亚甲基蓝同时吸附在废物活性炭上的研究,以有效地用于废水处理

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Organic and inorganic pollutants often coexist in water bodies due to the influxes of pollutants from various pollution sources. The use of waste-derived adsorbents to remove pollutants is an economical and efficient method of wastewater treatment. The present study was designed to investigate the adsorption and cosorption of Zn and methylene blue (MB) on a capsicum straw derived activated carbon (CSAC), by determining equilibrium adsorption isotherms and simulation. The result showed that Langmuir equation is more suitable for description of the adsorption isotherms of Zn~(2+) and MB than that of Freundlich equation. The maximum adsorption amounts for both adsorbates were quite the same. The amount of Zn~(2+) adsorbed decreases with increasing MB and vice versa, suggesting the competitive rather than synergistic adsorption on the activated carbon. Cosorption of Zn(II) and MB on the CSAC showed MB to be preferentially adsorbed. The adsorption kinetic studies showed that the adsorption of Zn~(2+) comply with pseudo-second-order rate model rather than pseudo-first-order rate model. The findings of the present study helps to carry out an efficient application in waste treatment.
机译:由于来自各种污染源的污染物的涌入,有机和无机污染物通常共存于水体中。使用源自废物的吸附剂去除污染物是一种经济有效的废水处理方法。本研究旨在通过确定平衡吸附等温线和模拟研究锌和亚甲基蓝(MB)在辣椒秸秆衍生的活性炭(CSAC)上的吸附和共吸附。结果表明,与Langenir方程相比,Langmuir方程更适合描述Zn〜(2+)和MB的吸附等温线。两种被吸附物的最大吸附量完全相同。 Zn〜(2+)的吸附量随MB的增加而减少,反之亦然,表明活性炭具有竞争性吸附而不是协同吸附。 Zn(II)和MB在CSAC上的共吸附表明MB被优先吸附。吸附动力学研究表明,Zn〜(2+)的吸附符合拟二级速率模型,而不是拟一级速率模型。本研究的发现有助于在废物处理中进行有效的应用。

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