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Modeling of heavy metals removal from aqueous solution using activated carbon produced from cotton stalk

机译:使用棉秆产生的活性炭模拟从水中去除重金属的模型

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Activated carbon produced from cotton stalks was examined for the removal of heavy metal contaminants. Adsorption studies in completely mixed batch reactors were used to generate equilibrium pH adsorption edges. Continuous flow experiments using the activated carbon in fixed beds were conducted to determine heavy metal breakthrough versus bed volumes treated. At given pH value in the range 5-7, the adsorption capacity was similar for copper and lead and clearly greater than for cadmium. A surface titration experiment indicated negative surface charge of the activated carbon at pH>6, meaning that electrostatic attraction of the divalent heavy metals can occur below the pH required for precipitation. Substantive metal removal below the pH of zero charge might be due to surface complexation. Accordingly, a surface complexation model approach that utilizes an electrostatic term in the double-layer description was used to estimate equilibrium constants for the protolysis interactions of the activated carbon surface as well as equilibria between background ions used to establish ionic strength and the sorbent surface. Pb(II) adsorption edges were best modeled using inner-layer surface complexation of Pb~(2+), while Cd(II) and Cu(II) data were best fit by outer-layer complexes with Me~(2+). The full set of equilibrium constants were used as input in a dual-rate dynamic model to simulate the breakthrough curves of the target metals (Pb, Cu and Cd) from fixed bed experiments and to estimate external (or film) diffusion and internal (surface) diffusion coefficients.
机译:检查了棉秆产生的活性炭是否去除了重金属污染物。在完全混合的间歇式反应器中进行吸附研究可生成平衡的pH吸附边。进行了在固定床中使用活性炭的连续流动实验,以确定重金属穿透率与处理床体积的关系。在给定的5-7范围内的pH值下,铜和铅的吸附容量相似,并且明显大于镉。表面滴定实验表明,活性炭在pH> 6时具有负表面电荷,这意味着在沉淀所需的pH值以下可能会发生二价重金属的静电吸引。在零电荷的pH值以下去除大量金属可能是由于表面络合。因此,使用在双层描述中利用静电项的表面络合模型方法来估计活性炭表面的质子相互作用的平衡常数以及用于建立离子强度和吸附剂表面的背景离子之间的平衡。最好用Pb〜(2+)的内层表面络合来模拟Pb(II)的吸附边,而Cd(II)和Cu(II)的数据最好是与Me〜(2+)的外层配合物拟合。全套平衡常数在双速率动力学模型中用作输入,以模拟固定床实验中目标金属(Pb,Cu和Cd)的穿透曲线,并估计外部(或薄膜)扩散和内部(表面)扩散)扩散系数。

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