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首页> 外文期刊>Journal of Chemical Engineering of Japan >Adsorption Kinetics of Arsenic Removal from Groundwater by Iron-Modified Zeolite
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Adsorption Kinetics of Arsenic Removal from Groundwater by Iron-Modified Zeolite

机译:铁修饰沸石去除地下水中砷的吸附动力学

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References(32) Cited-By(29) This work involves the treatment of model groundwater containing arsenic with the use of chemically modified zeolite. A finite volume stirred tank reactor was used to study the effects of the variables; sorbent grain fraction and sorbent dose, on arsenic reaction kinetics. The results are modelled using the pseudo-second order and second-order reversible rate equations. Equilibrium arsenic uptake and residual sum of squares evaluated from the two models are compared. From them, the arsenic sorption onto the active sites is consistent with a pseudo-second order mechanism. The initial sorption rate which drives the uptake rate was found to be in the same order of magnitude for all the grain fractions but decreased with an increase in the sorbent dose. Furthermore, based on the pseudo-second order mechanism, Thiele moduli were determined and their values suggested that intraparticle diffusion may play a significant role in arsenic uptake.
机译:参考文献(32)被引用的文献(29)这项工作涉及使用化学改性的沸石处理含砷的模型地下水。有限体积搅拌釜反应器用于研究变量的影响。吸附剂颗粒分数和吸附剂剂量,对砷反应动力学的影响。使用伪二阶和二阶可逆速率方程对结果进行建模。比较了两种模型评估的平衡砷摄入量和残差平方和。从它们中,砷吸附到活性位点上与拟二级机制一致。对于所有谷物部分,发现驱动吸收速率的初始吸附速率处于相同的数量级,但是随着吸附剂剂量的增加而降低。此外,基于拟二阶机制,确定了蒂尔模量,其值表明颗粒内扩散可能在砷吸收中起重要作用。

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