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Adsorption Characteristics of Different Adsorbents and Iron(III) Salt for Removing As(V) from Water

机译:不同吸附剂和铁(III)盐去除水中As(V)的吸附特性

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The aim of this study is to determine the adsorption performance of three types of adsorbents for removal of As(V) from water: Bayoxide? E33 (granular iron(III) oxide), Titansorb? (granular titanium oxide) and a suspension of precipitated iron(III) hydroxide. Results of As(V) adsorption stoichiometry of two commercial adsorbents and precipitated iron(III) hydroxide in tap and demineralized water were fitted to Freundlich and Langmuir adsorption isotherm equations, from which adsorption constants and adsorption capacity were calculated. The separation factor RL for the three adsorbents ranged from 0.04 to 0.61, indicating effective adsorption. Precipitated iron(III) hydroxide had the greatest, while Titansorb had the lowest capacity to adsorb As(V). Comparison of adsorption from tap or demineralized water showed that Bayoxide and precipitated iron(III) hydroxide had higher adsorption capacity in demineralized water, whereas Titansorb showed a slightly higher capacity in tap water. These results provide mechanistic insights into how commonly used adsorbents remove As(V) from water.
机译:这项研究的目的是确定三种类型的吸附剂从水中去除As(V)的吸附性能: E33(粒状氧化铁(III)),Titansorb? (粒状二氧化钛)和沉淀的氢氧化铁(III)的悬浮液。将两种市售吸附剂的As(V)吸附化学计量以及自来水和软化水中沉淀的氢氧化铁(III)的吸附量与Freundlich和Langmuir吸附等温线方程拟合,从而计算出吸附常数和吸附容量。三种吸附剂的分离系数RL为0.04至0.61,表明有效吸附。沉淀的氢氧化铁(III)具有最大的吸附能力,而钛吸附剂具有最低的吸附砷(V)的能力。比较自来水或去离子水中的吸附情况,结果表明,Bayoxide和沉淀的氢氧化铁(III)在去离子水中的吸附容量更高,而Titansorb在自来水中的吸附容量稍高。这些结果为常用吸附剂如何从水中去除As(V)提供了机械方面的见解。

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