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首页> 外文期刊>The Science of the Total Environment >Removal of As (V) from the aqueous solution by a modified granular ferric hydroxide adsorbent
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Removal of As (V) from the aqueous solution by a modified granular ferric hydroxide adsorbent

机译:通过改性颗粒氢氧化铬吸附剂从水溶液中除去AS(V)

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摘要

A novel adsorbent was prepared in granular form from iron (III) hydroxide and other additives to remove arsenate (As (V)) from aqueous solution. Adsorption of As (V) onto the adsorbent in batch experiments was analyzed to understand the adsorption mechanism, affecting factors, and adsorption isotherms. The optimal working conditions for the developed adsorbent were at pH 3,30 °C and 50 g/L. The adsorption of arsenate onto the adsorbent occurred rapidly in the first 10 min and reached equilibrium in 2 h. The Langmuir isotherm was found to be best fitted the adsorption. The pre- and post-adsorption adsorbents were characterized by SEM, BET, FTIR, XRD, and Zeta potential techniques. Experimental results clearly demonstrated the potential impact of elemental composition, crystallinity, surface morphology, and other physico-chemical properties of the adsorbent on the adsorption performance variety. The experimental results with the pilot scale treatment system revealed that the adsorbent can be applied successfully and lead to a very efficient drinking water treatment system, at a competitive cost compared to the water market in Hanoi, Vietnam.
机译:以颗粒形式由铁(III)氢氧化铁和其他添加剂制备一种新型吸附剂,以从水溶液中除去砷酸盐(如(V))。分析了在分批实验中吸附到吸附剂上的吸附剂,以了解吸附机制,影响因素和吸附等温线。发育吸附剂的最佳工作条件是pH3,30℃和50g / L.在前10分钟中,砷酸盐的吸附在吸附剂上迅速发生,并在2小时内达到平衡。发现Langmuir等温线最适合吸附。通过SEM,BET,FTIR,XRD和Zeta潜在技术的特征在于和吸附后吸附剂。实验结果清楚地证明了元素组成,结晶度,表面形态和吸附剂对吸附性能品种的其他物理化学性质的潜在影响。试点规模治疗系统的实验结果表明,与越南河内的水位相比,吸附剂可成功应用并导致非常有效的饮用水处理系统,以竞争成本。

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