首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Influence of groundwater occurring ions on the kinetics of As (III) adsorption reaction with synthetic nanostructured Fe(III)-Cr(III) mixed oxide
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Influence of groundwater occurring ions on the kinetics of As (III) adsorption reaction with synthetic nanostructured Fe(III)-Cr(III) mixed oxide

机译:地下水存在离子对合成纳米结构Fe(III)-Cr(III)混合氧化物As(III)吸附反应动力学的影响

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摘要

Nanoparticle (20-30 nm) agglomerates of synthetic hydrous Fe(HI)-Cr(III) mixed oxide (NHICO) were used for As(III) adsorption from aqueous solutions. The parameters investigated were the effects of (i) incinerating temperature on NHICO and (ii) solution pH. Kinetics of As(III)- adsorption reaction with NHICO (incinerated at 350 °C) was mainly investigated taking groundwater co-occurring ions at the background at optimum pH 7.0 (± 0.2). Results indicated that the NHICO incinerated at 350 °C showed highest capacity of As(III) removal at pH 7.0 (± 0.2) from aqueous phases. The kinetic data of As(III) adsorption by NHICO described the pseudo-second order model very well. The capacities of As(III) removal (q_e) obtained at equilibrium from experiments were found too close with the modeled values. Again, the q_e values obtained in the presence of ions at background was found ranged in ± 5 of that in the absence of ion, excepting HCO3~-. The q_e value of As(III) in the presence of HCO3~- was notably greater than that in the absence of any ion indicating increase of As(III) removal capacity by NHICO. Values of the rate constants increased with lowering As(III) concentrations. Therefore, NHICO incinerated at 350 °C should be an efficient medium for nitrations of high As(III) contaminated groundwater.
机译:合成含水Fe(HI)-Cr(III)混合氧化物(NHICO)的纳米颗粒(20-30 nm)团聚体用于水溶液的As(III)吸附。研究的参数是(i)焚烧温度对NHICO的影响和(ii)溶液pH值的影响。主要研究了在最佳pH 7.0(±0.2)下,以地下水共生离子为背景,与NHICO的吸附反应动力学(350 °C焚烧)。结果表明,在350 °C下焚烧的NHICO在pH 7.0(±0.2)下从水相中去除As(III)的能力最高。NHICO吸附As(III)的动力学数据很好地描述了伪二阶模型。从实验中获得的平衡去除砷(III)(q_e)的能力与模拟值太接近。同样,在背景离子存在下获得的q_e值范围为没有离子时的± 5%,HCO3~-除外。HCO3~-存在下As(III)的q_e值明显大于无离子时的值,表明NHICO提高了As(III)的去除能力。速率常数的值随着As(III)浓度的降低而增加。因此,在350°C下焚烧的NHICO应该是高As(III)污染地下水硝化的有效介质。

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