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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Nickelickel boride nanoparticles coated resin: A novel adsorbent for arsenic(III) and arsenic(V) removal
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Nickelickel boride nanoparticles coated resin: A novel adsorbent for arsenic(III) and arsenic(V) removal

机译:镍/硼化镍纳米粒子涂层树脂:一种新型吸附剂,用于去除砷(III)和砷(V)

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摘要

A novel adsorbent named nickelickel boride nanoparticles coated resin has been introduced for the removal of both As(III) and As(V) from water. Nickelickel boride nanoparticles were formed on Purolite C-100 resin successfully. Perlite, pumice, zeolite and silica gel were also tried as the support material. However, nickelickel boride nanoparticles on those materials were not stable. Optimal preparation conditions for nickelickel boride nanoparticles coated resin were established. In the batch method, initial pH did not significantly affect the arsenic removal efficiencies for As(III) and As (V) in the pH range 33-11.5. As(III) and As(V) were removed quantitatively from the solutions at all pHs. 15% and 10% decreases were observed for As (III) removal efficiency when the solution contained phosphate and silicate respectively. However, none of the ions studied showed significant effect on the As(V) removal efficiency. Isotherm studies indicate that the Langmuir model fits the experimental data better than the Freundlich model. The isotherms also showed that the adsorption is favorable. Maximum arsenic adsorption capacities were calculated as 23.4 mg/g and 17.8 mg/g for As(III) and As(V), respectively. The kinetics of the adsorption process were tested for the pseudo-first order and pseudo-second order and intra-particle diffusion models. The comparison among the models showed that the pseudo second-order model best described the adsorption kinetics. As(III) and As(V) could be desorbed from the adsorbent without any efficiency loose using a mixture containing NaCl and NaOH and, therefore, the adsorbent could be used several times. Ni/NixB-NPCR could reduce the concentration of both As(III) and As(V) below the maximum allowable concentration level (WHO limit, 10 mu g/L) from such high arsenic containing waters. (C) 2014 Elsevier B.V. All rights reserved.
机译:引入了一种新型吸附剂,称为镍/硼化镍纳米粒子涂层树脂,用于从水中去除As(III)和As(V)。在Purolite C-100树脂上成功形成了镍/硼化镍纳米粒子。还尝试了珍珠岩,浮石,沸石和硅胶作为载体材料。但是,这些材料上的镍/硼化镍纳米粒子不稳定。建立了镍/硼化镍纳米粒子包覆树脂的最佳制备条件。在分批方法中,初始pH值在33-11.5的范围内对As(III)和As(V)的除砷效率没有明显影响。在所有pH下从溶液中定量去除As(III)和As(V)。当溶液分别包含磷酸盐和硅酸盐时,As(III)的去除效率降低了15%和10%。但是,所研究的离子均未显示出对As(V)去除效率的显着影响。等温线研究表明,Langmuir模型比Freundlich模型更适合实验数据。等温线还表明吸附是有利的。 As(III)和As(V)的最大砷吸附容量分别计算为23.4 mg / g和17.8 mg / g。测试了吸附过程的动力学,用于拟一级和拟二级以及颗粒内扩散模型。模型之间的比较表明,伪二级模型最能描述吸附动力学。使用含有NaCl和NaOH的混合物可以从吸附剂上解吸As(III)和As(V)而没有任何效率损失,因此,吸附剂可以使用几次。 Ni / NixB-NPCR可以从如此高的含砷水中将As(III)和As(V)的浓度降低到最大允许浓度以下(WHO限值,10μg / L)。 (C)2014 Elsevier B.V.保留所有权利。

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