首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >In-situ modification of activated carbon with ethylenediaminetetraacetic acid disodium salt during phosphoric acid activation for enhancement of nickel removal
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In-situ modification of activated carbon with ethylenediaminetetraacetic acid disodium salt during phosphoric acid activation for enhancement of nickel removal

机译:原位改性活性炭与乙二胺四乙酸二钠盐在磷酸活化过程中提高镍去除

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Ethylenediaminetetraacetic acid disodium salt (Na(2)EDTA) was employed to in-situ modify activated carbon from Typha orientalis during phosphoric acid activation to improve its Ni(II) adsorption capacity. The Ni(II) adsorption capacities of original activated carbon (AC) and Na(2)EDTA-modified activated carbon (AC-Na(2)EDTA) were evaluated by batch adsorption experiments. The adsorption isotherms of activated carbons conformed to the Langmuir model. The adsorption equilibrium data showed that the calculated maximum Ni(II) adsorption capacities of the samples enhanced from 15.4 mg/g to 27.9 mg/g after modification with Na(2)EDTA. The physicochemical properties of AC and AC-Na(2)EDTA were characterized by N-2 adsorption/desorption isotherm, Boehm's titration and X-ray photoelectron spectroscopy (XPS) analysis. No obvious differences of AC and AC-Na(2)EDTA in nitrogen adsorption/desorption curves and pore size distributions could be observed. However, AC-Na(2)EDTA (80.9% and 2.10 mmol/g) exhibited a higher (N + O)/C atomic ratio and total functional groups content than AC (26.2% and 1.35 mmol/g). These results suggested that chemisorption is mainly responsible for Ni(II) adsorption on activated carbon. Based on the results of batch adsorption experiments and XPS analysis, Ni(II) cations were mainly bound with the O-containing and N-containing groups through the mechanisms of cation exchange, electrostatic attraction and surface complexation. Desorption experiments showed maximum Ni(II) recovery in HCl solution. (C) 2017 Elsevier B.V. All rights reserved.
机译:乙二胺四乙酸二钠盐(Na(2)EDTA)在磷酸活化期间从Typha Orientalis原位改性活性炭,以改善其Ni(II)吸附能力。通过分批吸附实验评估原始活性炭(AC)和Na(2)EDTA改性活性炭(AC-NA(2)EDTA)的Ni(II)吸附能力。活性炭的吸附等温线符合Langmuir模型。吸附平衡数据显示,在用Na(2)EDTA的修饰后,样品的最大Ni(II)吸附容量从15.4mg / g增强至27.9mg / g。 AC和AC-NA(2)EDTA的物理化学性质的特征在于N-2吸附/解吸等温,Boehm的滴定和X射线光电子谱(XPS)分析。可以观察到在氮吸附/解吸曲线和孔径分布中没有明显的AC和AC-NA(2)EDTA差异。然而,AC-Na(2)EDTA(80.9%和2.10mmol / g)表现出高(N + O)/ C原子比和总官能团含量,而不是Ac(26.2%和1.35mmol / g)。这些结果表明,化学吸附主要负责Ni(II)对活性炭的吸附。基于分批吸附实验和XPS分析的结果,Ni(II)阳离子主要通过阳离子交换,静电吸引和表面络合的机制与含O含N和N含量的基础结合。解吸实验显示HCl溶液中的最大Ni(II)回收。 (c)2017 Elsevier B.v.保留所有权利。

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