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首页> 外文期刊>The Science of the Total Environment >Electro-sorption of ammonium ion onto nickel foam supported highly microporous activated carbon prepared from agricultural residues (dried Luffa cylindrica)
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Electro-sorption of ammonium ion onto nickel foam supported highly microporous activated carbon prepared from agricultural residues (dried Luffa cylindrica)

机译:铵离子电吸附在镍泡沫上,负载来自农业残留物(干燥的Luffa Comindrica)制备的高度微孔活性炭

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An electrode made of loofah sponge derived activated carbon supported on nickel foam (AC/Ni) was successfully fabricated and used to remove ammonium ion (NH4+) from aqueous solution. A multilayer adsorption isotherm was used to describe ammonium electro-sorption on AC/Ni electrodes at different temperature, initial NH4+ concentration, and electrical field. The cyclic voltammetry (CV) results suggested that the electrical capacitance of AC/Ni electrodes, with the AC being prepared without preheating (OAC) or with low temperature heating (i.e., 300 AC), were higher than those prepared at high preheating temperature (i.e., 400 AC and 500 AC). Increasing the electro-sorption temperature from 10 to 50 degrees C decreased the monolayer NH4+ adsorption capacity from 5 to ca. 2-3 mg-N g(-1), respectively. Background electrolyte, namely, sodium sulfate, exhibited significant competitive effect on the adsorption of ammonium ion at sodiumion concentration 10(-2) M. The activation energy and heat of adsorption were 9-23.2 kJ mol(-1) and -3.7-10.7 kJ mol(-1), respectively, indicating a physisorption and exothermic adsorption characteristics. Based on the kinetics and thermodynamics analysis, there was slight increase in the activation energy with elevating preheating temperature, which increased the quantity of micropores and surface heterogeneity of the AC materials. Overall, results clearly demonstrated that carbon pyrolysis played a role on the capacitive charging behaviors of electrodes and the efficiency of NH4+ electro-sorption on the AC/Ni electrodes. (C) 2019 Elsevier B.V. All rights reserved.
机译:成功制造了由镍海绵制成的电极由镍泡沫(AC / Ni)上负载的衍生活性炭,并用于从水溶液中除去铵离子(NH 4 +)。使用多层吸附等温线来描述不同温度,初始NH4 +浓度和电场的AC / Ni电极上的铵电吸附。循环伏安法(CV)结果表明,AC / Ni电极的电容与在没有预热(OAc)或低温加热(即300Ac)的情况下制备的AC的电容高于高预热温度(即400个AC和500个AC)。将电吸附温度从10至50摄氏度增加降低从5到CA的单层NH4 +吸附容量降低。分别为2-3 mg-n g(-1)。背景技术电解质,即硫酸钠,对钠离子的吸附显着竞争作用> 10(-2)M.活化能量和吸附热量为9-23.2 kJ摩尔(-1)和-3.7-分别为10.7 kJ摩尔(-1),表明理由和放热吸附特性。基于动力学和热力学分析,激活能量升高了预热温度略有增加,增加了微孔的数量和AC材料的表面异质性。总体而言,结果清楚地证明,碳热解在电极的电容充电行为和AC / Ni电极上的NH 4 +电吸附的效率上发挥了作用。 (c)2019 Elsevier B.v.保留所有权利。

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