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Comparison of nickel adsorption from electroplating rinse water by coir pith and modified coir pith

机译:椰皮髓和改性椰壳髓对电镀漂洗水中镍吸附的比较

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The coir pith was used as an adsorbent for nickel removal because the coir pith contains high lignin (36%) and cellulose (44%). The optimum condition for nickel removal by coir pith in a batch system was solution pH 4-7, adsorbent dosage of 5% (w/v), an equilibrium contact time of 10 min and a temperature of 30°C. The nickel adsorption was fitted to the Langmuir and Freundlich isotherms that showed that the maximum value of nickel adsorption (q_(max)) by coir pith and modified coir pith were 9.5 and 38.9 mg g~(-1), respectively. Sodium hydroxide increased metal binding site (free O~-) of modified coir pith. The mechanism of nickel adsorption by the coconut coir pith was confirmed by elution with sulfuric acid, which implied that it was chemisorption. The evidence showed that lignin and holo-cellulose are the main components in coir pith that played a major role in nickel adsorption. The main functional groups in coir pith that were involved in nickel adsorption were hydroxyl and methoxy groups. It was confirmed by X-ray adsorption spectroscopy (XAS) that the oxidation species of nickel involved in nickel adsorption by coir pith and modified coir pith was Ni(II).
机译:椰皮髓被用作去除镍的吸附剂,因为该椰壳髓包含高木质素(36%)和纤维素(44%)。在分批系统中通过椰皮髓除镍的最佳条件是溶液pH 4-7,吸附剂量为5%(w / v),平衡接触时间为10分钟,温度为30°C。将镍吸附应用于Langmuir等温线和Freundlich等温线,结果表明,椰皮髓和改性椰壳髓的镍吸附最大值(q_(max))分别为9.5和38.9 mg g〜(-1)。氢氧化钠增加了改性椰壳髓的金属结合位点(游离O〜-)。通过用硫酸洗脱证实了椰壳髓对镍的吸附机理,这表明它是化学吸附。证据表明,木质素和全纤维素是椰壳纤维的主要成分,在镍的吸附中起主要作用。椰皮髓中参与镍吸附的主要官能团是羟基和甲氧基。通过X射线吸收光谱法(XAS)证实,参与椰壳髓和改性椰壳髓吸附镍的镍的氧化种类为Ni(II)。

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