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Preparation of cation exchanger from lemon and sorption of divalent heavy metals

机译:由柠檬制备阳离子交换剂和吸附二价重金属

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摘要

A cation exchanging material was developed from lemon by modifying the pectic-cellulosic substances in the lemon peel by lemon juice having citric acid. For this purpose, chopped lemon removed from seeds and yellow skin was heated in two stages, firstly at 50 degrees C for 24 h and subsequently at 120 degrees C for 2 h. The material obtained was ground, repeatedly washed with water and dried. Lemon peel and lemon resin obtained were characterized through physicochemical analyses and FTIR spectroscopy. Heavy metal binding performance of this material was determined by removal tests conducted by using 10 mM solutions of divalent metals. Experimental results show that the resin prepared from lemon is effective especially for Pb and Cu removals. For a lemon resin dosage of 10 g l(-1), sorption affinity of divalent metal ions is found to be in an order of Pb > Cu > Ni > Fe > Cd > Zn > Co > Mn. Typically, sorption capacities are about 0.87 and 0.43 mmol g(-1) for Pb and Mn, respectively. (c) 2007 Elsevier Ltd. All rights reserved.
机译:通过用柠檬酸的柠檬汁改性柠檬皮中的果胶纤维素物质,从柠檬中开发出阳离子交换材料。为此,将从种子和黄色皮肤上去除的切碎的柠檬分两个阶段加热,首先在50摄氏度下加热24小时,然后在120摄氏度下加热2小时。研磨得到的材料,用水反复洗涤并干燥。通过理化分析和FTIR光谱对获得的柠檬皮和柠檬树脂进行表征。该材料的重金属结合性能是通过使用10 mM二价金属溶液进行的去除测试确定的。实验结果表明,由柠檬制备的树脂特别有效地去除了Pb和Cu。对于10 g l(-1)的柠檬树脂剂量,发现二价金属离子的吸附亲和力的顺序为Pb> Cu> Ni> Fe> Cd> Zn> Co> Mn。通常,Pb和Mn的吸附容量分别约为0.87和0.43 mmol g(-1)。 (c)2007 Elsevier Ltd.保留所有权利。

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