Citric Acid Functionalizing Wheat Straw as Sorbent for Copper Removal from Aqueous Solution
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概要
- 論文の詳細を見る
A cationic sorbent, which bears carboxyl groups of citric acid (CA) derived from esterified wheat straw, was prepared using the solid-phase esterifying technique. Copper (Cu) removal from aqueous solution with modified wheat straw (MWS) was investigated to evaluate its capacities of cation exchange and metal chelation. The effects of various experimental parameters (e.g., solution pH, Cu concentration, sorbent dose, contact time, and presence of light metal) are studied in batch experiments. The maximum value of Cu removal appeared in the range of pH 4 to 5. The percentage of Cu removal decreased with increasing initial Cu concentration. The isothermal data of Cu sorption conformed well to the Langmuir model, and the maximum sorption capacity (Q_m) of MWS for Cu was 78.13mg/g. For 100mg/l of Cu solution, a removal ratio of greater than 96% could be achieved with 2.0g/l or more of MWS. The equilibrium of Cu removal was reached within 90 min. The presence of univalent and bivalent light metal ions (Na^+, K^+, Mg^<2+>, and Ca^<2+>) did not significantly interfere with Cu removal by MWS.
- 公益社団法人日本薬学会の論文
- 2008-04-01
著者
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Gong Renmin
College of Life Science, Anhui Normal University
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Liu Xingyan
College of Life Science, Anhui Normal University
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Fukushima Kazuhiko
Division Of Biological Material Sciences Department Of Biosphere Resources Science Graduate School O
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Gong Renmin
College Of Life Science Anhui Normal University
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Liu Xingyan
College Of Life Science Anhui Normal University
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Guan Rui
College of Life Science, Anhui Normal University
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Zhao Jiajing
Department of Logistic and Industrial Administration, Anhui Normal University
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Ni Shoujun
College of Life Science, Anhui Normal University
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Guan Rui
College Of Life Science Anhui Normal University
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Ni Shoujun
College Of Life Science Anhui Normal University
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Zhao Jiajing
Department Of Logistic And Industrial Administration Anhui Normal University
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Finger Zenesio
Department Of Forest Engineering Federal University Of Mato Grosso
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Ozaki Salete
Department Of Civil Engineering Federal University Of Mato Grosso
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