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Cationic content effects of biodegradable amphoteric chitosan-based flocculants on the flocculation properties 被引量:8

Cationic content effects of biodegradable amphoteric chitosan-based flocculants on the flocculation properties
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摘要 A series of biodegradable amphoteric chitosan-based flocculants (3-chloro-2-hydroxypropyl trimethyl ammonium chloride (CTA) modified carboxymethyl chitosan, denoted as CMC-CTA) with different substitution degrees of CTA were prepared successfully. The content of carboxymethyl groups in each CMC-CTA sample was kept almost constant. The solubility of the various flocculants showed that, higher cationic content of flocculants caused a better solubility. The flocculation experiments using kaolin suspension as synthetic water at the laboratory scale indicated that the substitution degree of CTA was one of the key factors for the flocculation properties. With the increase of cationic content, the flocculants were demonstrated better flocculation performance and lower dosage requirement. Flocculation kinetics model of particles collisions combining zeta potential and turbidity measurements was employed to investigate the effects of the cationic content of the flocculants on the flocculation properties from the viewpoint of flocculation mechanism in detail. Furthermore, flocculation performance using raw water from Zhenjiang part of Yangtze River at the pilot scale showed the similar effects to those at the laboratory scale. A series of biodegradable amphoteric chitosan-based flocculants (3-chloro-2-hydroxypropyl trimethyl ammonium chloride (CTA) modified carboxymethyl chitosan, denoted as CMC-CTA) with different substitution degrees of CTA were prepared successfully. The content of carboxymethyl groups in each CMC-CTA sample was kept almost constant. The solubility of the various flocculants showed that, higher cationic content of flocculants caused a better solubility. The flocculation experiments using kaolin suspension as synthetic water at the laboratory scale indicated that the substitution degree of CTA was one of the key factors for the flocculation properties. With the increase of cationic content, the flocculants were demonstrated better flocculation performance and lower dosage requirement. Flocculation kinetics model of particles collisions combining zeta potential and turbidity measurements was employed to investigate the effects of the cationic content of the flocculants on the flocculation properties from the viewpoint of flocculation mechanism in detail. Furthermore, flocculation performance using raw water from Zhenjiang part of Yangtze River at the pilot scale showed the similar effects to those at the laboratory scale.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2012年第8期1378-1385,共8页 环境科学学报(英文版)
基金 supported by the Key Natural Science Foundation of China (No. 51073077,50938004,50825802) the Research Project of Ministry of Housing and Urban-Rural Development of China (No. 2009-K7-11) the Open Fund from State Key Laboratory of Pollution Control and Resource Reuse of Nanjing University (No.PCRRF11004) the Fundamental Research Funds for the Central Universities (No. 1105020504,1116020510) the Scientific Research Foundation of Graduate School of Nanjing University (No. 2012CL06)
关键词 amphoteric chitosan-based flocculants substitution degree of CTA flocculation kinetics and mechanism amphoteric chitosan-based flocculants substitution degree of CTA flocculation kinetics and mechanism
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