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壳聚糖在海水混凝处理过程中的助凝作用研究 被引量:3

Aid Effect of Chitosan in the Treatment Process of Seawater Coagulation
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摘要 将天然高分子絮凝剂壳聚糖(CTS)与无机絮凝剂FeCl3协同使用,混凝处理渤海湾近岸海水,考察了壳聚糖投加量、pH值和沉降时间对浊度和其它污染物去除效果的影响。试验结果表明,CTS对FeCl3助凝效果显著,与单独使用FeCl3相比,其浊度、化学耗氧量(CODMn)和总磷(TP)去除率分别提高了8.3%、9.6%和9.4%。FeCl3与CTS协同使用还可明显改善絮体的沉降性能,缩短沉淀时间。综合考虑各项主要技术指标,其海水混凝适宜条件为m(FeCl3)/m(CTS)=15.0。 The natural polymer chitosan and ferric chloride were mixed to coagulate seawater from coastal Bohai Bay and the efficiency of chitosan coagulation aid was investigated. Impacts of chitosan dosage, pH and sedimentation time on pollutant and turbidity removal efficiency were studied. The results showed that chitosan could enhance the effect of flocculation significantly. Compared with the single use of ferric chloride, the mixed method can increase the turbidity, CODMn, and TP removal rates by 8.3% , 9. 6% and 9.4% , respectively. Ferric chloride together with the use of chitosan could also improve the floe sedimentation performance significantly and shorten the sedimentation time. Considering across-the-board the major technical indicators for coagulation in seawater treatment process, the dosage of 1 mg/L CTS and 15 mg/L FeCl3 (m ( FeCl3 )/m (CTS) = 15.0) was optimum.
出处 《化学工业与工程》 CAS 2010年第1期38-42,共5页 Chemical Industry and Engineering
基金 中央级公益性科研院所基本科研业务费专项资金项目(K-JBYWF-2007-T08) 国家"十一五"重大攻关课题资助项目(2006BAB03A08)
关键词 壳聚糖 三氯化铁 助凝 海水 chitosan ferric chloride coagulation aid seawater
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  • 1姜登岭,张晓健.饮用水中的磷及其在常规处理工艺中的去除[J].环境科学学报,2004,24(5):796-801. 被引量:15
  • 2方华,吕锡武,吴今明.管网水细菌再生长限制因子的特性与比较[J].给水排水,2004,30(12):32-36. 被引量:7
  • 3李星,聂学峰,杨艳玲,冯群英,何宇飞,李圭白.孔雀绿-磷钼杂多酸分光光度法检测水中痕量磷[J].哈尔滨商业大学学报(自然科学版),2005,21(5):558-562. 被引量:23
  • 4[1]Philip C S, et al. Control of disinfection by-products in drinking water[J]. Environmental Engineering, 1994,120(4):514.
  • 5[2]Dalang F, et al. Study of the influence of fulvic substances on the adsorption of copper(Ⅱ)ions at the kaolinite surface[J]. Environmental Science & Technology, 1984,18(3):135~141.
  • 6[4]Wen Po Cheng. Comparison of hydrolysis/coagulation behavior of polymeric and monmeric iron coagulants in humic acid solution[J]. Chemosphere,2002,47:963~969.
  • 7[5]Browne B A, et al. pH-dependent binding of aluminium by a fulvic acid[J]. Environmental Science & Technology, 1993,27(5):915~922.
  • 8[6]Tipping C, et al. Humic substances in acid surface water;Modelling aluminium binding, contribution to ionic charge-balance, and control of pH[J]. Water Research, 1991,25(4):425~435.
  • 9[7]Plankey B J, et al. Kinetics of aluminium-fulvic acid complexation in acidic waters[J]. Environmental Science & Technology, 1987,21(6):595~601.
  • 10[8]Gibbs R J. Effect of natural organic coatings on the coagulation of particles[J]. Environmental Science & Technology, 1983,17:237~240.

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