化工进展

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啤酒酵母吸附去除水中Cd2+的影响因素

昝逢宇1,2,霍守亮2,席北斗2,赵秀兰3   

  1. 1安徽师范大学环境科学学院;2中国环境科学研究院;3西南大学资源环境学院
  • 出版日期:2010-02-05 发布日期:2010-02-05

Influence factors for the biosorption of Cd2+ by Saccharomyces cerevisiae

ZAN Fengyu1,2,HUO Shouliang2,XI Beidou2,ZHAO Xiulan3   

  1. 1 School of Environment Science,Anhui Normal University;2 Chinese Research Academy of Environmental Sciences;3 College of Resource and Environment;Southwest University
  • Online:2010-02-05 Published:2010-02-05

摘要: 生物吸附法是一种经济有效的处理大规模低浓度重金属废水的生物技术,其中啤酒酵母(Saccharomyces cerevisiae)是具有实用潜力的生物吸附剂。本文研究了啤酒酵母对Cd2+吸附效果的主要影响因素,结果表明pH值对Cd2+会产生较大的影响,非固定化和固定化啤酒酵母对Cd2+吸附的最佳pH值都为4,过高和过低均不利于吸附的进行。水中常见的K+、Ca2+、Na+、Mg2+四种离子在低浓度时对Cd2+的吸附无显著影响,但当其浓度高于5 mg/L时会影响吸附,其影响顺序为K+<Na+<Ca2+<Mg2+;Zn2+、Fe2+、Cu2+、Pb2+对Cd2+的吸附效果影响顺序为Pb2+< Zn2+< Fe2+< Cu2+;当Cu2+浓度≥50mg/L时,啤酒酵母对Cd2+不产生性吸附,而对Cu2+产生专性吸附。

Abstract: Biosorption is regarded as a cost-effective biotechnology for the treatment of high volume and low concentration complex wastewater containing heavy metal(s). Saccharomyces cerevisiae is one of the promising biosorbents for heavy metal removal. In this paper,the main influence factors for the biosorption of Cd2+ by Saccharomyces cerevisiae are discussed. Results indicated that the pH value affects obviously the biosorption performance for Cd2+. The maximum biosorption capacity of unit biomass is reached at pH 4 for both the free and immobilized Saccharomyces cerevisiae,and the lower or higher pH values are not beneficial for the biosorption. The coexisting ions K+,Ca2+,Na+and Mg2+ have no obvious impact on the biosorption of Cd2+ by statistic analysis at low concentration. While when the concentration of any K+,Ca2+,Na+or Mg2+ ion is higher than 5 mg/L,the removal of Cd2+ would be affectted,and the impact sequence is K+<Na+<Ca2+<Mg2+. The disturbing heavy metal ions Zn2+,Fe2+,Cu2+ and Pb2+ affect the biosorption of Cd2+,and the impact sequence is Pb2+< Zn2+< Fe2+< Cu2+. The competing impact of Cu2+ for the Cd2+ biosorption is most poignant in all disturbing heavy metal ions because Cd2+ ion is nearly not adsorbed at 50mg/L Cu2+ or higher.

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