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蓝藻毒素去除方法研究进展

江敏1,2*,王婧1,许慧1   

  1. 1上海海洋大学水产与生命学院, 上海 201306; 2上海市水产养殖工程技术研究中心, 上海 201306)
  • 出版日期:2014-12-10 发布日期:2014-12-10

Research progress on the methods of cyanobacterial toxin removal.

JIANG Min1,2**, WANG Jing1, XU Hui1   

  1. (1College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306,  China;  2Shanghai Engineering Research Center of Aquaculture, Shanghai 201306, China)
  • Online:2014-12-10 Published:2014-12-10

摘要:

蓝藻水华中产生的次生代谢产物蓝藻毒素对人类及陆生动物具有严重毒性和致癌作用,同时会危害水域生态系统的结构和功能。有毒藻华的频繁发生及其引发的环境和健康问题已经成为全球环境科学领域的研究热点。现有的净水技术去除饮用水中藻毒素效率不高,因此寻找高效的藻毒素去除方法是目前亟待解决的问题。本文首先阐述了蓝藻毒素的产生和释放机理,将蓝藻毒素的去除分为除藻和去除水体中溶解性藻毒素两类;其次,本文在国内外大量研究成果的基础上综述了当前蓝藻毒素的降解途径,并详细介绍了活性炭吸附法、高级氧化降解法、微生物降解法等具有实际应用前景的去除方法;最后,本文总结了当前蓝藻毒素去除方法的局限性,指出了未来的研究应向高效率、低能耗、无污染、实用性强的方向发展。

 

关键词: 酶液, 高效降解菌系, 快速高通量筛选, 石油烃降解

Abstract:

Cyanobacterial toxin is the secondary metabolite produced by cyanobacteria. It has serious toxicity and carcinogenicity to human or terrestrial animals, and it may damage the structure and function of water ecosystems. Environmental and health issues caused by the frequent occurrence of toxic algal blooms have become research hotspots in the field of environmental science. Available water treatment facilities being used nowadays to remove cyanobacterial toxin from drinking water are unsatisfying, so searching an efficient method for removing algal toxin is an urgent issue to be solved. This paper described the production and release mechanism of cyanobacterial toxin firstly, divides the removal methods of cyanobacterial toxin into two categories, as algae removal and the removal of dissolved toxin in water. In addition, current degradation pathways of cyanobacterial toxin were reviewed based on a large number of research results. The details of activated carbon adsorption, advanced oxidation degradation, microbial degradation and other removal methods that have practical application prospects were introduced. Finally, this paper summarized the limitations of current cyanobacterial toxin removal methods, and points out that the future methods should be highly efficient, with low energy consumption, pollution free and practicable.
 

Key words: rapid and high-throughput screening, petroleum degradation, high-efficient degrading bacteria, enzyme