期刊文献+

水源水中四溴双酚-A的毒性特征与去除技术研究进展 被引量:1

Research progresses on toxicity and removal technology of Tetrabromobisphenol A in water
下载PDF
导出
摘要 四溴双酚-A(Tetrabromobisphenol A,TBBPA)是目前世界上使用量最大的溴代阻燃剂,国内外诸多水源水体及其沉积物中已经检测到TBBPA污染,TBBPA污染严重威胁人类和生态环境健康。针对上述问题,本文介绍了国内外水源水中TBBPA污染现状,梳理了TBBPA的毒性特征,并从微生物去除技术、物理去除技术、化学去除技术及光催化去除技术等方面详细总结了TBBPA的去除工艺。最后,对今后的研究方向进行了讨论和展望。 Tetrabromobisphenol A (TBBPA), the most widely used brominated flame retardants, has accumulated serious environmental pollution. TBBPA pollution had been detected in a lot of source water and its sediments, and is a threat to human and ecology. TBBPA pollution in source water recently around the world was introduced. The toxicity and removal technology of TBBPA were reviewed and analyzed from the aspects of microorganism removal, physical removal, chemical removal and photocatalytic removal. Future research directions were also discussed and prospected.
出处 《供水技术》 2016年第1期1-6,共6页 Water Technology
关键词 四溴双酚-A 水源水 毒性特征 去除 Tetrabromobisphenol A source water toxicity removal
  • 相关文献

参考文献49

  • 1Alaee M, Arias P, Sjodin A, et al. An overview of commercially used brominated flame retardants, their applications, their use patterns in different countries/ regions and possible modes of release [ J ]. Environment International, 2003, 29 (6) : 683 - 689.
  • 2De Wit C A. An overview of brominated flame retardants in the environment [ J ]. Chemosphere, 2002, 46 (5) : 583 - 624.
  • 3Birnbaum L S, Staskal D F. Brominated flame retardants: cause for concern [ J ]. Environ Health Perspect, 2004, 112(1) : 9 -17.
  • 4Di Napoli-Davis G, Owens J E. Quantitation of tetrabromobisphenol-A from dust sampled on consumer electronics by dispersed liquid -liquid microextraction [J]. Environ Pollut, 2013(180) : 274 -280.
  • 5Huang D Y, Zhao H Q, Liu C P, et al. Characteristics, sources, and transport of tetrabromobisphenol A and bisphenol A in soils from a typical e-waste recycling area in South China [ J ]. Environmental Science and Pollution Research, 2014, 21(9) : 5 818 -5 826.
  • 6Hart W, Luo L, Zhang S Z. Adsorption of tetrabromobisphenol A on soils: Contribution of soil components and influence of soil properties [ J ]. Colloids Surf A, 2013(428): 60-64.
  • 7Hwang I K, Kang H H, Lee I S, et al. Assessment of characteristic distribution of PCDD/Fs and BFRs in sludge generated at municipal and industrial wastewater treatment plants[J]. Chemosphere, 2012, 88(7): 888 -894.
  • 8He M J, Luo X J, Yu L H, et al. Diasteroisomer and enantiomer-specific profiles of hexabromoeyclododecane and tetrabromobisphenol A in an aquatic environment in a highly industrialized area, South China: Vertical profile, phase partition, and bioaccumulation [ J ]. Environ Pollut, 2013(179) : 105 -110.
  • 9Me Cormick J M, Paiva M S, Haggblom M M, et al. Embryonic exposure to tetrabromobisphenol A and its metabolites, bisphenol A and tetrabromobisphenol A dimethyl ether disrupts normal zebrafish ( Danio rerio) development and matrix metalloproteinase expression [J]. Aquat Toxicol, 2010, 100(3): 255-262.
  • 10Yang S W, Wang S R, Wu F C, et al. Tetrabromobisphenol A:tissue distribution in fish, and seasonal variation in water and sediment of Lake Chaohu,China[J]. Environmental Science and Pollution Research ,2012,19 (9) :4 090 - 4 096.

二级参考文献16

共引文献13

同被引文献13

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部