化工学报 ›› 2008, Vol. 59 ›› Issue (9): 2351-2355.

• 能源和环境工程 • 上一篇    下一篇

DDBAC与取代芳烃对发光菌联合毒性作用

董玉瑛,王壮,马静,刘建华   

  1. 大连民族学院环境工程系;大连理工大学环境与生命学院工业生态与环境工程教育部重点实验室
  • 出版日期:2008-09-05 发布日期:2008-09-05

Joint toxicity of DDBAC and substituted aromatic compounds to Photobacterium phosphoreum

DONG Yuying,WANG Zhuang, MA Jing, LIU Jianhua   

  • Online:2008-09-05 Published:2008-09-05

摘要: 表面活性剂和芳烃化合物的大量生产与使用干扰了自然生态系统的物理、化学和生物过程。以发光菌作为指示生物测定了阳离子表面活性剂十二烷基二甲基苄基氯化胺(DDBAC)与苯酚、甲苯和硝基苯对发光菌的单一毒性,以及等摩尔浓度配比下DDBAC与3种取代芳烃二元与多元混合物的联合毒性效应。采用毒性单位(TU)、相加指数(AI)、相似性参数(λ)和混合毒性指数(MTI)4种联合毒性评价方法,对混合体系联合毒性作用类型进行了研究,结果显示,4种不同的评价方法对研究体系联合效应评价结果具有较好的一致性,且不同组分的混合毒性均呈现出较强的协同作用,即DDBAC与取代芳烃共同存在时将会增加该类物质的环境风险性。考察评价方法的有效度,以混合毒性指数法参数值较大,判定灵敏度较高,为该研究体系的推荐评价方法。同时根据发光菌发光原理、结合DDBAC的分子结构特征和芳烃类化合物取代基的不同,对联合毒性作用机理进行初步的探讨。

关键词:

DDBAC, 取代芳烃, 发光菌, 联合毒性

Abstract:

The mass production and wide usage of surfactants and aromatic compounds disturb seriously the natural ecosystem of physical, chemical and biological processes.The study on the mechanisms of joint toxicity can indicate the characterization of real environmental behavior and assessment of joint ecological effect.The toxicity to Photobacterium phosphoreum of different mixture systems of cationic surfactant of dodecyl dimethyl benzyl ammonium chloride (DDBAC) and three substituted aromatic compounds according to equi-concentration ratio of 1∶1, as well as individual toxicity, were determined respectively.They were evaluated by toxicity unit (TU), additive index (AI), similarity parameter (λ), and mixtures toxicity index (MTI).Four evaluating methods were compared and the modes of joint action of different systems were analyzed.It was shown that coherent results were obtained by four different evaluating methods in most situations.Conclusions can be drawn that the joint effects of different mixture systems were synergistic.Mechanisms of joint toxicity action could be discussed according to luminescence principle of Photobacterium phosphoreum and molecule structures of the mixture components.

Key words:

DDBAC, 取代芳烃, 发光菌, 联合毒性