DBP对斜生栅藻及天然混合藻类致毒效应研究
STUDIES ON THE TOXIC EFFICIENCY OF DIBUTYLPHTHALATE TO SCENEDESMUS OBLIQUUS AND NATURAL ALGAE
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摘要: 作为塑料和橡胶等化工产品的增塑剂,邻苯二甲酸酯类化合物的生产量和使用量在我国和世界上均呈上升趋势,其在环境中的广泛存在及其所产生的行为效应已引起人们的高度重视。
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关键词:
- 邻苯二甲酸二丁酯(DBP) /
- 斜生栅藻 /
- 天然藻类 /
- 致毒效应
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Keywords:
- Dibutyl phthalate /
- Scenedesmus obliquus /
- Natural algae /
- Toxic efficiency
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[1] Yan H, Ye C M, Yin C Q. Kinetics of phthalate ester biodegration by Chlorella pyrenoidosa [J].Environ Toxic Chem, 1995, 14:931-938[2] Huang G L, Sun H G, Song Z H. Interactions between dibutyl phthalate and aquatic organisms [J]. Bull Environ Contam Toxicol., 1999, 63: 759-765[3] Thuren A. Effects of phthalate esters on the locomotor activity of the fresh water amphipod Gammarus Pulex [J]. Bull. Environ. Contam. Toxicol., 1991, 46: 159-166[4] Defoe D L. Solubility and toxicity of eight phthalate esters to four aquatic organismus [J]. Environmental Toxicity and Chemistry, 1990. 9: 623-636[5] APHA, AWWA, WPCF. Stand methods for the examination of water and wastewater.(Edi. 15th), Washington: American Public Health Association. 1980[6] Zhou Y X, Wang S D, Xia Y C. Hydrobios and environmental protection [M]. Beijing: Scientific press. 1983. [周永欣,王士达,夏宜. 水生生物与环境保护. 北京:科学出版社, 1983][7] Kuang Q J, Xia Y C, Wu Z B, et al. Study on the correlations between macrophytes and algae in artificial simulated ecosystem [J]. Acta Hydrobiologica Sinica, 1997, 21(1): 90-93. [况琪军,夏宜,吴振斌,等. 人工模拟生态系统中水生植物与藻类的相关性研究. 水生生物学报, 1997, 21(1):90-93][8] Adams W J, Biddinger G R, Robillard K A, et al. A summary of the acute tocixity of 14 Phthalate Esters to representative aquatic organisms [J]. Environ. Toxicol. Chem., 1995. 14(9): 1569-1574[9] Kuang Q J, Xia Y C. Algae and trophic status of Donghu Lake(Wuhan) with reference to their changes during the past 40 years [J].Journal of Lake Sciences, 1995,7(4):351-356. [况琪军,夏宜. 东湖主要湖区的藻类与营养型评价. 湖泊科学, 1995, 7(4):351-356] Yan H, Ye C M, Yin C Q. Kinetics of phthalate ester biodegration by Chlorella pyrenoidosa [J].Environ Toxic Chem, 1995, 14:931-938[2] Huang G L, Sun H G, Song Z H. Interactions between dibutyl phthalate and aquatic organisms [J]. Bull Environ Contam Toxicol., 1999, 63: 759-765[3] Thuren A. Effects of phthalate esters on the locomotor activity of the fresh water amphipod Gammarus Pulex [J]. Bull. Environ. Contam. Toxicol., 1991, 46: 159-166[4] Defoe D L. Solubility and toxicity of eight phthalate esters to four aquatic organismus [J]. Environmental Toxicity and Chemistry, 1990. 9: 623-636[5] APHA, AWWA, WPCF. Stand methods for the examination of water and wastewater.(Edi. 15th), Washington: American Public Health Association. 1980[6] Zhou Y X, Wang S D, Xia Y C. Hydrobios and environmental protection [M]. Beijing: Scientific press. 1983. [周永欣,王士达,夏宜. 水生生物与环境保护. 北京:科学出版社, 1983][7] Kuang Q J, Xia Y C, Wu Z B, et al. Study on the correlations between macrophytes and algae in artificial simulated ecosystem [J]. Acta Hydrobiologica Sinica, 1997, 21(1): 90-93. [况琪军,夏宜,吴振斌,等. 人工模拟生态系统中水生植物与藻类的相关性研究. 水生生物学报, 1997, 21(1):90-93][8] Adams W J, Biddinger G R, Robillard K A, et al. A summary of the acute tocixity of 14 Phthalate Esters to representative aquatic organisms [J]. Environ. Toxicol. Chem., 1995. 14(9): 1569-1574[9] Kuang Q J, Xia Y C. Algae and trophic status of Donghu Lake(Wuhan) with reference to their changes during the past 40 years [J].Journal of Lake Sciences, 1995,7(4):351-356. [况琪军,夏宜. 东湖主要湖区的藻类与营养型评价. 湖泊科学, 1995, 7(4):351-356]
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