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直链和支链烷基苯磺酸盐的淡水水生毒性及生物降解性演变的比较动力学研究

Comparative kinetics study of the evolution of freshwater aquatic toxicity and biodegradability of linear and branched alkylbenzene sulfonates.

作者信息

Gard-Terech A, Palla J C

出版信息

Ecotoxicol Environ Saf. 1986 Oct;12(2):127-40. doi: 10.1016/0147-6513(86)90049-7.

Abstract

Evolution of both primary biodegradability and acute toxicity to daphnia and zebra fish of a linear alkylbenzene sodium sulfonate (LAS) and a branched alkylbenzene sodium sulfonate (BAS) have been measured simultaneously. In six of eight experiments, LAS was biodegraded to 90% in 7 days and BAS to 70% in 7 days. In the two other experiments, both LAS and BAS have shown the same biodegradation speed and reached the same biodegradation level in 7 days: 45% in one experiment and 55% in the other. The composition of bacteria population and the level of cellular ATP of the inoculum play a decisive role in the biodegradation. These results confirm that it is essential to know the composition of bacteria population present in the inoculum as well as their biochemical characteristics to accurately interpret results of biodegradation tests. In the case of a rapid primary biodegradation of LAS and BAS, the acute toxicity of LAS remains three times as high as that of BAS for at least 24 hr toward daphnia and 48 hr toward zebra fish. Their acute toxicity to daphnia and zebra fish become equivalent only after 72 hr. When primary biodegradation of both products is slower, the acute toxicity of LAS remains higher than that of BAS for more than 7 days.

摘要

同时测定了直链烷基苯磺酸钠(LAS)和支链烷基苯磺酸钠(BAS)的初级生物降解性以及对水蚤和斑马鱼的急性毒性的演变。在八项实验中的六项中,LAS在7天内生物降解至90%,BAS在7天内生物降解至70%。在另外两项实验中,LAS和BAS均显示出相同的生物降解速度,并在7天内达到相同的生物降解水平:一项实验中为45%,另一项实验中为55%。接种物中的细菌种群组成和细胞ATP水平在生物降解中起决定性作用。这些结果证实,了解接种物中存在的细菌种群组成及其生化特性对于准确解释生物降解测试结果至关重要。在LAS和BAS快速初级生物降解的情况下,LAS的急性毒性对水蚤至少24小时比对BAS高两倍,对斑马鱼48小时高两倍。它们对水蚤和斑马鱼的急性毒性仅在72小时后才变得相当。当两种产品的初级生物降解较慢时,LAS的急性毒性在7天以上仍高于BAS。

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