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10
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本文引用的文献

1
Relative toxicities and dispersing-evaluations of eleven oil-dispersing products.十一种油类分散产品的相对毒性及分散评估
J Water Pollut Control Fed. 1969 Dec;41(12):2062-9.
2
Bacteria which attack petroleum hydrocarbons in a saline medium.在含盐介质中分解石油碳氢化合物的细菌。
Biotechnol Bioeng. 1972 May;14(3):319-30. doi: 10.1002/bit.260140305.
3
Biodegradation of petroleum in seawater at low temperatures.低温下海水中石油的生物降解
Can J Microbiol. 1972 Dec;18(12):1851-5. doi: 10.1139/m72-289.
4
Distribution of hydrocarbon-utilizing bacteria in Northwestern Atlantic waters and coastal sediments.北大西洋西北部水域及沿海沉积物中烃类利用细菌的分布
Can J Microbiol. 1974 Jul;20(7):955-6. doi: 10.1139/m74-147.

四种分散剂对原油生物降解及细菌生长的影响

Effect of four dispersants on biodegradation and growth of bacteria on crude oil.

作者信息

Mulkins-Phillips G J, Stewart J E

出版信息

Appl Microbiol. 1974 Oct;28(4):547-52. doi: 10.1128/am.28.4.547-552.1974.

DOI:10.1128/am.28.4.547-552.1974
PMID:4418491
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC186769/
Abstract

Four chemical dispersants, Corexit 8666, Gamlen Sea Clean, G. H. Woods Degreaser-Formula 11470, and Sugee 2 were examined singly and in individual combinations with Arabian Crude Oil (1:1 ratio) at 10 and 25 C for their effects on the growth of bacteria indigenous to local marine waters, the bacterial population composition, and biodegradation of crude oil; in addition, their emulsifying capacities, at approximately 24 C, were determined. None of the dispersants used alone were toxic even at relatively high concentrations (1.25%), although Gamlen Sea Clean and G. H. Woods Degreaser-Formula 11470 did cause an increase in the lag phase which was more pronounced at 10 than at 25 C; addition of the crude oil reduced the lag phase increase. All of the dispersants used alone supported good growth of microorganisms, but qualitative population shifts were caused by the dispersant-oil combinations. The degrees of degradation of the n-alkane fraction of the crude oil varied depending upon the dispersant used. Under these test conditions, only Sugee 2, which had the poorest emulsifying capacity, promoted n-alkane degradation compared with the values obtained by using the crude oil alone.

摘要

对四种化学分散剂,即Corexit 8666、Gamlen Sea Clean、G.H. Woods脱脂剂配方11470和Sugee 2进行了单独以及与阿拉伯原油按1:1比例混合后的研究,研究温度为10℃和25℃,考察它们对当地海水中本土细菌生长、细菌种群组成以及原油生物降解的影响;此外,测定了它们在约24℃时的乳化能力。即使在相对高的浓度(1.25%)下,单独使用的分散剂均无毒性,不过Gamlen Sea Clean和G.H. Woods脱脂剂配方11470确实导致了延滞期延长,在10℃时比在25℃时更明显;添加原油减少了延滞期的延长。单独使用的所有分散剂均支持微生物良好生长,但分散剂与油的组合导致了种群定性变化。原油正构烷烃馏分的降解程度因所用分散剂而异。在这些测试条件下,与仅使用原油时相比,只有乳化能力最差的Sugee 2促进了正构烷烃的降解。