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本文引用的文献

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Structural characteristics of polycyclic aromatic hydrocarbon isomers in coal tars and combustion products.煤焦油和燃烧产物中多环芳烃异构体的结构特征
Environ Sci Technol. 1986 Oct 1;20(10):1023-7. doi: 10.1021/es00152a010.
2
Isolation of adherent polycyclic aromatic hydrocarbon (PAH)-degrading bacteria using PAH-sorbing carriers.使用多环芳烃吸附载体分离粘附性多环芳烃降解细菌。
Appl Environ Microbiol. 2000 May;66(5):1834-43. doi: 10.1128/AEM.66.5.1834-1843.2000.
3
The effect of growth conditions on the biodegradation of tributyl phosphate and potential for the remediation of acid mine drainage waters by a naturally-occurring mixed microbial culture.生长条件对磷酸三丁酯生物降解的影响以及天然混合微生物培养物对酸性矿山排水的修复潜力。
Appl Microbiol Biotechnol. 1998 Feb;49(2):202-9. doi: 10.1007/s002530051159.
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Potentiation of 2,6-dinitrotoluene genotoxicity in Fischer 344 rats by pretreatment with coal tar creosote.用煤焦油杂酚油预处理增强2,6-二硝基甲苯对费希尔344大鼠的遗传毒性。
J Toxicol Environ Health. 1995 Mar;44(3):319-36. doi: 10.1080/15287399509531962.
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32P-postlabeling determination of DNA adducts in the earthworm Lumbricus terrestris exposed to PAH-contaminated soils.
Bull Environ Contam Toxicol. 1995 May;54(5):654-61. doi: 10.1007/BF00206095.
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Amphibian micronucleus test in vivo: evaluation of the genotoxicity of some major polycyclic aromatic hydrocarbons found in a crude oil.两栖动物体内微核试验:对原油中发现的一些主要多环芳烃的遗传毒性评估
Mutagenesis. 1995 May;10(3):223-6. doi: 10.1093/mutage/10.3.223.
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Induction of single strand DNA breaks in workers professionally exposed to polycyclic aromatic hydrocarbons.职业接触多环芳烃的工人中双链DNA断裂的诱导情况
Neoplasma. 1995;42(3):115-8.
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Mammary carcinogenicity in female CD rats of fjord region diol epoxides of benzo[c]phenanthrene, benzo[g]chrysene and dibenzo[a,l]pyrene.苯并[c]菲、苯并[g] Chrysene和二苯并[a,l]芘的峡湾地区二醇环氧化物对雌性CD大鼠的乳腺致癌性。
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9
Polycyclic aromatic hydrocarbon mutagenesis of human epidermal keratinocytes in culture.培养的人表皮角质形成细胞的多环芳烃诱变作用
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10
Microbial metabolism of polycyclic aromatic hydrocarbons: isolation and characterization of a pyrene-degrading bacterium.多环芳烃的微生物代谢:一株降解芘细菌的分离与鉴定
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烷基磷酸盐和一氧化二氮对多环芳烃微生物降解的影响。

Effects of alkylphosphates and nitrous oxide on microbial degradation of polycyclic aromatic hydrocarbons.

作者信息

Bogan B W, Lahner L M, Trbovic V, Szajkovics A M, Paterek J R

机构信息

Gas Technology Institute, 1700 South Mount Prospect Rd., Des Plaines, IL 60018, USA.

出版信息

Appl Environ Microbiol. 2001 May;67(5):2139-44. doi: 10.1128/AEM.67.5.2139-2144.2001.

DOI:10.1128/AEM.67.5.2139-2144.2001
PMID:11319093
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC92848/
Abstract

We conducted a series of liquid-culture experiments to begin to evaluate the abilities of gaseous sources of nitrogen and phosphorus to support biodegradation of polycyclic aromatic hydrocarbons (PAHs). Nutrients examined included nitrous oxide, as well as triethylphosphate (TEP) and tributylphosphate (TBP). Cultures were established using the indigenous microbial populations from one manufactured gas plant (MGP) site and one crude oil-contaminated drilling field site. Mineralization of phenanthrene was measured under alternative nutrient regimes and was compared to that seen with ammoniacal nitrogen and PO(4). Parallel cultures were used to assess removal of a suite of three- to five-ring PAHs. In summary, the abilities of the different communities to degrade PAH when supplemented with N(2)O, TEP, and TBP were highly variable. For example, in the MGP soil, organic P sources, especially TBP, supported a considerably higher degree of removal of low-molecular-weight PAHs than did PO(4); however, loss of high-molecular-weight compounds was impaired under these conditions. The disappearance of most PAHs was significantly less in the oil field soil when organophosphates were used. These results indicate that the utility of gaseous nutrients for PAH bioremediation in situ may be limited and will very likely have to be assessed on a case-by-case basis.

摘要

我们进行了一系列液体培养实验,以开始评估气态氮源和磷源支持多环芳烃(PAHs)生物降解的能力。所检测的营养物质包括一氧化二氮,以及磷酸三乙酯(TEP)和磷酸三丁酯(TBP)。使用来自一个煤气厂(MGP)场地和一个原油污染钻井场场地的本地微生物群落建立培养物。在不同的营养条件下测量菲的矿化,并与使用氨态氮和PO(4)时的情况进行比较。平行培养用于评估一组三至五环PAHs的去除情况。总之,当添加N(2)O、TEP和TBP时,不同群落降解PAH的能力差异很大。例如,在MGP土壤中,有机磷源,尤其是TBP,比PO(4)支持更高程度的低分子量PAHs去除;然而,在这些条件下高分子量化合物的损失受到损害。当使用有机磷酸盐时,大多数PAHs在油田土壤中的消失明显较少。这些结果表明,气态营养物质用于原位PAH生物修复的效用可能有限,很可能必须逐案评估。