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本文引用的文献

1
Anaerobic Oxidation of Toluene, Phenol, and p-Cresol by the Dissimilatory Iron-Reducing Organism, GS-15.异化型铁还原菌 GS-15 对甲苯、苯酚和对甲酚的厌氧氧化
Appl Environ Microbiol. 1990 Jun;56(6):1858-64. doi: 10.1128/aem.56.6.1858-1864.1990.
2
Rapid microbial mineralization of toluene and 1,3-dimethylbenzene in the absence of molecular oxygen.在无氧条件下快速微生物矿化甲苯和 1,3-二甲苯。
Appl Environ Microbiol. 1986 Oct;52(4):944-7. doi: 10.1128/aem.52.4.944-947.1986.
3
Availability of ferric iron for microbial reduction in bottom sediments of the freshwater tidal potomac river.铁在淡水潮汐波托马克河底沉积物中微生物还原的可用性。
Appl Environ Microbiol. 1986 Oct;52(4):751-7. doi: 10.1128/aem.52.4.751-757.1986.
4
Incorporation of Oxygen from Water into Toluene and Benzene during Anaerobic Fermentative Transformation.在厌氧发酵转化过程中,水的氧与甲苯和苯结合。
Appl Environ Microbiol. 1986 Jul;52(1):200-2. doi: 10.1128/aem.52.1.200-202.1986.
5
Organic matter mineralization with reduction of ferric iron in anaerobic sediments.有机物质在厌氧沉积物中伴随着铁离子的还原而矿化。
Appl Environ Microbiol. 1986 Apr;51(4):683-9. doi: 10.1128/aem.51.4.683-689.1986.
6
Biodegradation of cresol isomers in anoxic aquifers.缺氧含水层中甲酚异构体的生物降解
Appl Environ Microbiol. 1987 Apr;53(4):710-6. doi: 10.1128/aem.53.4.710-716.1987.
7
Anaerobic degradation of alkylated benzenes in denitrifying laboratory aquifer columns.反硝化实验室含水层柱中烷基化苯的厌氧降解
Appl Environ Microbiol. 1988 Feb;54(2):490-6. doi: 10.1128/aem.54.2.490-496.1988.
8
Transformation of toluene and benzene by mixed methanogenic cultures.混合产甲烷培养物对甲苯和苯的转化
Appl Environ Microbiol. 1987 Feb;53(2):254-60. doi: 10.1128/aem.53.2.254-260.1987.
9
Anaerobic degradation of aniline and dihydroxybenzenes by newly isolated sulfate-reducing bacteria and description of Desulfobacterium anilini.新分离的硫酸盐还原菌对苯胺和二羟基苯的厌氧降解及苯胺脱硫杆菌的描述
Arch Microbiol. 1989;152(6):556-63. doi: 10.1007/BF00425486.
10
Isolation and characterization of a bacterium that mineralizes toluene in the absence of molecular oxygen.一种在无氧条件下使甲苯矿化的细菌的分离与特性研究。
Arch Microbiol. 1990;154(4):336-41. doi: 10.1007/BF00276528.

硫酸盐还原条件下甲苯的微生物降解及铁对该过程的影响。

Microbial degradation of toluene under sulfate-reducing conditions and the influence of iron on the process.

作者信息

Beller H R, Grbić-Galić D, Reinhard M

机构信息

Department of Civil Engineering, Stanford University, California 94305-4020.

出版信息

Appl Environ Microbiol. 1992 Mar;58(3):786-93. doi: 10.1128/aem.58.3.786-793.1992.

DOI:10.1128/aem.58.3.786-793.1992
PMID:1575481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC195335/
Abstract

Toluene degradation occurred concomitantly with sulfate reduction in anaerobic microcosms inoculated with contaminated subsurface soil from an aviation fuel storage facility near the Patuxent River (Md.). Similar results were obtained for enrichment cultures in which toluene was the sole carbon source. Several lines of evidence suggest that toluene degradation was directly coupled to sulfate reduction in Patuxent River microcosms and enrichment cultures: (i) the two processes were synchronous and highly correlated, (ii) the observed stoichiometric ratios of moles of sulfate consumed per mole of toluene consumed were consistent with the theoretical ratio for the oxidation of toluene to CO2 coupled with the reduction of sulfate to hydrogen sulfide, and (iii) toluene degradation ceased when sulfate was depleted, and conversely, sulfate reduction ceased when toluene was depleted. Mineralization of toluene was confirmed in experiments with [ring-U-14C]toluene. The addition of millimolar concentrations of amorphous Fe(OH)3 to Patuxent River microcosms and enrichment cultures either greatly facilitated the onset of toluene degradation or accelerated the rate once degradation had begun. In iron-amended microcosms and enrichment cultures, ferric iron reduction proceeded concurrently with toluene degradation and sulfate reduction. Stoichiometric data and other observations indicate that ferric iron reduction was not directly coupled to toluene oxidation but was a secondary, presumably abiotic, reaction between ferric iron and biogenic hydrogen sulfide.

摘要

在接种了来自马里兰州帕塔克森特河附近一个航空燃料储存设施受污染地下土壤的厌氧微观世界中,甲苯降解与硫酸盐还原同时发生。以甲苯为唯一碳源的富集培养物也得到了类似结果。几条证据表明,在帕塔克森特河微观世界和富集培养物中,甲苯降解直接与硫酸盐还原耦合:(i)这两个过程是同步的且高度相关,(ii)观察到的每消耗一摩尔甲苯所消耗的硫酸盐摩尔数的化学计量比与甲苯氧化为二氧化碳并伴有硫酸盐还原为硫化氢的理论比值一致,以及(iii)当硫酸盐耗尽时甲苯降解停止,反之,当甲苯耗尽时硫酸盐还原停止。用[环 - U - 14C]甲苯进行的实验证实了甲苯的矿化作用。向帕塔克森特河微观世界和富集培养物中添加毫摩尔浓度的无定形氢氧化铁,要么极大地促进了甲苯降解的开始,要么在降解开始后加速了降解速率。在添加铁的微观世界和富集培养物中,三价铁还原与甲苯降解和硫酸盐还原同时进行。化学计量数据和其他观察结果表明,三价铁还原并非直接与甲苯氧化耦合,而是三价铁与生物源硫化氢之间的一个次生的、可能是非生物的反应。