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烷基侧链位置和环化对环烷酸好氧生物转化的影响。

Effect of alkyl side chain location and cyclicity on the aerobic biotransformation of naphthenic acids.

机构信息

School of Civil and Environmental Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0512, United States.

出版信息

Environ Sci Technol. 2014 Jul 15;48(14):7909-17. doi: 10.1021/es501058q. Epub 2014 Jul 1.

DOI:10.1021/es501058q
PMID:24941126
Abstract

Aerobic biodegradation of naphthenic acids is of importance to the oil industry for the long-term management and environmental impact of process water and wastewater. The effect of structure, particularly the location of the alkyl side chain as well as cyclicity, on the aerobic biotransformation of 10 model naphthenic acids (NAs) was investigated. Using an aerobic, mixed culture, enriched with a commercial NA mixture (NA sodium salt; TCI Chemicals), batch biotransformation assays were conducted with individual model NAs, including eight 8-carbon isomers. It was shown that NAs with a quaternary carbon at the α- or β-position or a tertiary carbon at the β- and/or β'-position are recalcitrant or have limited biodegradability. In addition, branched NAs exhibited lag periods and lower degradation rates than nonbranched or simple cyclic NAs. Two NA isomers used in a closed bottle, aerobic biodegradation assay were mineralized, while 21 and 35% of the parent compound carbon was incorporated into the biomass. The NA biodegradation probability estimated by two widely used models (BIOWIN 2 and 6) and a recently developed model (OCHEM) was compared to the biodegradability of the 10 model NAs tested in this study as well as other related NAs. The biodegradation probability estimated by the OCHEM model agreed best with the experimental data and was best correlated with the measured NA biodegradation rate.

摘要

环烷酸的好氧生物降解对于石油工业具有重要意义,因为这关系到工艺用水和废水的长期管理和环境影响。本文研究了结构,特别是烷基侧链的位置和环状结构,对 10 种模型环烷酸(NA)的好氧生物转化的影响。使用一种好氧混合培养物,用商业 NA 混合物(TCI Chemicals 的 NA 钠盐)进行富集,进行了单独的模型 NA 的分批生物转化试验,包括 8 种 8 碳异构体。结果表明,α-或β-位具有季碳原子或β-和/或β'-位具有叔碳原子的 NA 是抗降解的或生物降解性有限。此外,支链 NA 比非支链或简单环状 NA 表现出滞后期和较低的降解速率。在封闭瓶好氧生物降解试验中,两种 NA 异构体被矿化,而 21%和 35%的母体化合物碳被纳入生物量。两种广泛使用的模型(BIOWIN 2 和 6)和最近开发的模型(OCHEM)估计的 NA 生物降解概率与本研究中测试的 10 种模型 NA 以及其他相关 NA 的生物降解性进行了比较。OCHEM 模型估计的生物降解概率与实验数据最吻合,与实测的 NA 生物降解速率相关性最好。

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Microorganisms. 2021 Oct 9;9(10):2124. doi: 10.3390/microorganisms9102124.
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Culturing oil sands microbes as mixed species communities enhances ex situ model naphthenic acid degradation.将油砂微生物作为混合物种群落进行培养可增强非原位模型环烷酸的降解。
Front Microbiol. 2015 Sep 4;6:936. doi: 10.3389/fmicb.2015.00936. eCollection 2015.