Department of Environmental Engineering, Technical University of Denmark, Bygningstorvet, Building 115, 2800 Kgs. Lyngby, Denmark.
Safety & Environmental Assurance Centre, Unilever, Bedford MK44 1LQ, U.K.
Environ Sci Technol. 2022 Jan 4;56(1):293-301. doi: 10.1021/acs.est.1c05583. Epub 2021 Dec 22.
Biodegradation of organic chemicals emitted to the environment is carried out by mixed microbial communities growing on multiple natural and xenobiotic substrates at low concentrations. This study aims to (1) perform simulation type biodegradation tests at a wide range of mixture concentrations, (2) determine the concentration effect on the biodegradation kinetics of individual chemicals, and (3) link the mixture concentration and degradation to microbial community dynamics. Two hundred ninety-four parallel test systems were prepared using wastewater treatment plant effluent as inoculum and passive dosing to add a mixture of 19 chemicals at 6 initial concentration levels (ng/L to mg/L). After 1-30 days of incubation at 12 °C, abiotic and biotic test systems were analyzed using arrow solid phase microextraction and GC-MS/MS. Biodegradation kinetics at the highest test concentrations were delayed for several test substances but enhanced for the reference chemical naphthalene. Test concentration thus shifted the order in which chemicals were degraded. 16S rRNA gene amplicon sequencing indicated that the highest test concentration (17 mg C/L added) supported the growth of the genera , , and , whereas no such effect was observed at lower concentrations. The chemical and microbial results confirm that too high mixture concentrations should be avoided when aiming at determining environmentally relevant biodegradation data.
环境中排放的有机化学品的生物降解是由在多种自然和外来基质上生长的混合微生物群落在低浓度下进行的。本研究旨在:(1) 在广泛的混合物浓度范围内进行模拟型生物降解测试;(2) 确定浓度对个别化学品生物降解动力学的影响;(3) 将混合物浓度与微生物群落动态联系起来。使用污水处理厂的出水作为接种物,并采用被动给药的方法,在 6 个初始浓度水平(ng/L 到 mg/L)下添加 19 种化学物质的混合物,制备了 294 个平行测试系统。在 12°C 下孵育 1-30 天后,使用箭头固相微萃取和 GC-MS/MS 分析非生物和生物测试系统。对于几种测试物质,最高测试浓度下的生物降解动力学被延迟,但对于参考化学物质萘则被增强。因此,测试浓度改变了化学物质降解的顺序。16S rRNA 基因扩增子测序表明,最高测试浓度(添加 17mg C/L)支持属 、 、 和 的生长,而在较低浓度下则没有观察到这种效应。化学和微生物结果证实,当旨在确定与环境相关的生物降解数据时,应避免过高的混合物浓度。