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首页> 外文期刊>Chemosphere >Application of an indigenous microorganisms-based fixed-bed GAC-biofilm reactor for passive and sustainable treatment of oil sands process water through combined adsorption and biodegradation processes
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Application of an indigenous microorganisms-based fixed-bed GAC-biofilm reactor for passive and sustainable treatment of oil sands process water through combined adsorption and biodegradation processes

机译:基于土着微生物的固定床GAC-BIOFILM反应器通过组合吸附和生物降解方法进行油砂工艺水的无源和可持续处理

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In this study, a fixed-bed biofilm reactor (biofilter) was developed and applied for oil sands process water (OSPW) remediation by using granular activated carbon (GAC) as packing media. Using quantitative polymerase chain reaction (qPCR) detection, the total bacterial copy number (16S) in the GAC biofiltration system was found to reach a relatively stable level (1.3 +/- 0.2 x 10(9) copies/g GAC) after 62 days of operation, and the thickness of biofilm on GAC surface was 26.7 +/- 4.3 mu m based on the scan of confocal laser scanning microscopy (CLSM). The established GAC-biofilter showed 95.4% naphthenic acids (NAs) removal from raw OSPW after 2 months of operation. The GAC-biofilter also showed 88.3% NAs removal after a long operation time (2 years), indicating its sustainable bioremediation capacity for OSPW. 16S and 18S rRNA gene-targeted metagenomic sequencing showed that the microbial community in the GAC biofilter had higher diversity and richness than that found in the sand biofilter which was used for OSPW treatment previously. Comamonadaceae and Saccharomycotina were found to be the dominant bacterial and fungal families in the GAC biofilter, respectively. Xenobiotic metabolism function of the microbial community may contribute significantly to the biodegradation of NAs. The GAC biofiltration process is a promising passive OSPW treatment approach that can be used in-situ.
机译:在该研究中,通过使用粒状活性炭(GAC)作为包装介质,开发并施加了一种固定床生物膜反应器(生物过滤器)并施加用于油砂处理水(OSPW)修复。使用定量聚合酶链反应(QPCR)检测,发现GAC生物过滤系统中的总细菌拷贝数(16s)达到62天后达到相对稳定的水平(1.3 +/- 0.2×10(9)拷贝/ g gac)基于共聚焦激光扫描显微镜(CLSM)的扫描,手术,生物膜对GAC表面上的生物膜厚度为26.7 +/-4.3μm。已建立的GAC-BIO过滤器显示出在2个月的操作后从原始OSPW中除去95.4%的环烷烃(NAS)。 GAC-Biofilter还显示出长期操作时间(2年)后的88.3%的NAS去除,表明其OSPW的可持续生物化能力。 16S和18S rRNA基因靶向的偏测序列表明,GAC生物过滤器中的微生物群落具有更高的多样性和丰富性,而不是在砂生物过滤器中发现的,其用于先前用于OSPW处理。发现Comamonadaceae和糖酵母分别是GAC生物过滤器中的显性细菌和真菌家族。微生物群落的异种症代谢功能可能对NAS的生物降解有显着贡献。 GAC生物过滤过程是一种有前途的无源OSPW处理方法,可以原位使用。

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