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1.
Biodegradation ; 25(1): 41-53, 2014 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-23613160

RESUMEN

A field-scale fixed bed bioreactor was used to successfully treat an MTBE-contaminated aquifer in North Hollywood, CA without requiring inoculation with introduced bacteria. Native bacteria from the MTBE-impacted aquifer rapidly colonized the bioreactor, entering the bioreactor in the contaminated groundwater pumped from the site, and biodegraded MTBE with greater than 99 % removal efficiency. DNA sequencing of the 16S rRNA gene identified MTBE-degrading bacteria Methylibium petroleiphilum in the bioreactor. Quantitative PCR showed M. petroleiphilum enriched by three orders of magnitude in the bioreactor above densities pre-existing in the groundwater. Because treatment was carried out by indigenous rather than introduced organisms, regulatory approval was obtained for implementation of a full-scale bioreactor to continue treatment of the aquifer. In addition, after confirmation of MTBE removal in the bioreactor to below maximum contaminant limit levels (MCL; MTBE = 5 µg L(-1)), treated water was approved for reinjection back into the aquifer rather than requiring discharge to a water treatment system. This is the first treatment system in California to be approved for reinjection of biologically treated effluent into a drinking water aquifer. This study demonstrated the potential for using native microbial communities already present in the aquifer as an inoculum for ex-situ bioreactors, circumventing the need to establish non-native, non-acclimated and potentially costly inoculants. Understanding and harnessing the metabolic potential of native organisms circumvents some of the issues associated with introducing non-native organisms into drinking water aquifers, and can provide a low-cost and efficient remediation technology that can streamline future bioremediation approval processes.


Asunto(s)
Betaproteobacteria/metabolismo , Éteres Metílicos/metabolismo , ARN Ribosómico 16S/aislamiento & purificación , Contaminantes Químicos del Agua/metabolismo , Purificación del Agua/métodos , Carga Bacteriana , Betaproteobacteria/genética , Betaproteobacteria/aislamiento & purificación , Biodegradación Ambiental , Reactores Biológicos , California , Agua Subterránea/química , Agua Subterránea/microbiología , Reacción en Cadena de la Polimerasa , ARN Ribosómico 16S/genética
2.
Curr Opin Biotechnol ; 16(3): 246-53, 2005 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-15961025

RESUMEN

An area of intense scientific and practical interest is the biogeochemical and microbial processes determining the success of natural attenuation, biostimulation and/or bioaugmentation treatments for organic contaminants in groundwater. Recent studies in this area have focused on the reductive dechlorination of chlorinated solvents, the degradation of the fuel additive methyl tert-butyl ether, and the removal of long-term hydrocarbon contamination. These studies have been facilitated by the use of stable isotope analysis to demonstrate in situ bioremediation and push-pull tests, in which isotopes are injected into aquifers and then quickly retrieved and analyzed, to measure in situ activity. Molecular tools such as quantitative PCR, the detection of mRNA expression, and numerous DNA fingerprinting methods have also proved valuable, being employed to identify and sometimes quantify environmentally important organisms or changes in communities. Methods to track bacteria and tools to characterize bacterial attachment properties have also offered insight into bacterial transport in situ.


Asunto(s)
Bacterias/metabolismo , Biodegradación Ambiental , Contaminantes Químicos del Agua/metabolismo , Dermatoglifia del ADN/métodos , Hidrocarburos Clorados/metabolismo , Isótopos , Éteres Metílicos/metabolismo , Reacción en Cadena de la Polimerasa , Solventes/metabolismo , Abastecimiento de Agua
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