Survival of prokaryotes in a polluted waste dump during remediation by alkaline hydrolysis
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Summary
Isolation of alkalitolerant bacterial pure cultures from the hydrolyzed soil confirmed that although alkaline hydrolysis severely reduces microbial community diversity and size certain bacteria survive a prolonged alkaline Hydrolysis process.
- Type
- article
- Published
- 2014-02-16
- Cited by
- 13
- References
- 100
- OpenAlex
- https://openalex.org/W24532314
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8647879
Keywords
Computer science
References
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- Accessing the Soil Metagenome for Studies of Microbial Diversity
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- Trends Expected in Stressed Ecosystems
- Description of Four Pentachlorophenol-Degrading Bacterial Strains as Sphingomonas chlorophenolica sp. nov.
Cited by
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- Degradation of Crude Oil and PAHs in Iron–Manganese Concretions and Sediment from the Northern Baltic Sea
- The pros and cons of ecological risk assessment based on data from different levels of biological organization
- Validation of GC–IRMS techniques for δ13C and δ2H CSIA of organophosphorus compounds and their potential for studying the mode of hydrolysis in the environment
- Microbial turnover times in the deep seabed studied by amino acid racemization modelling
- Characterizing chemical transformation of organophosphorus compounds by 13C and 2H stable isotope analysis.
- DIRECT LYSIS GLASS MILK METHOD OF GENOMIC DNA EXTRACTION REVEALS GREATER ARCHAEAL DIVERSITY IN ANAEROBIC BIODIGESTER SLURRY AS ASSESSED THROUGH DENATURING GRADIENT GEL ELECTROPHORESIS
- Carbon and hydrogen isotope analysis of parathion for characterizing its natural attenuation by hydrolysis at a contaminated site.
- Physical, chemical, and biological treatment of chemical waste from teaching laboratories at Universidad Nacional, Costa Rica
- Microbial iron reduction and greenhouse gas production in response to organic matter amendment and temperature increase of periglacial sediments, Bolterdalen, Svalbard
- Microbial functional shifts in a paradigmatic petrochemical brownfield: Mechanisms of adaptation in soil and groundwater.
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