Search results for "Microbial biodegradation"

showing 10 items of 16 documents

Molecular composition of dissolved organic matter from a wetland plant (Juncus effusus) after photochemical and microbial decomposition (1.25 yr): Co…

2013

We hypothesized that microbial and photochemical processing of dissolved organic matter (DOM) determines its molecular formula composition in aquatic systems to a greater degree than does the original source of the DOM. To test this hypothesis, we exposed DOM from a leachate of a wetland plant (Juncus effusus) to solar radiation or incubated it in the dark for 1.25 yr. Analysis of the extracted DOM of the leachates via Fourier-transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) identified 2800 molecular formulae. Of the formulae in the initial DOM, 11% were lost during microbial decomposition in the dark and 54% under solar radiation. Solar radiation also produced a large number…

0106 biological sciences010504 meteorology & atmospheric sciencesbiologyChemistry010604 marine biology & hydrobiologyAquatic ecosystemta1171biology.organism_classificationPhotochemistry01 natural sciencesDecompositionDeep seaWater columnGeochemistry and PetrologyEnvironmental chemistryJuncusDissolved organic carbonBotany14. Life underwaterLeachateMicrobial biodegradation0105 earth and related environmental sciences
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Successful aerobic bioremediation of groundwater contaminated with higher chlorinated phenols by indigenous degrader bacteria

2018

The xenobiotic priority pollutant pentachlorophenol has been used as a timber preservative in a polychlorophenol bulk synthesis product containing also tetrachlorophenol and trichlorophenol. Highly soluble chlorophenol salts have leaked into groundwater, causing severe contamination of large aquifers. Natural attenuation of higher-chlorinated phenols (HCPs: pentachlorophenol + tetrachlorophenol) at historically polluted sites has been inefficient, but a 4-year full scale in situ biostimulation of a chlorophenol-contaminated aquifer by circulation and re-infiltration of aerated groundwater was remarkably successful: pentachlorophenol decreased from 400 μg L−1 to <1 μg L−1 and tetrachlorophen…

0301 basic medicine246-TRICHLOROPHENOL DEGRADATIONTrichlorophenolDIVERSITYIn situ bioremediation010501 environmental sciences01 natural sciencesbiologinen puhdistusbakteeritBiostimulationchemistry.chemical_compoundQuantitative PCRpentachlorophenol hydroxylaseGroundwaterWaste Management and DisposalPENTACHLOROPHENOLWater Science and Technology2. Zero hungerpcpB geneEcological ModelingIon PGM amplicon sequencingin situ bioremediationContaminationPollutionAerobiosis6. Clean waterBiodegradation EnvironmentalEnvironmental chemistryPentachlorophenol hydroxylaseChlorophenolsEnvironmental Engineeringta1172030106 microbiologySphingomonas sensu latoMICROBIAL-DEGRADATION03 medical and health sciencesBioremediationbioremediationSPHINGOBIUM-CHLOROPHENOLICUMkloorifenolitta219Microbial biodegradationgeneBOREAL GROUNDWATER1172 Environmental sciences0105 earth and related environmental sciencesCivil and Structural EngineeringChlorophenolpohjavesiBacteriaorganic chemicalsion PGM amplicon sequencingSPHINGOMONADSEVOLUTIONPentachlorophenolSOILSchemistryGenes Bacterial13. Climate actionquantitative PCREnvironmental scienceWater Pollutants ChemicalGroundwater
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Kinetics of vinyl acetate biodegradation by Pseudomonas fluorescens PCM 2123

2018

Abstract The microbial degradation of vinyl acetate (VA) by Pseudomonas fluorescens PCM 2123 strain was studied in both batch and continuous modes. The purpose of the experiments was to determine the kinetic model of the cell growth and biodegradation rate of vinyl acetate (VA), which was the sole carbon and energy source for tested microorganisms. The experiments, carried out in a batch reactor for several initial concentrations of growth substrate in the liquid phase ranging from 18.6 to 373 gsubstrate·m−3 (gs·m−3) made it possible to choose the kinetic model and to estimate its constants. The Haldane inhibitory model with the values of constants: μm = 0.1202 h−1, KS = 17.195 gs·m−3, Ki =…

0301 basic medicineEnvironmental Engineeringbiology030106 microbiologyKineticsPseudomonasPseudomonas fluorescens010501 environmental sciencesBiodegradationbiology.organism_classification01 natural sciencesbatch and continuous cultures03 medical and health scienceschemistry.chemical_compoundchemistrykineticsPseudomonasVinyl acetateBioreactorvinyl acetateEnvironmental ChemistryMicrobial biodegradation0105 earth and related environmental sciencesNuclear chemistryvinyl acetate; Pseudomonas; kinetics; batch and continuous cultures
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Effects of alternative electron acceptors on the activity and community structure of methane-producing and consuming microbes in the sediments of two…

2017

The role of anaerobic CH4 oxidation in controlling lake sediment CH4 emissions remains unclear. Therefore, we tested how relevant EAs (SO42−, NO3−, Fe3+, Mn4+, O2) affect CH4 production and oxidation in the sediments of two shallow boreal lakes. The changes induced to microbial communities by the addition of Fe3+ and Mn4+ were studied using next-generation sequencing targeting the 16S rRNA and methyl-coenzyme M reductase (mcrA) genes and mcrA transcripts. Putative anaerobic CH4-oxidizing archaea (ANME-2D) and bacteria (NC 10) were scarce (up to 3.4% and 0.5% of archaeal and bacterial 16S rRNA genes, respectively), likely due to the low environmental stability associated with shallow depths.…

0301 basic medicineGeologic SedimentsMicroorganism116 Chemical sciencessedimentitApplied Microbiology and BiotechnologyRNA Ribosomal 16SMagnesiummikrobitoksidantitchemistry.chemical_classificationoxidantsEcologybiologyEcologymethane oxidationsedimentshapettuminenmethanogenesismcrAEnvironmental chemistrymicrobesOxidoreductasesMethaneOxidation-ReductionoxidationMethanogenesisIronta1172030106 microbiologyElectronsMethanobacteriajärvetmetaaniMicrobiology03 medical and health sciencesOrganic matter16S rRNAMicrobial biodegradationlakeBacteriata1183Carbon Dioxidebiology.organism_classificationArchaeaLakessedimentchemistry13. Climate actionAnaerobic oxidation of methaneBacteriaArchaeaFEMS Microbiology Ecology
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Evidence for 2,4-D mineralisation in Mediterranean soils: impact of moisture content and temperature

2009

BACKGROUND: The 2,4-D degradation ability of the microbiota of three arable Mediterranean soils was estimated. The impact of soil moisture and temperature on 2,4-D degradation was investigated. RESULTS: The microbiota of the three soils regularly exposed to 2,4-D were able rapidly to mineralise this herbicide. The half-life of 2,4-D ranged from 8 to 30 days, and maximum mineralisation of 14C-2,4-D ranged from 57 to 71%. Extractable 14C-2,4-D and 14C-bound residues accounted for less than 1 and 15% respectively of the 14C-2,4-D initially added. The highest amounts of 14C-2,4-D bound residues were recorded in the soil with the lowest 2,4-D-mineralising ability. Although all three soils were a…

2. Zero hungerMediterranean climateSoil classificationSoil science04 agricultural and veterinary sciencesGeneral MedicineMineralization (soil science)15. Life on land010501 environmental sciencesPesticide01 natural sciencesAgronomyMicrobial population biology13. Climate actionInsect ScienceSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceMicrobial biodegradationAgronomy and Crop ScienceWater content0105 earth and related environmental sciencesPest Management Science
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Amino polyphosphonates - chemical features and practical uses, environmental durability and biodegradation

2012

Growing concerns about the quality of the environment led to the introduction of complex system of safety assessment of synthetically manufactured and commonly applied chemicals. Sometimes, however, our knowledge of consequences that result from the usage of these substances, appears far later, than at the beginning of their application. Such situation is observed in the case of aminopolyphosphonates being an important subgroup of organophosphorus compounds. The increasing industrial and household applications, led to introduce thousand tons of polyphosphonates every year into the environment. These substances are difficult to determine in environmental samples because of lack of appropriat…

BacteriaBacteria; Biodegradation Environmental; Biotechnology; Organophosphorus Compounds; Waste Water; Water PurificationAquatic ecosystemAmbientaleBioengineeringGeneral MedicineWastewaterBiodegradationDurabilityEnvironmentalWater PurificationBiodegradation EnvironmentalOrganophosphorus CompoundsWastewaterEnvironmental chemistryBiodegradationEnvironmental scienceWaste WaterBiochemical engineeringMicrobial biodegradationMolecular BiologyBiotechnology
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Biostimulation of in situ microbial degradation processes in organically-enriched sediments mitigates the impact of aquaculture

2019

Fish farm deposition, resulting in organic matter accumulation on bottom sediments, has been identified as among the main phenomena causing negative environmental impacts in aquaculture. An in situ bioremediation treatment was carried out in order to reduce the organic matter accumulation in the fish farm sediments by promoting the natural microbial biodegradation processes. To assess the effect of the treatment, the concentration of organic matter in the sediment and its microbial degradation, as well as the response of the benthic prokaryotic community, were investigated. The results showed a significant effect of the treatment in stimulating microbial degradation rates, and the consequen…

Geologic SedimentsEnvironmental EngineeringHealth Toxicology and MutagenesisFish farmingBioactivator0208 environmental biotechnologyFisheriesAquaculture02 engineering and technology010501 environmental sciences01 natural sciencesDeposition (geology)Prokaryotic diversityBiostimulationBioremediationAquacultureAnimalsEnvironmental ChemistryOrganic matter14. Life underwaterMicrobial biodegradation0105 earth and related environmental scienceschemistry.chemical_classificationExtracellular enzymatic activitybusiness.industryLachnospiraceaeFishesPublic Health Environmental and Occupational HealthFish farmGeneral MedicineGeneral ChemistryPollution6. Clean water020801 environmental engineeringchemistry13. Climate actionEnvironmental chemistryEnvironmental scienceOrganic matterbusiness
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Degradation of simazine by microorganisms isolated from soils of Spanish olive fields.

2005

Special Issue: Pesticides, Microbial Functions and Biodiversity in Soil; The capability of the microbial flora isolated from an olive field soil from Andalusia to mineralize simazine has been analyzed. From this soil, a group of bacteria capable of degrading 60 mg simazine litre-1 in less than a week has been isolated. These microorganisms showed a low capacity for degrading this herbicide to carbon dioxide. When total DNA was isolated from this group of bacteria, we were able to detect by PCR the presence of only the atzC and the trzN genes. Some components of this bacterial population have been identified by sequencing of specific fragments from bacterial 16S rDNA, including Variovorax sp…

Methylopila capsulataDNA BacterialTime Factors[SDV]Life Sciences [q-bio]MicroorganismSimazineSimazinesoilchemistry.chemical_compoundOleaBotanyFood scienceMicrobial biodegradationPhylogenySoil MicrobiologybiologyBacteriaMolecular StructureChemistryHerbicidesGeneral MedicineBiodegradationbiology.organism_classificationBiodegradation EnvironmentalModels ChemicalGenes BacterialSpainInsect Science[SDE]Environmental SciencesPseudoxanthomonas mexicanamicrobial degradationAgronomy and Crop ScienceSoil microbiologyBacteriaPest management science
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Microbial Degradation of 2,4,6-Trinitrotoluene In Vitro and in Natural Environments

2013

2,4,6-Trinitrotoluene (TNT) is a nitroaromatic explosive that was released into soil and water ecosystems mainly due to its massive use during the two world wars.

Nematoloma frowardiibiologyExplosive materialChemistryEnvironmental chemistryTrinitrotolueneStropharia rugosoannulataEcosystemMicrobial biodegradationbiology.organism_classificationNatural (archaeology)
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Microbes and Persistent Organic Pollutants in the Marine Environment

2020

Marine pollution has increased reaching the entire marine environment, from the surface to the deepest sediment, and has become more concerning in the last 70 years. Persistent organic pollutants (POPs) are a fraction of ocean waste that includes, among the others, polycyclic aromatic hydrocarbons (PAHs) and plastic polymers. These chemicals have an extremely long half-life, and (bio)accumulate and damage the marine flora and fauna, and, ultimately, human health. Some organisms have evolved enzymes to attack POPs in the environment and transform them into biomass and CO2. Several microorganisms degrade many POPs in relatively short time. A wide variety of bacteria has been isolated with dif…

PollutantEnvironmental EngineeringbiologyEcological ModelingMicroorganismSedimentBiomass010501 environmental sciencesBiodegradationPlastispherebiology.organism_classification01 natural sciencesPollutionMarine pollutionPAHsMarine biodegradersEnvironmental chemistryEnvironmental ChemistryEnvironmental scienceMicrobial biodegradationPOPsBacteria0105 earth and related environmental sciencesWater Science and TechnologyBioplastics
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