Search results for "microbial population"

showing 10 items of 133 documents

Aerobic granular sludge treating anaerobically pretreated brewery wastewater at different loading rates.

2020

Abstract In this study, three different aerobic granular sludge (AGS) reactors fed with anaerobically pre-treated brewery wastewater were studied. The AGS reactors were operated under different conditions including organic loading rates (OLR) between 0.8 and 4.1 kg COD m−3 d−1, C:N:P ratios (100:10:1 and 100:6:1) and food to microorganism ratios (F/M) between 0.8 ± 0.6 and 1.2 ± 0.5 and 0.9 ± 0.3 kg-TCOD kg-VSS−1d−1. Stable granulation was achieved within two weeks and the size of the granules increased according to the OLR applied. The results indicated that low C:N:P and F/M ratios were favorable to achieve stable aerobic granules in the long term. The carbon removal rate was load-indepen…

Environmental EngineeringMicroorganismchemistry.chemical_element02 engineering and technology010501 environmental sciencesWastewater01 natural sciencesFood to microorganism ratioWaste Disposal FluidGranulationBrewery wastewaterNutrientAnimal scienceBioreactors020401 chemical engineeringNutrient removal0204 chemical engineering0105 earth and related environmental sciencesWater Science and TechnologySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewageChemistryMicrobiotaPerformance resultsAerobiosisWastewaterMicrobial population biologyAerobic granular sludgeAerationCarbonOrganic loading rateWater science and technology : a journal of the International Association on Water Pollution Research
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Previous fire occurrence, but not fire recurrence, modulates the effect of charcoal and ash on soil C and N dynamics in Pinus pinaster Aiton forests.

2021

Abstract Understanding the effects of fire history on soil processes is key to characterise their resistance and resilience under future fire events. Wildfires produce pyrogenic carbonaceous material (PCM) that is incorporated into the soil, playing a critical role in the global carbon (C) cycle, but its interactions with soil processes are poorly understood. We evaluated if the previous occurrence of wildfires modulates the dynamic of soil C and nitrogen (N) and microbial community by soil ester linked fatty acids, after a new simulated low-medium intensity fire. Soils with a different fire history (none, one, two or three fires) were heat-shocked and amended with charcoal and/or ash deriv…

Environmental EngineeringPyrogenic carbonaceous materialsSettore AGR/13 - Chimica AgrariaForestscomplex mixturesWildfiresSoilMicrobial communityEnvironmental ChemistryPriming effectCharcoalWaste Management and DisposalFire historyBiomass (ecology)Fire regimebiologyN mineralizationMineralization (soil science)biology.organism_classificationPinusPollutionAgronomyMicrobial population biologyvisual_artCharcoalSoil watervisual_art.visual_art_mediumEnvironmental sciencePinus pinasterC mineralizationCyclingThe Science of the total environment
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Wastewater constituents impact biofilm microbial community in receiving streams

2022

Microbial life in natural biofilms is dominated by prokaryotes and microscopic eukaryotes living in dense association. In stream ecosystems, microbial biofilms influence primary production, elemental cycles, food web interactions as well as water quality. Understanding how biofilm communities respond to anthropogenic impacts, such as wastewater treatment plant (WWTP) effluent, is important given the key role of biofilms in stream ecosystem function. Here, we implemented 16S and 18S rRNA gene sequencing of stream biofilms upstream (US) and downstream (DS) of WWTP effluents in four Swiss streams to test how bacterial and eukaryotic communities respond to wastewater constituents. Stream biofil…

Environmental EngineeringmicropollutantWastewater treatmentjätevesiWastewaterbacterial communitybiofilmbakteeritbiofilmitpiilevätEnvironmental ChemistryEcosystemWaste Management and DisposalEffluentjäteveden käsittelyMicropollutantbiologyEcologyBiofilmAnthropogenic EffectsMicrobiotaAlphaproteobacteriaBiofilmDiatombiology.organism_classificationPollutionFood webdiatomwastewater treatmentmikrobistoMicrobial population biologyWastewaterjätevesikuormitusBiofilmsvirtavedetEnvironmental scienceSewage treatmentBacterial communityBiofilm; Wastewater treatment; Bacterial community; Diatom; Micropollutant
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Combined effects of compost and Medicago sativa in recovery a PCB contaminated soil

2020

The effectiveness of adding compost and the plant Medicago sativa in improving the quality of a soil historically contaminated by polychlorinated biphenyls (PCBs) was tested in greenhouse microcosms. Plant pots, containing soil samples from an area contaminated by PCBs, were treated with the compost and the plant, separately or together. Moreover, un-treated and un-planted microcosms were used as controls. At fixed times (1, 133 and 224 days), PCBs were analysed and the structure (cell abundance, phylogenetic characterization) and functioning (cell viability, dehydrogenase activity) of the natural microbial community were also measured. The results showed the effectiveness of the compost an…

FISH methodlcsh:Hydraulic engineeringSoil testplant-assisted bioremediationGeography Planning and Developmentmicrobial functioningpersistent organic pollutants010501 environmental sciencesAquatic Scienceengineering.material01 natural sciencesBiochemistrycomplex mixtures03 medical and health scienceslcsh:Water supply for domestic and industrial purposesFISHlcsh:TC1-978microbial functionELFAMedicago sativaPersistent organic pollutant030304 developmental biology0105 earth and related environmental sciencesWater Science and Technology0303 health scienceslcsh:TD201-500biologyCompostChemistrymicrobial structurefungifood and beveragesContaminationbiology.organism_classificationSoil contaminationplant-assisted bioremediation;persistent organic polluttantsHorticultureMicrobial population biologyengineeringMicrocosmBacteriafish methods
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Effects of heavy metals on soil microflora

2000

Elevated concentrations of heavy metals are known to cause disturbances in all living organisms. A reduction in the activity of forest microbes, expressed as decreased carbon and nitrogen mineralisation, may result in a slower rate of litter decomposition and slower nutrient cycling in the whole ecosystem (Baath 1989). In areas severely polluted by heavy metals, this can be seen as an accumulation of undecomposed litter on the forest floor. Thus, in addition to the direct toxicity of heavy metals, the trees may suffer from nutrient deficiency resulting from the decrease in the mineralisation of nutrients from the litter. Heavy metals can also retard litter decomposition processes in less po…

Forest floorNutrient cycleNutrientMicrobial population biologyChemistryEnvironmental chemistryLitterEcosystemComposition (visual arts)Vegetation
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High Diversity of the Viral Community from an Antarctic Lake

2009

Viruses are the most abundant biological entities and can control microbial communities, but their identity in terrestrial and freshwater Antarctic ecosystems is unknown. The genetic structure of an Antarctic lake viral community revealed unexpected genetic richness distributed across the highest number of viral families that have been found to date in aquatic viral metagenomes. In contrast to other known aquatic viromes, which are dominated by bacteriophage sequences, this Antarctic virus assemblage had a large proportion of sequences related to eukaryotic viruses, including phycodnaviruses and single-stranded DNA (ssDNA) viruses not previously identified in aquatic environments. We also o…

Genes ViralvirusesMolecular Sequence DataBiodiversityAntarctic RegionsDNA Single-StrandedFresh WaterGenome ViralBiologyVirus ReplicationFreezingAnimalsIce CoverEcosystemEcosystemMultidisciplinaryEcologyAquatic ecosystemDNA VirusesGenetic VariationBiodiversityCold ClimateMicrobial population biologyViral replicationMetagenomicsDNA ViralVirusesGenetic structureMetagenomeSeasonsSpecies richnessDNA CircularVirus Physiological PhenomenaScience
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Preliminary insights about the treatment of contaminated marine sediments by means of bioslurry reactor: Process evaluation and microbiological chara…

2022

Abstract Contaminated marine sediments represent a critical threat towards human health and ecosystems, since they constitute a potential reservoir of toxic compounds release. In the present study, a bioslurry reactor was studied for the treatment of real marine sediments contaminated by petroleum hydrocarbons. The experimental campaign was divided in two periods: in the first period, microcosm trials were carried out to achieve useful indicators for biological hydrocarbon removal from sediments. The microcosm trials highlighted that the inoculum of halotolerant allochthonous bacteria provided the highest performance followed by autochthonous biomass. Based on the achieved results, in the s…

Geologic SedimentsBioaugmentationEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSedimentBiomassContaminationPollutionHydrocarbonschemistry.chemical_compoundBiodegradation EnvironmentalPetroleumBioremediationchemistryMicrobial population biologyEnvironmental chemistryBioaugmentation Bioremediation Contaminated marine sediments Hydrocarbon pollution Microbial communityHumansEnvironmental ChemistryEnvironmental scienceTotal petroleum hydrocarbonMicrocosmWaste Management and DisposalEcosystemScience of The Total Environment
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Importance of denitrifiers lacking the genes encoding the nitrous oxide reductase for N2O emissions from soil

2010

Analyses of the complete genomes of sequenced denitrifying bacteria revealed that approximately 1/3 have a truncated denitrification pathway, lacking the nosZ gene encoding the nitrous oxide reductase. We investigated whether the number of denitrifiers lacking the genetic ability to synthesize the nitrous oxide reductase in soils is important for the proportion of N2O emitted by denitrification. Serial dilutions of the denitrifying strain Agrobacterium tumefaciens C58 lacking the nosZ gene were inoculated into three different soils to modify the proportion of denitrifiers having the nitrous oxide reductase genes. The potential denitrification and N2O emissions increased when the size of ino…

Global and Planetary Changeeducation.field_of_studyDenitrificationEcologyPopulationDenitrification pathwayNitrous-oxide reductaseBiologyequipment and suppliesDenitrifying bacteriaMicrobial population biologyBotanyEnvironmental ChemistryMicrocosmeducationNitrogen cycleGeneral Environmental ScienceGlobal Change Biology
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Response of soil bacterial community structure to successive perturbations of different types and intensities

2008

SummaryIn soil, genetic structure modifications of indigenousbacterial community consecutively to a severe stress(mercury contamination) were delayed when thecommunity was pre-exposed to various minor per-turbations (heat, copper and atrazine). Such minorperturbations induced transitory community struc-ture modifications leading to an increase of commu-nity stability towards a severe mercury stress. Theseresults illustrated well the short-term pre-adaptationprocess for bacterial community hypothesizing thatcommunity submitted to perturbations become moreresistant to withstand another stress. Compared with other environmental matrices of the bio-sphere, soils are considered as the main reservo…

Hot TemperatureRELATION SOL MICROORGANISME010501 environmental sciencesBiology01 natural sciencesMicrobiology03 medical and health sciencesMetals HeavyMercury contaminationEcosystemSoil MicrobiologyEcology Evolution Behavior and Systematics030304 developmental biology0105 earth and related environmental sciences2. Zero hunger0303 health sciencesMicrobial ViabilityHerbicidesEcologyCommunity structureMercury15. Life on landDNA FingerprintingSoil quality[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyMicrobial population biology13. Climate actionSoil waterAtrazineCopper
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Effect of primary mild stresses on resilience and resistance of the nitrate reducer community to a subsequent severe stress

2008

International audience; The factors regulating soil microbial stability (e.g. resistance and resilience) are poorly understood, even though microorganisms are essential for ecosystem functioning. In this study, we tested whether a functional microbial community subjected to different primary mild stresses was equally resistant or resilient to a subsequent severe stress. The nitrate reducers were selected as model community and analysed in terms of nitrate reduction rates and genetic structure by narG PCR-restriction fragment length polymorphism fingerprinting. Heat, copper and atrazine were used as primary stresses and mercury at a high concentration as a severe stress. None of the primary …

Hot TemperatureSTRESSRELATION SOL MICROORGANISMEDrug Resistance010501 environmental sciencesBacterial Physiological PhenomenaNITRATE REDUCERSNitrate Reductase01 natural sciencesMicrobiologyToxicologychemistry.chemical_compoundNitrateMetals HeavyFUNCTIONAL STABILITYFunctional stabilityPESTICIDEGeneticsHEAVY METALEcosystemAtrazineMolecular BiologySoil Microbiology0105 earth and related environmental sciencesBacteriaReducerEcology04 agricultural and veterinary sciences15. Life on landSOIL[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryMicrobial population biology13. Climate action040103 agronomy & agriculture0401 agriculture forestry and fisheriesAtrazineFEMS Microbiology Letters
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