Search results for "Nitrification"

showing 10 items of 192 documents

Nitrate removal microbiology in woodchip bioreactors : a case-study with full-scale bioreactors treating aquaculture effluents

2020

Woodchip bioreactors are viable low-cost nitrate (NO3−) removal applications for treating agricultural and aquaculture discharges. The active microbial biofilms growing on woodchips are conducting nitrogen (N) removal, reducing NO3− while oxidizing the carbon (C) from woodchips. However, bioreactor age, and changes in the operating conditions or in the microbial community might affect the NO3− removal as well as potentially promote nitrous oxide (N2O) production through either incomplete denitrification or dissimilatory NO3− reduction to ammonium (DNRA). Here, we combined stable isotope approach, amplicon sequencing, and captured metagenomics for studying the potential NO3− removal rates, a…

inorganic chemicalsdenitrifikaatioEnvironmental EngineeringDenitrification010504 meteorology & atmospheric sciencesNitrogenAquaculture010501 environmental sciences01 natural sciencesDenitrifying bacteriachemistry.chemical_compoundBioreactorstyppiNitraterecirculation aquaculture systemsBioreactorEnvironmental ChemistryWaste Management and DisposalEffluentvesiviljely (kalatalous)0105 earth and related environmental sciencesNitratesdenitrificationnitrous oxideorganic chemicalsfood and beveragesRecirculating aquaculture systemdityppioksidiequipment and suppliesPollution6. Clean waterDNRAnitrogen removalchemistryMicrobial population biology13. Climate actionEnvironmental chemistrybioreaktoritDenitrificationWoodchips
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Autochthonous organic matter promotes DNRA and suppresses N2O production in sediments of the coastal Baltic Sea

2021

Coastal environments are nitrogen (N) removal hot spots, which regulate the amount of land-derived N reaching the open sea. However, mixing between freshwater and seawater creates gradients of inorganic N and bioavailable organic matter, which affect N cycling. In this study, we compare nitrate reduction processes between estuary and offshore archipelago environments in the coastal Baltic Sea. Denitrification rates were similar in both environments, despite lower nitrate and carbon concentrations in the offshore archipelago. However, DNRA (dissimilatory nitrate reduction to ammonium) rates were higher at the offshore archipelago stations, with a higher proportion of autochthonous carbon. Th…

liuennut orgaaninen hiili0106 biological sciencesAMMONIUM DNRADenitrification010504 meteorology & atmospheric sciencessedimentitOceanographyOXIDATION01 natural sciencesCARBONchemistry.chemical_compoundNitrateDOMTotal organic carbonchemistry.chemical_classificationdenitrificationgeography.geographical_feature_categorysediment organic matterN2ODENITRIFICATIONNitrogenDNRAEnvironmental chemistryArchipelagoorgaaninen ainesgeographic locationsdenitrifikaatiosuistotchemistry.chemical_elementDISSIMILATORY NITRATE REDUCTIONAquatic ScienceestuaryESTUARIESOrganic matter14. Life underwater1172 Environmental sciences0105 earth and related environmental sciencesgeography010604 marine biology & hydrobiologyEstuaryNITROUS-OXIDEPATHWAYSEstuaryN-2Sediment organic matterchemistrytypensidonta13. Climate actionEnvironmental scienceSeawaterrannikkovedet
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Denitrification

2011

microorganism[SDV] Life Sciences [q-bio][SDE] Environmental SciencesdenitrificationN2Obacteria
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Microbial controls of greenhouse gas emissions from boreal lakes

2015

next generation sequencingdenitrifikaatiodenitrificationnitrous oxideDNA-analyysihumic lakeskalanistutusdityppioksidiChlorobiumilmastonmuutoksetjärvetmetaanihumusjärvetbakteeritmikrobiekologiamethanotrophsstratificationboreaalinen vyöhykemikrobistokasvihuonekaasuthiilinielutkerrostuneisuusmikrobitravintoverkotkalat
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Can differences in microbial abundances help explain enhanced N2O emissions in a permanent grassland under elevated atmospheric CO2?

2011

nirSGlobal and Planetary ChangegeographyN2O emissionsDenitrificationgeography.geographical_feature_categorydenitrificationEcologyEcology[SDE.MCG]Environmental Sciences/Global ChangesGrasslandAOAAOBsoilEnrichissement en gaz carboniqueConcentration élevée en CO2nosZFACEammonia oxidationEnvironmental ChemistryEnvironmental sciencenirKGeneral Environmental Science
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The interactive effects of various nitrogen fertiliser formulations applied to urine patches on nitrous oxide emissions in grassland

2017

AbstractPasture-based livestock agriculture is a major source of greenhouse gas (GHG) nitrous oxide (N2O). Although a body of research is available on the effect of urine patch N or fertiliser N on N2O emissions, limited data is available on the effect of fertiliser N applied to patches of urinary N, which can cover up to a fifth of the yearly grazed area. This study investigated whether the sum of N2O emissions from urine and a range of N fertilisers, calcium ammonium nitrate (CAN) or urea ± urease inhibitor ± nitrification inhibitor, applied alone (disaggregated and re-aggregated) approximated the N2O emission of urine and fertiliser N applied together (aggregated). Application of fertili…

nitrous oxide emission factors[ SDV.SA.SDS ] Life Sciences [q-bio]/Agricultural sciences/Soil studychemistry.chemical_elementUrine010501 environmental sciences01 natural sciencesGrasslandurease inhibitorchemistry.chemical_compoundPlant sciencelcsh:Agriculture (General)0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryEcology[ SDV.SA.STA ] Life Sciences [q-bio]/Agricultural sciences/Sciences and technics of agriculture04 agricultural and veterinary sciencesNitrous oxideequipment and suppliesNitrogenlcsh:S1-972urineAgronomyInteractive effectschemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencenitrification inhibitorAnimal Science and Zoologynitrogen fertiliserAgronomy and Crop ScienceFood ScienceIrish Journal of Agricultural and Food Research
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Discharge management in fresh and brackish water RAS: Combined phosphorus removal by organic flocculants and nitrogen removal in woodchip reactors

2020

The current study combined P and N removal using organic flocculant chemicals and woodchip bioreactors in both freshwater and brackish water (7 ppm) recirculating aquaculture systems (RAS). The use of carbon (C) containing flocculant chemicals in the process was hypothesized to further stimulate C-demanding N removal (denitrification) in bioreactors. The trial of combined P and N removal consisted of four treatments: freshwater and brackish water RAS with and without the addition of supernatant from flocculation process to the woodchip reactor. Duplicate woodchip reactors were used per treatment and the trial was run for six weeks. 56 % and 49 % of P was removed from fresh and brackish slud…

recirculating aquaculturedenitrifikaatioFlocculationDenitrificationBrackish waterChemistryPhosphoruschemistry.chemical_elementjätevesiAquatic SciencePulp and paper industrychemistry.chemical_compoundNitrateflocculationwoodchip bioreactorbioreaktoritBioreactorNitritewastewatervesiviljely (kalatalous)Carbonjäteveden käsittelyAquacultural Engineering
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Rapid change in forms of inorganic nitrogen in soil and moderate weed invasion following translocation of wet meadows to reclaimed post‐industrial la…

2019

Anthropogenic expansion and loss of natural environments calls for the more sustainable use of resources, including land. To combine the conservation of highly valuable meadow habitat with reclamation of post‐industrial land, 1.3 ha of turf were translocated from an urban area to basins constructed near an abandoned quarry. In contrast to the usual method of choosing similar habitats as salvage sites, the selected quarry possessed different environmental properties to the meadows, challenging their acclimatisation. To evaluate the project, we monitored three meadows (Molinion caeruleae alliance) for three seasons: immediately before the transfer and for 2 years afterwards. We recorded veget…

restorationturf transferhabitat relocationSoil ScienceChromosomal translocationgrassland conservationDevelopmentnitrificationAgronomyIndustrial landEnvironmental ChemistryEnvironmental scienceNitrificationWeedInorganic nitrogenGeneral Environmental ScienceLand Degradation & Development
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Inhibition of denitrification and N2O emission by urine-derived benzoic and hippuric acid

2006

Abstract Hippuric acid (HA) in cattle urine acts as a natural inhibitor of soil N2O emissions. As HA concentration varies with diet, we determined critical HA levels. We also tested the hypothesis that the inhibition occurs because the HA breakdown product benzoic acid (BA) inhibits denitrification rates. During a 64-day incubation, we quantified emissions from artificial urine varying in HA, BA and glycine (Gly) concentrations, added to a sandy pasture soil. Increasing HA concentration from 0.4 to 5.6 mmol kg−1 soil significantly decreased the average N2O flux by 54%. At 3.9 mmol kg−1 soil, denitrification levels were 50% reduced for BA as compared to Gly. We conclude that HA inhibits both…

sheepDenitrificationzandgrondenInorganic chemistrydistikstofmonoxideSoil ScienceUrineemission reductionMicrobiologyPasturesoilhippurinezuuremissiereductiechemistry.chemical_compoundAlterra - Centrum Bodemsandy soilsIncubationhippuric acidBenzoic acidgeographygeography.geographical_feature_categoryWIMEKdenitrificationnitrous oxidebenzoic acidSoil Science CentredenitrificatieHippuric acidbenzoëzuurNitrous oxidePE&RCpasturesurinenitrous-oxide emissionschemistryweidenEnvironmental chemistryGlycine
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Labile nitrogen, carbon, and phosphorus pools and nitrogen mineralization and immobilization rates at low temperatures in seasonally snow-covered soi…

2006

Surface mineral horizons from four ecosystems sampled in the northwestern Italian Alps were incubated at −3 and +3°C to simulate subnivial and early thaw period temperatures for a seasonally snow-covered area. The soil profiles at these sites represent extreme examples of management, grazed meadow (site M) and extensive grazing beneath larch (site L) or naturally disturbed by avalanche and colonized by alder (site A) and the expected forest climax vegetation beneath fir (site F). Changes in labile pools of nitrogen (N) and phosphorus (P) were active at all sites at both temperatures during 14 days of laboratory incubation. Ammonium was the dominant inorganic form of total dissolved N (TDN),…

snow covered soilsSoil Sciencechemistry.chemical_elementsnow covered soils; N; C; P poolsMicrobiologychemistry.chemical_compoundLand managementCEcosystemAmmoniumAmmonificationNitrogen cycleP poolsPhosphorusPhosphoruNNitrificationNitrogenAgronomychemistrySettore AGR/14 - PedologiaSub-alpine soilsEnvironmental chemistrySoil waterNitrificationDissolved organic nitrogenN immobilizationClimax communityAgronomy and Crop ScienceBiology and Fertility of Soils
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