Search results for "Nitrogen"

showing 10 items of 1200 documents

Effects of Increasing Doses of Nitrogen Fertilization on Winter Melon Production in the Western Coast of Sicily

2010

The winter melon is largely grown in the open field in the Mediterranean island of Sicily on about 6000 hectares. Nitrogen fertilization is a key aspect of a winter melon cultural system as it can dramatically improve fruit production and play a crucial role on fruit quality attributes such as fruit size, colour and uniformity. An experiment was performed to determine the influence of increasing doses of nitrogen fertilization on fruit yield and quality of winter melon. The trial was conducted in the north-western coast of Sicily near Buseto Palizzolo in the province of Trapani, 250-m elevation. Plug type transplants cv. Helios were planted in the first week of May. A transparent polyethyle…

Melon vegetable crops fertilizationSettore AGR/04 - Orticoltura E FloricolturaNitrogen Fertilization
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Synthesis and analysis of activity of a potential anti-melanoma prodrug with a hydrazine linker

2013

A potential anti-melanoma prodrug containing a phenolic activator, a hydrazine linker, and a nitrogen mustard effector - (N-{4-[bis-(2-chloroethyl)amino]benzoyl}-N'-(4-hydroxybenzyl)hydrazine) has been synthesized in seven steps. Spectrophotometric measurements of its oxidation by tyrosinase showed a rapid increase of absorbance at 337 nm. HPLC analysis demonstrated that two major products were formed. However, during the reaction one of the products was converted into the other. The stable product with a maximum of absorption at 337 nm was isolated and identified as 5,6-dihydroxy-1H-indazol-1-yl 4-[bis-(2-chloroethyl)amino]benzoate. It was formed by a cyclization of the enzymatically gener…

MelphalanStereochemistryTyrosinaseHydrazineMelanoma Experimentaltyrosinasechemistry.chemical_compoundMiceNucleophileCell Line TumorDrug DiscoverymedicineAnimalsProdrugsMechlorethamineTyrosineneoplasmsPharmacologyanti-melanoma prodrugChemistryMonophenol MonooxygenaseOrganic Chemistrynitrogen mustardhydrazineGeneral MedicineProdrugNitrogen mustardHydrazinesCyclizationLinkermedicine.drugEuropean Journal of Medicinal Chemistry
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Nitrogen recovery using a membrane contactor: Modelling nitrogen and pH evolution

2020

[EN] A hollow fibre membrane contactor has been applied for nitrogen recovery from anaerobic digestion supernatant at different operating conditions obtaining nitrogen recovery efficiencies over 99 %. A mathematical model able to represent the time evolution of pH and nitrogen concentration during the recovery process is presented in this paper. The developed model accurately reproduced the results obtained in 26 experiments carried out at different pH values (from 9 to 11), temperatures (from 25 to 35 degrees C), membrane surfaces (from 1.2 to 2.4 m(2)) and feed flow rates (from 0.33 x 10(-5) to 5.83 x 10(-5) m(3)/s) predicting the variations in nitrogen recovery rates measured at the diff…

Membrane contactor for nitrogen recoverychemistry.chemical_elementPH modelling02 engineering and technologyAmmonia recovery010501 environmental sciences01 natural sciencesNutrient recovery from anaerobic digestionChemical Engineering (miscellaneous)Waste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesContactorNitrogen recovery modellingChemistryProcess Chemistry and Technology021001 nanoscience & nanotechnologyAlkali metalPollutionNitrogenVolumetric flow rateAnaerobic digestionMembraneChemical engineeringReagentScientific method0210 nano-technologyJournal of Environmental Chemical Engineering
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Simultaneous sludge minimization, biological phosphorous removal and membrane fouling mitigation in a novel plant layout for MBR.

2020

Abstract The integration of one anaerobic reactor in the mainstream (AMSR) of a pre-denitritication-MBR was evaluated with the aim to achieve simultaneous sludge minimization and phosphorous removal. The excess sludge production was reduced by 64% when the AMSR was operated under 8 h of hydraulic retention time (HRT). The highest nutrients removal performances referred to organic carbon (98%), nitrogen (90%) and phosphorous (97%) were obtained under 8 h of HRT. In contrast, prolonged anaerobic-endogenous conditions were found to be detrimental for all nutrients removal performances. Similarly, the lowest membrane fouling tendency (FR = 0.65∙1011 m−1 d−1) was achieved under 8 h of HRT, where…

Membrane foulingEndogenous P-releaseEnvironmental EngineeringHydraulic retention timeNitrogen0208 environmental biotechnologychemistry.chemical_element02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawMembrane bioreactor01 natural sciencesWaste Disposal FluidNutrientBioreactorsAnaerobic reactorSludge minimization.Waste Management and Disposal0105 earth and related environmental sciencesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewageChemistryMembrane foulingMembranes ArtificialPhosphorusGeneral MedicinePulp and paper industryBiological nutrients removalNitrogen020801 environmental engineeringMembrane BioReactorPolyphosphate-accumulating organismsJournal of environmental management
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Biological minimization of excess sludge in a membrane bioreactor: Effect of plant configuration on sludge production, nutrient removal efficiency an…

2018

Abstract Excess sludge minimization was studied in a MBR with pre-denitrification scheme. Sludge minimization, nitrogen removal performance and membrane fouling tendency were investigated in two configurations, characterized by a different position of the sludge retention reactor (SRR). In particular, the SRR was placed: i) in the return activated sludge line (Anaerobic Side-Stream Reactor – ASSR configuration) and ii) in the mainstream between the anoxic and aerobic reactor (Anaerobic Main-Stream Reactor – AMSR configuration). The achieved results demonstrated that the ASSR enabled a higher excess sludge reduction (74% vs 32%), while achieving lower biological nitrogen removal (BNR) (TN = …

Membrane foulingEnvironmental EngineeringNitrogen0208 environmental biotechnologyPopulationBioreactorBioengineering02 engineering and technology010501 environmental sciencesMembrane bioreactor01 natural sciencesNitrogen removalExcess sludge reductionWaste Disposal FluidNutrientBiomaBioreactorsBiomasseducationWaste Management and Disposal0105 earth and related environmental sciencesUncoupling metabolismeducation.field_of_studySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewageChemistryRenewable Energy Sustainability and the EnvironmentMembrane foulingGeneral MedicineNitrogen removalPulp and paper industryAnoxic waters020801 environmental engineeringActivated sludgeDenitrificationMembrane bioreactorAnaerobic exerciseBioresource technology
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Integrated fixed-film activated sludge membrane bioreactors versus membrane bioreactors for nutrient removal: A comprehensive comparison

2018

Abstract This research elucidates the pollutants (nutrients and carbon) removal performance and nitrous oxide (N2O) emissions of two pilot plants. Specifically, a University of Cape Town (UCT) Membrane Bioreactor (MBR) plant and an Integrated Fixed Film Activated Sludge (IFAS)-UCT-MBR plant were investigated. The plants were fed with real wastewater augmented with acetate and glycerol in order to control the influent carbon nitrogen ratio (C/N). The short-term effect of the inlet C/N ratio variation (C/N = 5 mgCOD/mgN and C/N = 10 mgCOD/mgN) on the behaviour of both plants was investigated. The results showed that the IFAS-UCT-MBR configuration provided the best performance in terms of poll…

Membrane foulingEnvironmental EngineeringNitrogen0208 environmental biotechnologychemistry.chemical_element02 engineering and technologyWastewater010501 environmental sciencesManagement Monitoring Policy and LawMembrane bioreactorWaste Disposal Fluid01 natural sciencesBioreactorsNutrient removalBioreactorGreenhouse gaseWaste Management and Disposal0105 earth and related environmental sciencesSewageFoulingSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryBiofilmMembrane foulingMembranes ArtificialGeneral MedicineRespirometryPulp and paper industryNitrogen020801 environmental engineeringActivated sludgeMembraneWastewater
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A comprehensive integrated membrane bioreactor model for greenhouse gas emissions

2018

Abstract A comprehensive integrated membrane bioreactor (MBR) model for wastewater treatment is here proposed. The model quantifies the main biological and physical processes. The model describes the biological removal of organic matter, nitrogen and phosphorus including greenhouse gases (carbon dioxide, CO 2 and nitrous oxide, N 2 O). The model takes into account the following main innovative aspects jointly: i. Two-step nitrification process; ii. N 2 O formation due to ammonia-oxidizing bacteria as a product of the hydroxylamine oxidation (NH 2 OH) and of the nitrite (NO 2 − ) reduction; iii. Soluble microbial product (SMP) formation/degradation due to microbial growth and endogenous resp…

Membrane foulingNitrous oxide modellingDenitrificationModel calibrationGeneral Chemical Engineering0208 environmental biotechnologychemistry.chemical_elementWastewater treatment02 engineering and technology010501 environmental sciencesMembrane bioreactor01 natural sciencesIndustrial and Manufacturing Engineeringchemistry.chemical_compoundHydroxylamineEnvironmental ChemistryChemical Engineering (all)0105 earth and related environmental sciencesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistry (all)Membrane foulingNitrous oxide formation pathwayGeneral ChemistryNitrogen020801 environmental engineeringPilot plantchemistryEnvironmental chemistryNitrificationSewage treatmentChemical Engineering Journal
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Sequential batch membrane bio-reactor for wastewater treatment: The effect of increased salinity

2016

In this work, a sequential batch membrane bioreactor pilot plant is investigated to analyze the effect of a gradual increase in salinity on carbon and nutrient removal, membrane fouling and biomass kinetic parameters. The salinity was increased by 2 g NaCl L-1 per week up to 10 g NaCl L-1. The total COD removal efficiency was quite high (93%) throughout the experiment. A gradual biomass acclimation to the salinity level was observed during the experiment, highlighting the good recovery capabilities of the system. Nitrification was also influenced by the increase in salinity, with a slight decrease in nitrification efficiency (the lowest value was obtained at 10 g NaCl L-1 due to lower nitri…

Membrane foulingSalinityRespirometric batch testEnvironmental EngineeringBiofoulingOrganic carbon and nitrogen removal0208 environmental biotechnologyBiomassPilot ProjectsBioengineering02 engineering and technologyWastewater010501 environmental sciencesMembrane bioreactor01 natural sciencesBioreactorsWaste ManagementExtracellular polymeric substanceBioreactorBiomassWaste Management and Disposal0105 earth and related environmental sciencesBiological Oxygen Demand AnalysisFoulingSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentChemistryMembrane foulingEnvironmental engineeringMembranes ArtificialGeneral MedicinePulp and paper industryNitrificationCarbon020801 environmental engineeringSalinityWastewaterExtracellular polymeric substances; Membrane fouling; Organic carbon and nitrogen removal; Respirometric batch tests; Salinity; Bioengineering; Environmental Engineering; Waste Management and DisposalNitrification
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Chemical and electrochemical behaviour of 4,4’,4’’,4’’’-tetrakis(dimethylamino)-tetraphenylethylene in an oxidant environment: Toward a new sensor fo…

2020

Abstract Electrochromic compounds are suitable candidates for being used in sensor design. Here we report the use of 4,4’,4’’,4’’’-tetrakis(dimethylamino)-tetraphenylethylene for detecting both NO2 and SO2. Whereas the sensing mechanism in the case of nitrogen dioxide is a simple chemical oxidation reaction, in the case of sulfur dioxide, the mechanism is much more complex and the reaction requires the presence of t-butylhydroperoxide to take place. By modifying the detection conditions both compounds can be detected in gas phase. Additionally, a wide electrochemical study has been carried out to understand the role played by the t-butylhydroperoxide in the reaction with sulfur dioxide.

Metals and Alloys02 engineering and technologyTetraphenylethylene010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsPhotochemistryElectrochemistry01 natural sciencesRedox0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGas phasechemistry.chemical_compoundchemistryElectrochromismMaterials ChemistryNitrogen dioxideElectrical and Electronic Engineering0210 nano-technologyInstrumentationSulfur dioxideSensors and Actuators B: Chemical
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On the attribution of contributions of atmospheric trace gases to emissions in atmospheric model applications

2010

Abstract. We present an improved tagging method, which describes the combined effect of emissions of various species from individual emission categories, e.g. the impact of both, nitrogen oxides and non-methane hydrocarbon emissions on ozone. This method is applied to two simplified chemistry schemes, which represent the main characteristics of atmospheric ozone chemistry. Analytical solutions are presented for this tagging approach. In the past, besides tagging approaches, sensitivity methods were used, which estimate the contributions from individual sources based on differences in two simulations, a base case and a simulation with a perturbation in the respective emission category. We ap…

MeteorologyChemistryVOClcsh:QE1-996.5LinearityPerturbation (astronomy)Atmospheric modelNOy emissionsTrace gaslcsh:GeologyChemistryozoneTaggingNMHCDynamik der AtmosphäreBiological systemNitrogen oxidesAtmospheric ozoneGeoscientific Model Development
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