Search results for "substrat"

showing 10 items of 1042 documents

Synthesis of aryl azides: A probe reaction to study the synergetic action of ultrasounds and ionic liquids

2011

Abstract The combined effect of ultrasounds and ionic liquids was used to perform the synthesis of aryl azides by nucleophilic aromatic substitution in ionic liquid/[1-butyl-3-methylimidazolium][N 3 ] binary mixtures. The ultrasounds efficiency was analyzed as a function of the substrate and of the ionic liquid structure. In the first case, both 6π and 10π electrons aryl halides were considered. As far as the ionic liquid structure is concerned, both aromatic and aliphatic ionic liquids were taken into account. Among aromatic cations, the effects due to different ability in giving hydrogen bond or π–π interactions were considered. The use of a geminal ionic liquid having an aromatic spacer …

AzidesAcoustics and UltrasonicsInorganic chemistryIonic LiquidsHalideChemistry Techniques SyntheticPhotochemistryIonInorganic Chemistrychemistry.chemical_compoundNucleophilic aromatic substitutionChemical Engineering (miscellaneous)Environmental ChemistryUltrasonicsRadiology Nuclear Medicine and imagingMolecular StructureGeminalHydrogen bondArylOrganic ChemistrySubstrate (chemistry)StereoisomerismSettore CHIM/06 - Chimica OrganicachemistryIonic liquidIonic liquids Ultrasounds Aryl azides Nucleophilic aromatic substitutionUltrasonics Sonochemistry
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Generic Method for Modular Surface Modification of Cellulosic Materials in Aqueous Medium by Sequential Click-Reaction and Adsorption

2012

A generic approach for heterogeneous surface modification of cellulosic materials in aqueous medium, applicable for a wide range of functionalizations, is presented. In the first step, carboxymethyl cellulose (CMC) modified with azide or alkyne functionality, was adsorbed on a cellulosic substrate, thus, providing reactive sites for azide–alkyne cycloaddition click reactions. In the second step, functional units with complementary click units were reacted on the cellulose surface, coated by the click-modified CMC. Selected model functionalizations on diverse cellulosic substrates are shown to demonstrate the generality of the approach. The concept by sequentially combining the robust physic…

AzidesMagnetic Resonance SpectroscopyPolymers and PlasticsSurface Propertiesta221BioengineeringMicroscopy Atomic ForceCatalysisNanocellulosePolyethylene GlycolsmaterialsBiomaterialschemistry.chemical_compoundAdsorptionSpectroscopy Fourier Transform Infraredotorhinolaryngologic diseasesMaterials ChemistrymedicineOrganic chemistryAnimalsCotton FiberCelluloseta216ta116ta215ta218nanocelluloseFluorescent Dyesta214ta114Photoelectron Spectroscopyclick-reactionsSubstrate (chemistry)WaterSerum Albumin BovineCombinatorial chemistrycelluloseCarboxymethyl cellulosefunctionalchemistryadsorptionAlkynesCarboxymethylcellulose SodiumSurface functionalizationClick chemistrySurface modificationCattleAzidemedicine.drugBIOMACROMOLECULES
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Photocatalytic oxidation mechanism of benzonitrile in aqueous suspensions of titanium dioxide

2007

Abstract The photocatalytic oxidation of benzonitrile was carried out in aqueous suspensions (pH 11) of commercial polycrystalline TiO 2 (Merck and Degussa P25) irradiated by ultraviolet light. The rate of decomposition was dependent on the concentration of benzonitrile and followed a pseudo-first order kinetics. The complete mineralization of a 0.70 mM benzonitrile solution was achieved in ca. 8 h by using TiO 2 Degussa P25, whereas the substrate was only partially mineralized even after 14 h of irradiation in the presence of TiO 2 Merck. The final oxidation products were carbonate and nitrate. The appearance and the evolution of organic and inorganic intermediate species were also investi…

Benzonitrilechemistry.chemical_compoundAqueous solutionchemistryTitanium dioxideUltraviolet lightPhotocatalysisSubstrate (chemistry)General ChemistryMineralization (soil science)PhotochemistryCatalysisCatalysisCatalysis Today
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ENHANCEMENT OF MICROSOMAL TYPE II SUBSTRATE OXIDATION BY HEMOGLOBIN

1977

BiochemistryChemistryPolymer chemistryMicrosomeSubstrate (chemistry)Hemoglobin
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Optimization of acetate production from citrus wastewater fermentation

2021

Abstract Citrus wastewater is a sugar-rich waste stream suitable for the recovery of energy of material from its treatment. In this study, fermentation of citrus wastewater was carried out to assess the optimal conditions to maximize the bioconversion of the organic substrate into acetate. Unbalanced nutrient (C: N: P 200:0.1:0.1) enabled the highest acetate production. The presence of the particulate organic fraction enabled to obtain a higher acetate concentration regardless the initial COD concentration. Initial pH values higher than 5 did not cause substantial differences on the maximum bioconversion of COD into acetate in Trial 3, whereas pH lower than 5 hindered the hydrolysis process…

BioconversionBioconversion0208 environmental biotechnologyGeography Planning and Development02 engineering and technology010501 environmental sciences01 natural sciencesHydrolysisNutrientManagement. Industrial management0105 earth and related environmental sciencesWater Science and TechnologyCitrus wastewaterAnaerobic processSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryAcetateSubstrate (chemistry)Pulp and paper industryHD28-70020801 environmental engineeringOrganic fractionWastewaterFermentationFermentationValorisation
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A thermo-alkaline lipase from a new thermophileGeobacillus thermodenitrificansAV-5 with potential application in biodiesel production

2015

BACKGROUND A thermophilic lipase-producing Geobacillus thermodenitrificans strain AV-5 was isolated from the Mushroom Spring of Yellowstone National Park in WY, USA and studied as a source of lipase for transesterification of vegetable oils to biodiesel. RESULTS A maximum activity of 330 U mL−1 was produced on 2% (v/v) waste cooking oil at 50 °C, pH 8, aeration rate of 1 vvm and agitation speed of 400 rpm. However, the higher lipase productivity (14.04 U mL−1 h−1) was found at a volumetric oxygen transfer coefficient (kLa) value of 18.48 h−1. The partially purified lipase had a molecular weight, temperature and pH optimum of 50 kDa, 65 °C and pH 9, respectively, and was thermo-alkali stable…

BiodieselbiologyRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringThermophileOrganic ChemistrySubstrate (chemistry)TransesterificationPollutionInorganic ChemistryFuel TechnologyBiochemistryBiodiesel productionbiology.proteinFermentationFood scienceAerationLipaseWaste Management and DisposalBiotechnologyJournal of Chemical Technology & Biotechnology
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New evidence for the multiplicity of ubiquinone- and inhibitor-binding sites in the mitochondrial complex I.

2000

Determination of the number of ubiquinone- and inhibitor-binding sites in the mitochondrial complex I (NADH:ubiquinone oxidoreductase) is a controversial question with a direct implication for elaborating a suitable model to explain the bioenergetic mechanism of this complicated enzyme. We have used combinations of both selective inhibitors and common ubiquinone-like substrates to demonstrate the multiplicity of the reaction centers in the complex I in contrast with competition studies that have suggested the existence of a unique binding site for ubiquinone. Our results provide new evidence for the existence of at least two freely exchangeable ubiquinone-binding sites with different specif…

BioenergeticsStereochemistryUbiquinoneSubmitochondrial ParticlesBiophysicsBiologyIn Vitro TechniquesBiochemistryModels BiologicalMitochondria HeartSubstrate SpecificityOxidoreductaseAnimalsNADH NADPH OxidoreductasesBinding siteMultiplicity (chemistry)Molecular Biologychemistry.chemical_classificationNADH-Ubiquinone OxidoreductaseBinding SitesElectron Transport Complex IKineticsEnzymechemistryBiochemistryCattleEnergy MetabolismMitochondrial Complex IArchives of biochemistry and biophysics
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Structural analysis and biochemical properties of laccase enzymes from two Pediococcus species

2021

Summary Prokaryotic laccases are emergent biocatalysts. However, they have not been broadly found and characterized in bacterial organisms, especially in lactic acid bacteria. Recently, a prokaryotic laccase from the lactic acid bacterium Pediococcus acidilactici 5930, which can degrade biogenic amines, was discovered. Thus, our study aimed to shed light on laccases from lactic acid bacteria focusing on two Pediococcus laccases, P. acidilactici 5930 and Pediococcus pentosaceus 4816, which have provided valuable information on their biochemical activities on redox mediators and biogenic amines. Both laccases are able to oxidize canonical substrates as ABTS, ferrocyanide and 2,6‐DMP, and non‐…

BioengineeringApplied Microbiology and BiotechnologyBiochemistry03 medical and health scienceschemistry.chemical_compoundPediococcusResearch Articles030304 developmental biologyLaccasechemistry.chemical_classification0303 health sciencesABTSBacteriabiology030306 microbiologyChemistryLaccaseSubstrate (chemistry)Pediococcus acidilacticifood and beveragesbiology.organism_classificationLactic acidEnzymeProkaryotic CellsBiochemistryPediococcusOxidation-ReductionBacteriaTP248.13-248.65Research ArticleBiotechnologyMicrobial Biotechnology
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Biogeochemical responses to nutrient, moisture and temperature manipulations of soil from Signy Island, South Orkney Islands in the Maritime Antarctic

2014

AbstractWe have investigated how the microbially-driven processes of carbon (C) mineralization (respiration) and nitrogen (N) mineralization/immobilization in a soil from the northern Maritime Antarctic respond to differences in water availability (20% and 80% water-holding capacity) and temperature (5°C and 15°C) in the presence and absence of different organic substrates (2 mg C as either glucose, glycine or tryptone soy broth (TSB) powder (a complex microbial growth medium)) in a controlled laboratory experiment over 175 days. Soil respiration and N mineralization/immobilization in the presence of a C-rich substrate (glucose) increased with increases in water and temperature. These facto…

Biogeochemical cycleMoistureChemistrySettore AGR/13 - Chimica Agrariacarbon mineralization nitrogen mineralization organic substrates soil respiration warming water additionGeologyMineralization (soil science)OceanographySoil respirationNutrientEnvironmental chemistryBotanyRespirationCyclingNitrogen cycleEcology Evolution Behavior and SystematicsAntarctic Science
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Mycelium Growth and Biological Efficiency of Ganoderma lucidum on Substrate Supplemented with Different Organic Additives

2015

Biological efficiencyChemical engineeringChemistrySubstrate (chemistry)Agronomy and Crop ScienceMyceliumBiotechnologyGanoderma lucidum
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