Search results for "Oxide"

showing 10 items of 6424 documents

The influence of cerium to urea preparation ratio of nanocrystalline ceria catalysts for the total oxidation of naphthalene

2008

The influence of cerium salt/urea ratio on the activity of nanocrystalline ceria catalysts prepared by homogeneous precipitation with urea for the complete oxidation of naphthalene has been evaluated. Ceria catalysts were prepared from five different cerium salt/urea ratios (2:1, 1:1, 1:2, 1:3 and 1:4). Catalyst characterization (by BET, XRD and TPR) only revealed subtle differences in the characteristics of these catalysts with cerium salt to urea ratio. However, Raman and scanning electron microscopy (SEM) results indicated differences in the oxygen defect concentration (FWHM of Raman band) and morphology of the catalysts with variation of the preparation ratio. Catalysts prepared with 2:…

inorganic chemicalsCerium oxideInorganic chemistrychemistry.chemical_elementGeneral ChemistryHeterogeneous catalysisCatalysisCatalysisCeriumchemistry.chemical_compoundsymbols.namesakechemistryCatalytic oxidationUreasymbolsRaman spectroscopyNaphthaleneCatalysis Today
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In-situ synthesis of hydrogen peroxide in tandem with selective oxidation reactions: A mini-review

2014

7 Figuras, 6 Tablas

inorganic chemicalsChemistry(all)Green chemistryTandem systemsSelective oxidationHydrogen peroxideCatalysisIn-situ synthesisCatalysis Today
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Decomposition of nitrous oxide upon nickel oxide-magnesium oxide solid solutions

1966

The decomposition of N 2 O has been studied over MgO catalysts, doped with NiO and NiO + Li 2 O from 1 to 10% (atomic). For pure MgO, activity is low, but is enhanced by addition of Ni 2+ ions. The apparent activation energy is reduced from 35 kcal/mole for pure MgO, to about 18 kcal/mole. Oxygen acts as a poison, and it is chemisorbed on the catalyst. The presence of lithium greatly increases the apparent activation energy. The results are interpreted in terms of oxygen chemisorption and of its influence on the course of the reaction.

inorganic chemicalsChemistryMagnesiumNickel oxideNon-blocking I/OInorganic chemistrychemistry.chemical_elementActivation energyOxygenCatalysisCatalysisChemisorptionLithiumPhysical and Theoretical ChemistryJournal of Catalysis
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Lignin-based activated carbon-supported metal oxide catalysts in lactic acid production from glucose

2021

Abstract In this study, heterogeneous biomass-based activated carbon-supported metal oxide catalysts were prepared and tested for lactic acid production from glucose in aqueous solution. Activated carbons were produced from hydrolysis lignin by chemical (ZnCl2) or steam activation and modified with a nitric acid treatment and Sn, Al, and Cr chlorides to obtain carbon-based metal oxide catalysts. The modification of the carbon support by nitric acid treatment together with Sn and Al oxides led to an increase in lactic acid yield. The highest lactic acid yield (42 %) was obtained after 20 min at 180 °C with the Sn/Al (5/2.5 wt.%) catalyst on steam-activated carbon treated by nitric acid. Reus…

inorganic chemicalsChemistryProcess Chemistry and TechnologyOxidefood and beverageschemistry.chemical_elementcomplex mixturesCatalysisLactic acidCatalysischemistry.chemical_compoundHydrolysisLeaching (chemistry)Nitric acidmedicineCarbonNuclear chemistryActivated carbonmedicine.drugApplied Catalysis A: General
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Monitoring Chemical Reactions with SERS-Active Ag-Loaded Mesoporous TiO2 Films

2020

Monitoring chemical reactions that occur in small spaces or confined environments is challenging. Surface-enhanced Raman scattering (SERS) spectroscopy offers the unique possibility to monitor spectral changes with high sensitivity and time resolution. Herein, we report the application of composite mesoporous TiO2 films loaded with Ag nanoparticles (NPs) to track in situ chemical processes in real time. In particular, the AgNPs@TiO2 system was employed to monitor two chemical reactions: one occurring on the Ag NPs surface and another taking place in the surrounding solution. In the first case, we monitored the decarboxylation reaction of 4-mercaptobenzoic acid on Ag NPs, which allowed us to…

inorganic chemicalsChemistrySERS010401 analytical chemistrytechnology industry and agricultureNanotechnologySILVER NANOPARTICLES010402 general chemistry01 natural sciencesChemical reactionSilver nanoparticle0104 chemical sciencesAnalytical Chemistry//purl.org/becyt/ford/1 [https]symbols.namesakesymbols//purl.org/becyt/ford/1.4 [https]Mesoporous materialSpectroscopyMESOPOROUS OXIDESRaman scattering
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TAP reactor study of the deep oxidation of propane using cobalt oxide and gold-containing cobalt oxide catalysts

2009

Abstract A transient reactor study of the oxidation of propane to CO 2 on gold-free and gold-doped CoO x catalysts has been carried out. It has been demonstrated that the presence of gold markedly promotes the catalytic reactivity of cobalt oxide in the total oxidation of propane. Both catalysts oxidised propane directly to CO 2 via a Mars–Van Krevelen mechanism, and this was confirmed using isotopically labelled oxygen experiments. The increased activity of the gold catalyst is related to the faster reoxidation of the cobalt oxide when gold is present in the catalyst, since the reaction step in which the catalyst is reduced, due to propane oxidation, is similar for both catalysts. The fast…

inorganic chemicalsChemistryorganic chemicalsProcess Chemistry and TechnologyCatalyst supportInorganic chemistrychemistry.chemical_elementHeterogeneous catalysisOxygenCatalysisCatalysischemistry.chemical_compoundCatalytic oxidationTransition metalPropaneheterocyclic compoundsCobalt oxideApplied Catalysis A: General
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Enhanced Heterogeneous Catalytic Conversion of Furfuryl Alcohol into Butyl Levulinate

2014

We study the catalytic condensation of furfuryl alcohol with 1-butanol to butyl levulinate. A screening of several commercial and as-synthesized solid acid catalysts shows that propylsulfonic acid-functionalized mesoporous silica outperforms the state-of-the-art phosphotungstate acid catalysts. The catalyst is prepared via template-assisted sol-gel polycondensation of TEOS and MPTMS. It gives 96 % yield (and 100 % selectivity) of butyl levulinate in 4h at 110 °C. Reaction profiles before and after a hot filtration test confirm that the active catalytic species do not leach into the solution. The catalyst synthesis, characterization, and mode of operation are presented and discussed. Sour ca…

inorganic chemicalsCondensation polymerGeneral Chemical EngineeringesterificationNiobiumHeterogeneous catalysisCatalysisCatalysisFurfuryl alcoholalcoholschemistry.chemical_compoundEnvironmental ChemistryOrganic chemistryGeneral Materials ScienceFuransbiomassorganic chemicalsCondensationMesoporous silicasolid acidsSilicon DioxideLevulinic AcidsGeneral Energyheterogeneous catalysischemistryYield (chemistry)ZeolitesPolystyrenesSulfonic AcidsSelectivityChemSusChem
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Exposure to nitrogen dioxide and respiratory health at 2 years in the INMA-Valencia cohort

2018

Resumen Objetivo Analizar la relación entre la exposición a dióxido de nitrógeno (NO2) en las etapas prenatal y posnatal y la incidencia de problemas respiratorios en niños/as hasta los 2 años de edad. Método La población consistió en 624 niños/as de la cohorte INMA-Valencia. Se estimó la exposición individual al NO2 en el exterior de la vivienda durante el periodo prenatal y hasta los 2 años de edad, a partir de la combinación de datos empíricos y el desarrollo de métodos geoestadísticos. Se aplicó un cuestionario para obtener la información sobre los síntomas respiratorios a los 2 años. La asociación entre la exposición al NO2 y los eventos respiratorios se realizó mediante regresión logí…

inorganic chemicalsContaminación atmosféricaRespiratory tract infectionCoughInfecciones respiratoriasAir pollutionTosDióxido de nitrógenocomplex mixturesrespiratory tract diseasesNitrogen dioxide
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Effects of NH3 and alkaline metals on the formation of particulate sulfate and nitrate in wintertime Beijing

2020

Sulfate and nitrate from secondary reactions remain as the most abundant inorganic species in atmospheric particle matter (PM). Their formation is initiated by oxidation (either in gas phase or particle phase), followed by neutralization reaction primarily by NH3, or by other alkaline species such as alkaline metal ions if available. The different roles of NH3 and metal ions in neutralizing H2SO4 or HNO3, however, are seldom investigated. Here we conducted semi-continuous measurements of SO4 2−, NO3 −, NH4 +, and their gaseous precursors, as well as alkaline metal ions (Na+, K+, Ca2+, and Mg2+) in wintertime Beijing. Analysis of aerosol acidity (estimated from a thermodynamic model) indicat…

inorganic chemicalsEnvironmental Engineering010504 meteorology & atmospheric sciencesMetal ions in aqueous solutionEVOLUTION PROCESSESSEASONAL-VARIATIONchemistry.chemical_element010501 environmental sciencesNitrate01 natural scienceschemistry.chemical_compoundAmmoniaNitrateEnvironmental ChemistryWATERSulfateWaste Management and Disposal0105 earth and related environmental sciencesSECONDARY INORGANIC AEROSOLAMMONIAChemistryACIDIC GASESMASS-SPECTROMETRYParticulatesAlkali metalPollutionSulfurNitrogenSulfatePEARL RIVER-DELTASULFUR-DIOXIDEEnvironmental chemistryHAZE EVENTSAlkaline metalsThe Science of the Total Environment
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Oxidative dehydrogenation of ethane: A study over the structure and robustness of Ni–W–O catalysts

2014

[EN] The robustness of one selected Ni-W-O catalyst has been studied in the oxidative dehydrogenation of ethane. This catalyst initially deactivates for the first 10 h online decreasing 15% of its catalytic activity compared to its initial stable catalytic activity. However from 10 to 60 h online the catalytic activity keeps almost stable. On the other hand, it has been shown that the Ni-W-O catalyst cannot tolerate an oxygen-free atmosphere (C-2 and He) as nickel oxide is transformed into metallic nickel. Methane and hydrogen as well as abundant coke were formed on the surface of the catalyst in these O-free conditions. However a re-calcination in air leads to the removal of coke, the cata…

inorganic chemicalsEthyleneHydrogenGeneral Chemical EngineeringCatalyst supportInorganic chemistryEnergy Engineering and Power Technologychemistry.chemical_elementCatalysisMethaneCatalysisEthylenechemistry.chemical_compoundDehydrogenationNickel tungstenOxidative dehydrogenation of ethaneOxide catalystsEthaneChemistryorganic chemicalsNickel oxideCokeFuel TechnologyNi-W-OHydrogenOxidative dehydrogenationFuel Processing Technology
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