
doi: 10.1039/d1nj00328c
The goal of this study was to introduce an effective visible-light induced photocatalytic system with a good ability for photocatalytic oxidative desulfurization (PODS) and denitrogenation (PODN) using molecular oxygen (O2) as an oxidant.
pore volume, Adsorption edges, Light, katalyytit, quinoline, Visible-light irradiation, oxidizing agent, ta116, Oxidative desulfurization, irradiation, Cerium, Oxidants, cerium, Carrier mobility, [SPI] Engineering Sciences [physics], organometalliyhdisteet, Maximum Efficiency, Article, uranium, pore size distribution, phosphotungstic acid, vihreä kemia, hapetus-pelkistysreaktio, polymeerit, ta215, dibenzothiophene derivative, green chemistry, photooxidation, desulfurization, surface area, Photocatalytic systems, Visible light induced, Tungstophosphoric acid, Dibenzothiophenes, petrokemia, Molecular oxygen, Photocatalytic activity, adsorption, katalyysi, desorption, valokemia, oxygen, photocatalysis, catalyst
pore volume, Adsorption edges, Light, katalyytit, quinoline, Visible-light irradiation, oxidizing agent, ta116, Oxidative desulfurization, irradiation, Cerium, Oxidants, cerium, Carrier mobility, [SPI] Engineering Sciences [physics], organometalliyhdisteet, Maximum Efficiency, Article, uranium, pore size distribution, phosphotungstic acid, vihreä kemia, hapetus-pelkistysreaktio, polymeerit, ta215, dibenzothiophene derivative, green chemistry, photooxidation, desulfurization, surface area, Photocatalytic systems, Visible light induced, Tungstophosphoric acid, Dibenzothiophenes, petrokemia, Molecular oxygen, Photocatalytic activity, adsorption, katalyysi, desorption, valokemia, oxygen, photocatalysis, catalyst
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