Search results for "glyseroli"

showing 3 items of 3 documents

Cold exposure enhances fat utilization but not non-esterified fatty acids, glycerol or catecholamines availability during submaximal walking and runn…

2013

Cold exposure modulates the use of carbohydrates and fat during exercise. This phenomenon has mostly been observed in controlled cycling studies, but not during walking and running when core temperature and oxygen consumption are controlled, as both may alter energy metabolism. This study aimed at examining energy substrate availability and utilization during walking and running in the cold when core temperature and oxygen consumption are maintained. Ten lightly clothed male subjects walked or ran for 60-min, at 50% and 70% of maximal oxygen consumption, respectively, in a climatic chamber set at 0°C or 22°C. Thermal, cardiovascular, and oxidative responses were measured every 15-…

Physiologykylmäaltistuscold exposurerasvahapotchemistry.chemical_elementBlood lipidsOxidative phosphorylationglycerol030204 cardiovascular system & hematologyBiologyOxygenthermal responseslcsh:Physiologyrasva-aineenvaihdunta03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAnimal sciencePhysiology (medical)fatHeart rateGlycerolglyseroliOriginal Research Articleta315Exerciselcsh:QP1-981kuormauskuormitusfat metabolismVO2 max030229 sport sciencesRespiratory quotientGlucosechemistryBiochemistrykatakolamiinitEnergy sourceEnergy Metabolismkatekoliamiinit
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Mechanistic Origins of the pH Dependency in Au-Catalyzed Glycerol Electro-oxidation: Insight from First-Principles Calculations

2021

Electrocatalytic oxidation of glycerol (EOG) is an attractive approach to convert surplus glycerol to value-added products. Experiments have shown that EOG activity and selectivity depend not only on the electrocatalyst but also on the electrode potential, the pH, and the electrolyte. For broadly employed gold (Au) electrocatalysts, experiments have demonstrated high EOG activity under alkaline conditions with glyceric acid as a primary product, whereas under acidic and neutral conditions Au is almost inactive producing only small amounts of dihydroxyacetone. In the present computational work, we have performed an extensive mechanistic study to understand the pH and potential dependency of …

hapetusglycerolelectrolyte02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCatalysis0104 chemical scienceskatalyysiorgaaninen kemiaglyserolielectrocatalystelektrolyytit0210 nano-technologyelectro-oxidationACS Catalysis
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Hiilihydraateista bioteknisesti valmistettavat merkittävät teollisuuskemikaalit

2010

maitohappoasetonisitruunahappoetanolibiotekniikkaglyseroliitakonihappoetikkahappomeripihkahappohiilihydraatitbutanoliBioteknologiateollisuuskemikaalit
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