In this study, we demonstrate a two-step process where activated carbon based air purifier systems can be regenerated in situ and eliminate volatile organic compounds (VOCs) from indoor air in an energy efficient way. A carbon based adsorber was combined in series with a CeO<sub>2</sub>/TiO<sub>2</sub> oxidative catalyst for total oxidation of the previously adsorbed and periodically released volatile organic compounds during regeneration runs. We investigated the adsorption and desorption behavior of five different VOCs (diethyl ether, limonene, linalool, hexanoic acid, triethylamine and <i>n</i>-decane) with thermogravimetric measurements, mass spectrometry and elemental analysis. Cyclic loading and regeneration experiments were carried o...
Adsorption and catalytic oxidation are two promising technologies for indoor volatile organic comp...
Environmental problems associated with volatile organic compounds (VOCs) in the atmosphere have pro...
Volatile Organic Compounds (VOCs) are known to be hazardous and harmful to human health and the envi...
Over the last three decades, combined efforts of industries, the EPA, and automakers have helped red...
International audienceThermal swing adsorption (TSA) is widely used as a process in industry for gas...
This study explores the potential environmental and energy benefits of using activated carbon fiber ...
Energy consumption is an important concern for the removal of volatile organic compounds (VOCs) from...
Energy consumption is an important concern for the removal of volatile organic compounds (VOCs) from...
There are increasing concerns about indoor volatile organic compounds (VOCs) regarding their health ...
Faced with the demand of limiting the energy consumption, indoor air recycling has become an importa...
International audienceIn this research work, the three different VOCs such as acetone, dichlorometha...
This study reports the sequential regeneration treatment of activated carbons (ACs) saturated with v...
The thermal desorption of saturated activated carbon discharged from an industrial adsorber and cata...
Volatile organic compounds (VOCs) are a class of organic liquid compounds with low vapor pressures, ...
Chlorinated solvents are widely used in cleaning metal parts in manufacturing industries. Tetrachlor...
Adsorption and catalytic oxidation are two promising technologies for indoor volatile organic comp...
Environmental problems associated with volatile organic compounds (VOCs) in the atmosphere have pro...
Volatile Organic Compounds (VOCs) are known to be hazardous and harmful to human health and the envi...
Over the last three decades, combined efforts of industries, the EPA, and automakers have helped red...
International audienceThermal swing adsorption (TSA) is widely used as a process in industry for gas...
This study explores the potential environmental and energy benefits of using activated carbon fiber ...
Energy consumption is an important concern for the removal of volatile organic compounds (VOCs) from...
Energy consumption is an important concern for the removal of volatile organic compounds (VOCs) from...
There are increasing concerns about indoor volatile organic compounds (VOCs) regarding their health ...
Faced with the demand of limiting the energy consumption, indoor air recycling has become an importa...
International audienceIn this research work, the three different VOCs such as acetone, dichlorometha...
This study reports the sequential regeneration treatment of activated carbons (ACs) saturated with v...
The thermal desorption of saturated activated carbon discharged from an industrial adsorber and cata...
Volatile organic compounds (VOCs) are a class of organic liquid compounds with low vapor pressures, ...
Chlorinated solvents are widely used in cleaning metal parts in manufacturing industries. Tetrachlor...
Adsorption and catalytic oxidation are two promising technologies for indoor volatile organic comp...
Environmental problems associated with volatile organic compounds (VOCs) in the atmosphere have pro...
Volatile Organic Compounds (VOCs) are known to be hazardous and harmful to human health and the envi...