A pyrolysis-non-thermal plasma-catalytic system for the increased production of hydrogen-rich gas from waste biomass has been investigated. Plasma processing of the hydrocarbon pyrolysis gases produced a marked increase in total gas yield with plasma-catalysis producing a further modest increase. The product gases were mainly composed of H₂ , CO and CO₂ , which were all increased under plasma and plasma-catalyst conditions. For example, H₂ yield increased from 1.0 mmol g −¹biomass in the absence of plasma to 3.5 mmol g −¹biomass with plasma and to 4.0 mmol g −¹biomass with plasma-catalysis. In addition, in the absence of plasma, the hydrocarbon tar content in the product gas was 420 mg m −³ , but, for non-catalytic plasma conditions, this w...
textToday we face the formidable challenge of meeting the fuel needs of a growing population while m...
Using natural gas and sustainable biogas as feed, high-temperature pyrolysis represents a potential ...
The world’s energy consumption is increasing constantly due to the growing population of the world....
A pyrolysis-non-thermal plasma-catalytic system for the increased production of hydrogen-rich gas fr...
Converting biomass into energy and fuels is considered a promising strategy for replacing the exhaus...
Recent advances in biohydrogen production using plasma processes have brought opportunities to repla...
Abstract An innovative integrated gasification and plasma-catalytic system has been d...
A novel two-stage pyrolysis-plasma/catalysis process has been developed for hydrogen production from...
This dissertation investigates Non equilibrium plasma discharges, particularly gliding arc plasma di...
Carbonaceous materials have been proven to have a high catalytic activity for tar removal from the s...
Hydrogen was produced from waste plastics using a novel two-stage pyrolysis-low temperature (250 °C)...
AbstractIn this study, plasma reforming of toluene as a tar model compound from biomass gasification...
Anthropogenic greenhouse gas emissions have caused changes to the Earth's climate, resulting in cata...
The motivation of this work is to investigate experimentally the influence of nonthermal plasma (NTP...
Hydrogen was produced from waste plastic (polyethylene) using a novel two-stage pyrolysis–low-temper...
textToday we face the formidable challenge of meeting the fuel needs of a growing population while m...
Using natural gas and sustainable biogas as feed, high-temperature pyrolysis represents a potential ...
The world’s energy consumption is increasing constantly due to the growing population of the world....
A pyrolysis-non-thermal plasma-catalytic system for the increased production of hydrogen-rich gas fr...
Converting biomass into energy and fuels is considered a promising strategy for replacing the exhaus...
Recent advances in biohydrogen production using plasma processes have brought opportunities to repla...
Abstract An innovative integrated gasification and plasma-catalytic system has been d...
A novel two-stage pyrolysis-plasma/catalysis process has been developed for hydrogen production from...
This dissertation investigates Non equilibrium plasma discharges, particularly gliding arc plasma di...
Carbonaceous materials have been proven to have a high catalytic activity for tar removal from the s...
Hydrogen was produced from waste plastics using a novel two-stage pyrolysis-low temperature (250 °C)...
AbstractIn this study, plasma reforming of toluene as a tar model compound from biomass gasification...
Anthropogenic greenhouse gas emissions have caused changes to the Earth's climate, resulting in cata...
The motivation of this work is to investigate experimentally the influence of nonthermal plasma (NTP...
Hydrogen was produced from waste plastic (polyethylene) using a novel two-stage pyrolysis–low-temper...
textToday we face the formidable challenge of meeting the fuel needs of a growing population while m...
Using natural gas and sustainable biogas as feed, high-temperature pyrolysis represents a potential ...
The world’s energy consumption is increasing constantly due to the growing population of the world....