Biochar obtained from sewage sludges are adopted for biogas cleaning. Sewage sludges are treated considering temperature, dwell time, activating agent, heating, and flow rate. The best performances achieved are registered considering the char produced at 400 °C using CO2 as an activating agent with a dwell time of 2 h. The adsorption capacity for the biogas cleaning CH4/CO2/H2S (20 ppm(v)) increased from 1.3 mg/g to 5.9 mg/g with the bed height. Future research with chemical activation processes will be made to improve the adsorption capacity achieved to produce cheaper sorbents than commercial ones
Production and usage of biogas is more and more promising. Easily degradable organic raw materials (...
The main aim of this study was to remove hydrogen sulfide (H2S) from biogas by adsorption using synt...
High energy efficiency SOFCs generators can be adopted for local and distributed micro-generation sy...
Three waste-derived adsorbent materials (wood-derived biochar, sludge-derived activated carbon and a...
Fluidized bed efficiently intensifies the carbonization step for biochar preparation by significantl...
The coupling of fuel cell technology with wastewater treatment plants (WWTPs) is within the sustaina...
The present research concerns the development of a new device and process intended for the purificat...
Organic waste can be efficiently converted into energy using highly efficient energy systems, such a...
Biogas produced from biomass is carbon neutral. In fact, the carbon feedstock of biomass is converte...
Adsorption technology has led to the development of promising techniques to purify biogas, i.e., bio...
Adsorption technology has led to the development of promising techniques to purify biogas, i.e., bio...
Desulfurization represents a crucial step in fuel processing for high temperature fuel cells, becaus...
The objective of this research work is to investigate the possibility of using sewage sludge as a so...
Methane gas, as one of the major biogases, is a potential source of renewable energy for power produ...
Biogas from fermentation of manure and organic residues produces a gas stream that can be fed into t...
Production and usage of biogas is more and more promising. Easily degradable organic raw materials (...
The main aim of this study was to remove hydrogen sulfide (H2S) from biogas by adsorption using synt...
High energy efficiency SOFCs generators can be adopted for local and distributed micro-generation sy...
Three waste-derived adsorbent materials (wood-derived biochar, sludge-derived activated carbon and a...
Fluidized bed efficiently intensifies the carbonization step for biochar preparation by significantl...
The coupling of fuel cell technology with wastewater treatment plants (WWTPs) is within the sustaina...
The present research concerns the development of a new device and process intended for the purificat...
Organic waste can be efficiently converted into energy using highly efficient energy systems, such a...
Biogas produced from biomass is carbon neutral. In fact, the carbon feedstock of biomass is converte...
Adsorption technology has led to the development of promising techniques to purify biogas, i.e., bio...
Adsorption technology has led to the development of promising techniques to purify biogas, i.e., bio...
Desulfurization represents a crucial step in fuel processing for high temperature fuel cells, becaus...
The objective of this research work is to investigate the possibility of using sewage sludge as a so...
Methane gas, as one of the major biogases, is a potential source of renewable energy for power produ...
Biogas from fermentation of manure and organic residues produces a gas stream that can be fed into t...
Production and usage of biogas is more and more promising. Easily degradable organic raw materials (...
The main aim of this study was to remove hydrogen sulfide (H2S) from biogas by adsorption using synt...
High energy efficiency SOFCs generators can be adopted for local and distributed micro-generation sy...