Redirecting waste biomass back into the economy can reduce their burden on the environment. The use of waste biomass for the production of fuels, value-added materials or natural fillers has significant economic and environmental benefits. Physico-chemical characterization of waste biomass (plum pomace and fig pomace) was done by proximate, elemental, biochemical analysis, FTIR and SEM analysis. The calorific value of both biomasses can be compared with the calorific value of lignite, which rises their potential use as a solid biofuel. The combustion behavior of biomass was investigated by thermal analysis techniques. Based on thermal degradation experiments performed at four heating rates a kinetic analysis of the biomass decomposition pro...
Utilization of lignocellulosic material via thermo-chemical processes has received huge attention fr...
Aim of this study to investigate the thermal and morphological behaviour of different types of bioma...
Biomass pyrolysis is a thermo-chemical conversion process that is of both industrial and ecological ...
The use of lignocellulosic biomass as an energy source has considerably increased. Due to the divers...
The increase in world population dictates that there is a need for new energy technologies that are ...
This paper focuses on lignocellulosic waste biomass originating from food industry, which should fin...
A substantial amount of renewable feedstocks study has been dedicated to bio-fuel and biochemical ge...
As waste biomass from fruit processing industry, apricot kernel shells have a potential for conversi...
Summarization: Biomass residues in the Mediterranean region come mainly from agricultural and agro-i...
A primitive element for the development of sustainable pyrolysis processes is the study of thermal d...
Biomass as a renewable and sustainable energy source is expected to solve the energy crisis problem....
The present research work is probably the first attempt to focus on the kinetics of pyrolysis and co...
The characteristics of bio-oil produced from biomass pyrolysis can be improved by co-feeding waste m...
Thermal stability behaviour of coconut coir, banana pseudo stem, pineapple leaf, and sugarcane bagas...
This paper focuses on lignocellulosic waste biomass originating from food industry, which should fin...
Utilization of lignocellulosic material via thermo-chemical processes has received huge attention fr...
Aim of this study to investigate the thermal and morphological behaviour of different types of bioma...
Biomass pyrolysis is a thermo-chemical conversion process that is of both industrial and ecological ...
The use of lignocellulosic biomass as an energy source has considerably increased. Due to the divers...
The increase in world population dictates that there is a need for new energy technologies that are ...
This paper focuses on lignocellulosic waste biomass originating from food industry, which should fin...
A substantial amount of renewable feedstocks study has been dedicated to bio-fuel and biochemical ge...
As waste biomass from fruit processing industry, apricot kernel shells have a potential for conversi...
Summarization: Biomass residues in the Mediterranean region come mainly from agricultural and agro-i...
A primitive element for the development of sustainable pyrolysis processes is the study of thermal d...
Biomass as a renewable and sustainable energy source is expected to solve the energy crisis problem....
The present research work is probably the first attempt to focus on the kinetics of pyrolysis and co...
The characteristics of bio-oil produced from biomass pyrolysis can be improved by co-feeding waste m...
Thermal stability behaviour of coconut coir, banana pseudo stem, pineapple leaf, and sugarcane bagas...
This paper focuses on lignocellulosic waste biomass originating from food industry, which should fin...
Utilization of lignocellulosic material via thermo-chemical processes has received huge attention fr...
Aim of this study to investigate the thermal and morphological behaviour of different types of bioma...
Biomass pyrolysis is a thermo-chemical conversion process that is of both industrial and ecological ...