Pyrolysis of tobacco waste can provide an effective management option, as it produces biogas and bio-oils, which can be subsequently applied for energy recovery, and biochar, which can be used for carbon sequestration when stored in soils. This work assesses the pyrolysis behavior of tobacco waste and reveals four stage pyrolysis mechanism consisting of dehydration (<200 °C), torrefaction (≈300 °C), charring (≈500 °C), and carbonization (≈750 °C). The calorific value of the evolved biogas products at the charring temperature of 500 °C was estimated to be reasonably high and the products can be combusted to generate energy required to self-sustain the pyrolysis process. The bio-oils contained complex chemical structure consisting of nicotine...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Abstract: Waste from stems can be utilized as alternative energy source by turning into a charcoal b...
Conversion of waste to high-value products by pyrolysis is a suitable and harmless disposal technolo...
Not AvailablePyrolysis temperature and time are known to have profound influence on biochar yield. T...
The pyrolysis of waste electronically heated tobacco (EHT), consisting of tobacco leaves (TL), a pol...
Not AvailablePyrolysis temperature and time are known to have profound influence on biochar yield. ...
More than 5.5 trillion cigarettes are manufactured, and approximately 4.5 trillion cigarette butts a...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Pyrolysis has been applied in the human economy for many years, and it has become a significant alte...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
This article reports the state of the art of the characteristics of products derived from the pyroly...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Abstract: Waste from stems can be utilized as alternative energy source by turning into a charcoal b...
Conversion of waste to high-value products by pyrolysis is a suitable and harmless disposal technolo...
Not AvailablePyrolysis temperature and time are known to have profound influence on biochar yield. T...
The pyrolysis of waste electronically heated tobacco (EHT), consisting of tobacco leaves (TL), a pol...
Not AvailablePyrolysis temperature and time are known to have profound influence on biochar yield. ...
More than 5.5 trillion cigarettes are manufactured, and approximately 4.5 trillion cigarette butts a...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Fast pyrolysis, in combination with torrefaction pretreatment, was used to convert tobacco residues ...
Pyrolysis has been applied in the human economy for many years, and it has become a significant alte...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
This article reports the state of the art of the characteristics of products derived from the pyroly...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Pyrolysis is a well-established method of converting biomass to different types of value-added produ...
Abstract: Waste from stems can be utilized as alternative energy source by turning into a charcoal b...