Biowaste valorization is a means for tackling resource depletion and climate change, which gives rise to environmental benefits and economic growth. One of the most known technological routes to convert biowaste into bioproducts is pyrolysis, which may conduct with and without catalyst application. The purpose of this study was to investigate an early-stage life-cycle assessment (LCA) for catalytic intermediate pyrolysis to valorize rapeseed meal, split over the scenarios using ZSM-5 and zeolite Y catalysts. Four selected environmental impact categories were assessed by IMPACT 2002+ methodology. The results revealed that the ZSM-5 catalytic pyrolysis led to bigger environmental impacts than the pyrolysis utilizing zeolite Y in all compared ...
Waste-to-energy technologies are considered as one of the key waste treatment technologies due to th...
Bioethanol is the most widely used biofuel in the world. Bioethanol production from biomass is a way...
The environmental performance of industrial anaerobic digestion (AD), pyrolysis, and integrated syst...
Biowaste valorization is a means for tackling resource depletion and climate change, which gives ris...
The bio-wastes pyrolysis is a waste to energy strategy that converts bio-wastes into valuable produc...
Meeting the transport needs of a growing world population makes it imperative to develop renewable a...
Biomass gasification has the potential to produce renewable fuels, chemicals and power at large util...
Abstract: The biomass is a promising way to substitute fossil fuels. Lignocellulosic biomass valoris...
Biomass gasification has the potential to produce renewable fuels, chemicals and power at large util...
Considering the importance of bio-wastes thermo-chemical conversion to fuel and platform molecules, ...
Global concerns about mitigation of greenhouse gas (GHG) emissions and enhancement of energy securit...
A total of 120,000 tonnes per year of crop waste from contaminated land has been used as a feedstock...
Abstract Background Biomethane, as a potential substitute for natural gas, reduces the use of fossil...
Biomass has the potential to play a significant role in the world energy scenarios due to its abunda...
Biomass, widespread and carbon-neutral energy, can provide electric energy and replace fossil fuel-d...
Waste-to-energy technologies are considered as one of the key waste treatment technologies due to th...
Bioethanol is the most widely used biofuel in the world. Bioethanol production from biomass is a way...
The environmental performance of industrial anaerobic digestion (AD), pyrolysis, and integrated syst...
Biowaste valorization is a means for tackling resource depletion and climate change, which gives ris...
The bio-wastes pyrolysis is a waste to energy strategy that converts bio-wastes into valuable produc...
Meeting the transport needs of a growing world population makes it imperative to develop renewable a...
Biomass gasification has the potential to produce renewable fuels, chemicals and power at large util...
Abstract: The biomass is a promising way to substitute fossil fuels. Lignocellulosic biomass valoris...
Biomass gasification has the potential to produce renewable fuels, chemicals and power at large util...
Considering the importance of bio-wastes thermo-chemical conversion to fuel and platform molecules, ...
Global concerns about mitigation of greenhouse gas (GHG) emissions and enhancement of energy securit...
A total of 120,000 tonnes per year of crop waste from contaminated land has been used as a feedstock...
Abstract Background Biomethane, as a potential substitute for natural gas, reduces the use of fossil...
Biomass has the potential to play a significant role in the world energy scenarios due to its abunda...
Biomass, widespread and carbon-neutral energy, can provide electric energy and replace fossil fuel-d...
Waste-to-energy technologies are considered as one of the key waste treatment technologies due to th...
Bioethanol is the most widely used biofuel in the world. Bioethanol production from biomass is a way...
The environmental performance of industrial anaerobic digestion (AD), pyrolysis, and integrated syst...