The synthesis of ammonia is one of the most important chemical processes in the world. The Haber–Bosch process has predominantly been used to synthesize ammonia over the last decades. However, it uses coal or natural gas as raw materials. In this work, the path to produce ammonia from biomass has been evaluated and optimized. Thermochemical and biochemical routes have been compared. Three alternative gasification technologies have been considered together with anaerobic digestion. For the reforming stage, two alternatives have been compared: autothermal and steam reforming. Finally, ammonia is synthesized in a multibed reactor with two different configurations: direct or indirect cooling. The problem is formulated as a mixed integer nonline...
The transportation sector is one of the primary contributors to the global CO2 emissions. Recent res...
Ammonia is increasingly recognized as an important, sustainable fuel for global use in the future. A...
To replace existing high impact ammonia production technologies, a new sustainability-driven waste-b...
Ammonia production currently accounts for over 1.8% of the world’s consumption of fossil fuels and ...
Ammonia has great prospects in the context of the transition to carbon-free energy. It can be used a...
Ammonia has great prospects in the context of the transition to carbon-free energy. It can be used a...
To reduce the fossil-fuel consumption and the impacts of conventional ammonia production on climate ...
Ammonia production has traditionally been based on large-scale plants. The thrust toward large-scale...
A sustainable pathway for ammonia synthesis by means of the Haber-Bosch process should reduce or zer...
The global energy transition from a fossil fuel base energy system to a renewable energy source base...
The world is steadily moving toward greener alternatives of established chemical production process...
Separation of the hydrogen needed for the ammonia synthesis reaction, from its source is difficult. ...
The yearly demand for cereals for both, food and animal feeding, is projected to reach some 3 billio...
Large progress has been made in the last decades to reduce the carbon footprint of ammonia, which is...
Doctor of PhilosophyDepartment of Chemical EngineeringPeter H. PfrommSince its inception, the Haber-...
The transportation sector is one of the primary contributors to the global CO2 emissions. Recent res...
Ammonia is increasingly recognized as an important, sustainable fuel for global use in the future. A...
To replace existing high impact ammonia production technologies, a new sustainability-driven waste-b...
Ammonia production currently accounts for over 1.8% of the world’s consumption of fossil fuels and ...
Ammonia has great prospects in the context of the transition to carbon-free energy. It can be used a...
Ammonia has great prospects in the context of the transition to carbon-free energy. It can be used a...
To reduce the fossil-fuel consumption and the impacts of conventional ammonia production on climate ...
Ammonia production has traditionally been based on large-scale plants. The thrust toward large-scale...
A sustainable pathway for ammonia synthesis by means of the Haber-Bosch process should reduce or zer...
The global energy transition from a fossil fuel base energy system to a renewable energy source base...
The world is steadily moving toward greener alternatives of established chemical production process...
Separation of the hydrogen needed for the ammonia synthesis reaction, from its source is difficult. ...
The yearly demand for cereals for both, food and animal feeding, is projected to reach some 3 billio...
Large progress has been made in the last decades to reduce the carbon footprint of ammonia, which is...
Doctor of PhilosophyDepartment of Chemical EngineeringPeter H. PfrommSince its inception, the Haber-...
The transportation sector is one of the primary contributors to the global CO2 emissions. Recent res...
Ammonia is increasingly recognized as an important, sustainable fuel for global use in the future. A...
To replace existing high impact ammonia production technologies, a new sustainability-driven waste-b...