Biomass Processes
Biomass Processes
Biomass power is poised to occupy a significant share in the global renewable energy mix, as new technologies reach commercial deployment and some coal- fired plants, are converted to burn biomass.
A reliable heat balance and performance model is a key factor for any successful biomass power plant project: At early project stages it is necessary to determine whether and how the performance requirements can be achieved. At later stages in serves for identification of operational limits and to determine optimum operating points. IPSEpro is the ideal platform for creating heat balance and performance models for biomass power plants.
Biomass power is poised to occupy a significant share in the global renewable energy mix, as new technologies reach commercial deployment and some coal- fired plants, are converted to burn biomass.
A reliable heat balance and performance model is a key factor for any successful biomass power plant project: At early project stages it is necessary to determine whether and how the performance requirements can be achieved. At later stages in serves for identification of operational limits and to determine optimum operating points. IPSEpro is the ideal platform for creating heat balance and performance models for biomass power plants.
Biomass Process Applications
For modeling biomass-fueled technologies with IPSEpro, the following modules are often used:
Other modules of interest include:
Biomass Process Applications
For modeling biomass-fueled technologies with IPSEpro, the following modules are often used:
- IPSEpro-PSE
- Advanced Power Plant Library (APP_Lib)
- Enginomix Power Plant Library (EPP_Lib)
- Enginomix Extended Power Plant Library for Solid Fuels (EPP_S_Lib)
- Pyrolysis and Gasification Processes Library (PGP_Lib)
- Enginomix Pulp and Paper Library (EPP_P_Lib)
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