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- W1485686941 abstract "Modeling remains the concerted interplay of more and more sophisticated computational methods and carefully selected simplifications. These aspects are valid in the description of biomass pyrolysis, and therefore be the governing principle of this chapter. To follow this approach, modeling has to face the multiple challenges of the complexity of biomass pyrolysis. The efforts to develop alternative formulae for the k(T) dependence should be here acknowledged, but due to the aims and limitations, the chapter gives priority to the Arrheniusian approach without forgetting its certain shortcomings. Kinetic schemes and thermal models themselves represent different levels of approximation leading to numerous complex models. The chapter provides an overview of the resulting complex models, a clear-cut categorization may be helpful. Biomass pyrolysis takes place as superposition of strongly interacting chemical reactions and transport phenomena. It focuses on the essential chemical details of the models." @default.
- W1485686941 created "2016-06-24" @default.
- W1485686941 creator A5039024716 @default.
- W1485686941 date "2014-07-09" @default.
- W1485686941 modified "2023-10-17" @default.
- W1485686941 title "Numerical Simulation of the Thermal Degradation of Biomass - Approaches and Simplifications" @default.
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- W1485686941 doi "https://doi.org/10.1002/9781118693643.ch15" @default.
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