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Solid liquid phase kinetic reaction models for mineral dissolution in acidic solutions mainly include first-order reaction models, interfacial reaction models, and capacity models (Zhong 2006).
Reaction models replication of a viral template into a viral.
Two reaction models were investigated to explain these experimental results.
Combining different fluid flow models (i.e. hydrodynamics model) with varying chemical reaction models (i.e. kinetic model) gives rise to coupled flow-reaction models for FCC riser reactors.
Results of various gas solid reaction models are analyzed.
The combustion process utilizes detailed gas and surface reaction models.
Global reaction models of fuel and carrier chemistry were utilized.
This type of reaction models the insertion of ethylene into the Ti C bond.
The second one is whether to use equilibrium or kinetic reaction models.
Similar results were obtained in most cases by using either of the reversible reaction models.
A general MATLAB-based automated procedure for the development of reduced reaction models is presented.
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