Thermally safe operation of a SBR implies that conditions leading to a large accumulation of unconverted reactants are avoided. In this work a new method for assessing the thermal stability of semibatch processes is presented. The thermal runaway region is characterised as a function of the design parameters using a criterion based on the Lyapunov exponents. The results are in good agreement with existing methods. The advantages of this method are its simolicity and flexibility since it can be applied to complex systems without previous particular definition.JRC.(ISIS)-Institute For Systems, Informatics And Safet
Fast and strongly exothermic reactions can exhibit a well-known phenomenon called “thermal runaway”....
In this work, the generalised parametric sensitivity criterion has been applied to isoperbolic - con...
A great variety of processes of both fine chemical and pharmaceutical industries are commonly carrie...
To prevent the occurrence of thermal runaway accidents in semibatch reactors (SBRs), it is desirable...
Fast and highly exothermic reactions are commonly carried out in semibatch reactors (SBRs) in order ...
Thermal stability of batch processes is a major factor for the safe and efficient production of poly...
To prevent thermal runaway incidents in semibatch reactors (SBRs), designing thermally safe operatin...
In fine chemical industries, potentially runaway reactions are often carried out in semibatch reacto...
Thermal runaways in exothermic batch reactions are a major economic, health and safety risk in indus...
Accumulation of the reactant supplied to a cooled semibatch reactor (SBR) will occur if the mass tra...
Fast and strongly exothermic reactions can exhibit a well-known phenomenon called “thermal runaway”....
In this work, the generalised parametric sensitivity criterion has been applied to isoperbolic - con...
A great variety of processes of both fine chemical and pharmaceutical industries are commonly carrie...
To prevent the occurrence of thermal runaway accidents in semibatch reactors (SBRs), it is desirable...
Fast and highly exothermic reactions are commonly carried out in semibatch reactors (SBRs) in order ...
Thermal stability of batch processes is a major factor for the safe and efficient production of poly...
To prevent thermal runaway incidents in semibatch reactors (SBRs), designing thermally safe operatin...
In fine chemical industries, potentially runaway reactions are often carried out in semibatch reacto...
Thermal runaways in exothermic batch reactions are a major economic, health and safety risk in indus...
Accumulation of the reactant supplied to a cooled semibatch reactor (SBR) will occur if the mass tra...
Fast and strongly exothermic reactions can exhibit a well-known phenomenon called “thermal runaway”....
In this work, the generalised parametric sensitivity criterion has been applied to isoperbolic - con...
A great variety of processes of both fine chemical and pharmaceutical industries are commonly carrie...