Microreactors intensify chemical processes due to improved flow regimes, mass and heat transfer. In the present study, the effect of the volume flow rate on reactor performance in different reactors (the T-shaped reactor, the interdigital microreactor and the chicane microreactor) was investigated. For this purpose, the saponification reaction in these reactor systems was considered. Experimental results were verified using the obtained kinetic model. The reactor system with a T-shaped reactor shows good performance only at high flow rates, while the experimental setups with the interdigital and the chicane microreactors yield good performance throughout the whole range of volume flow rates. However, microreactors exhibit a higher pressure ...
Chemical kinetics is the part of physical chemistry that studies reaction rates of the reaction. As ...
The increasing academic and industrial interest in flow chemistry resulted in the development of var...
Micro-reactor systems are a promising progress in chemical engineering. The challenge is to design c...
The effect of reactor geometry on the percent completion of a second order reaction was studied in f...
In this work, Saponification reaction of ethyl acetate by sodium hydroxide is studied experimentally...
A reactor of rectangular cross-sectional, area was constructed of plexiglass to study the effect of ...
The development and intensification of flow reactors are emerging as a new niche area in the pharmac...
Numerous continuous intensified reactors are now accessible on the market that offer enhanced therma...
The integration of reaction and separation into a single process unit, i. e., reactive destillation,...
The effect of flow regimes on the reaction yield of a chemical reaction occurring in a T-shaped micr...
ABSTRACT: Alkaline hydrolysis of ethyl acetate is essentially an irreversible and second order react...
We present a new micro reactor concept which is suitable for investigations of heterogeneously catal...
Process engineering is based on models, which are preferably established at laboratory scale under n...
This work presents the modelling and simulation of saponification of ethyl acetate in the presence o...
The choice of impeller type is an important factor in maximizing the performance of a stirred tank r...
Chemical kinetics is the part of physical chemistry that studies reaction rates of the reaction. As ...
The increasing academic and industrial interest in flow chemistry resulted in the development of var...
Micro-reactor systems are a promising progress in chemical engineering. The challenge is to design c...
The effect of reactor geometry on the percent completion of a second order reaction was studied in f...
In this work, Saponification reaction of ethyl acetate by sodium hydroxide is studied experimentally...
A reactor of rectangular cross-sectional, area was constructed of plexiglass to study the effect of ...
The development and intensification of flow reactors are emerging as a new niche area in the pharmac...
Numerous continuous intensified reactors are now accessible on the market that offer enhanced therma...
The integration of reaction and separation into a single process unit, i. e., reactive destillation,...
The effect of flow regimes on the reaction yield of a chemical reaction occurring in a T-shaped micr...
ABSTRACT: Alkaline hydrolysis of ethyl acetate is essentially an irreversible and second order react...
We present a new micro reactor concept which is suitable for investigations of heterogeneously catal...
Process engineering is based on models, which are preferably established at laboratory scale under n...
This work presents the modelling and simulation of saponification of ethyl acetate in the presence o...
The choice of impeller type is an important factor in maximizing the performance of a stirred tank r...
Chemical kinetics is the part of physical chemistry that studies reaction rates of the reaction. As ...
The increasing academic and industrial interest in flow chemistry resulted in the development of var...
Micro-reactor systems are a promising progress in chemical engineering. The challenge is to design c...