The problem of controlling temperature profile along a monolithic reactor in which an exothermic reaction (selective catalytic reduction of NOx by hydrocarbons) takes place is considered. Several solutions are proposed and compared. It is shown that a near‐optimum temperature profile can be achieved by two rather different approaches – one based on periodic switching of a hot reactant and a cold inert stream between two thermally coupled monoliths, and one based on pre‐mixing the reactant and coolant streams. An adaptive control scheme based on model‐predictive control is proposed and shown to be efficient for the case of time‐variable properties of the reactant stream.
Experience developing multidisciplinary bachelor’s
and master’s curricula involving intertwined chemistry, informatics,
and librarianship–editorship skills is described. The bachelor’s
curriculum was created in close cooperation of academic staff, library
staff, and the publishing house staff (Institute of Chemical Technology
Prague: a sole publisher of chemical literature in Czech Republic),
with the aim to educate a new generation of information retrieval
and e-publishing professionals in the science–technology–medicine
(STM) field. This cooperation together with a set of specifically
tailored courses gave students the insights into real-world issues
of STM publishing. The master’s curriculum, heavily relying
on the bachelor’s stage, inclines towards cheminformatics and
deepens software engineering skills. Successes, pitfalls, and failures
are described, together with proposed changes and future directions.
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