LEADER 04222nam 22010213a 450 001 9910346675603321 005 20250203235428.0 010 $a9783039211807 010 $a3039211803 024 8 $a10.3390/books978-3-03921-180-7 035 $a(CKB)4920000000094911 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/54077 035 $a(ScCtBLL)c4afd7ea-f538-42a2-93a9-4715464d86f3 035 $a(OCoLC)1156381565 035 $a(oapen)doab54077 035 $a(EXLCZ)994920000000094911 100 $a20250203i20192019 uu 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aMultiscale and Innovative Kinetic Approaches in Heterogeneous Catalysis$fYves Schuurman, Pascal Granger 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2019 210 1$aBasel, Switzerland :$cMDPI,$d2019. 215 $a1 electronic resource (214 p.) 311 08$a9783039211791 311 08$a303921179X 330 $aKinetics and reactor modeling for heterogeneous catalytic reactions are prominent tools for investigating and understanding catalyst functionalities at nanoscale and the related rates of complex reaction networks. This book illustrates some examples related to the transformation of simple to more complex feedstocks, including different types of reactor designs, i.e., steady-state, transient plug flow reactors, and TAP reactors for which there is sometimes a strong gap in the operating conditions from ultra-high-vacuum to high-pressure conditions. In conjunction, new methodologies have emerged, giving rise to more robust microkinetics models. As exemplified, they include the kinetics and the dynamics of the reactors and span a large range of length and time scales. The objective of this Special Issue is to provide contributions that can illustrate recent advances and novel methodologies for elucidating the kinetics of heterogeneous reactions and the necessary multiscale approach for optimizing the reactor design. This book is dedicated to postgraduate and scientific researchers, and experts in heterogeneous catalysis. 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