Si les atouts écologiques et économiques de la catalyse bifonctionnelle sont mis à profit dans de nombreux procédés du raffinage et de la pétrochimie, cette catalyse ne joue jusqu'alors qu'un rôle négligeable en conversion des alcanes légers et en Chimie Fine. Les exemples présentés dans cet article montrent que les processus bifonctionnels sont pourtant similaires impliquant des étapes successives de diffusion et de transformation chimique catalysées par les deux types de sites actifs. En revanche, les particularités des molécules de réactif, intermédiaires et produits induisent des différences importantes de réactivité et de vitesse de diffusion dans les pores. Les caractéristiques optimales des catalyseurs bifonctionnels sont donc différentes: support méso ou macroporeux plutôt que microporeux, peu acide, voire basique, etc.
While many industrial processes in oil refining and petrochemistry take advantage from its sustainable character, bifunctional catalysis has played so far a negligible role in the light-alkane conversion and in fine chemicals synthesis. The set of study cases reported in this article show that bifunctional processes are indeed similar, involving successive steps of molecular diffusion and chemical conversion catalyzed by two types of active sites. Conversely, the peculiar characters of the reactant, intermediate and product molecules induce remarkable differences in their reactivity as well as in their diffusional behaviour along the pores. The optimal features of the bifunctional catalysts are therefore different: support with meso or macropores instead of micropores, etc.
Catalyse bifonctionnelle Application en valorisation des alcanes légers et en chimie fine
Matteo GUIDOTTI
2015
Abstract
While many industrial processes in oil refining and petrochemistry take advantage from its sustainable character, bifunctional catalysis has played so far a negligible role in the light-alkane conversion and in fine chemicals synthesis. The set of study cases reported in this article show that bifunctional processes are indeed similar, involving successive steps of molecular diffusion and chemical conversion catalyzed by two types of active sites. Conversely, the peculiar characters of the reactant, intermediate and product molecules induce remarkable differences in their reactivity as well as in their diffusional behaviour along the pores. The optimal features of the bifunctional catalysts are therefore different: support with meso or macropores instead of micropores, etc.| File | Dimensione | Formato | |
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