By Vishwas G. Pangarkar
Details uncomplicated layout tools for multiphase reactors within the chemical technique industries
- Includes uncomplicated facets of shipping in multiphase reactors and the significance of rather trustworthy and straightforward tactics for predicting mass move parameters
- Details of layout and scale up elements of a number of vital different types of multiphase reactors
- Examples illustrated via layout methodologies offering varied reactors for reactions which are industrially important
- Includes basic spreadsheet applications instead of advanced algorithms / courses or computational aid
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2005) Degussa P25 V2O5/Al2O3; TiO2 Degussa P25 Gonzalez et al. (1999) Giannotti et al. (1983); Mu et al. (1989); Gonzalez et al. (1999); Teramura et al. (2004); Du et al. (2006); Almeida et al. (2010) Gonzalez et al. (1999) Degussa P25 Gonzalez et al. (1999) Degussa P25/Cu (II) Ti (IV) without precious metals V2O5 on TiO2 on commercial ZnS-based phosphor Specially prepared anatase TiO2 nanocrystals Ru(bpy)3Cl2 Supported gold nanoparticles Spasiano et al. (2013) Imamura et al. (2013) Ciambelli et al.
Click chemistry is likely to be a very attractive complement to combinatorial methods that are widely used in drug discovery and related process development. The latter is very arduous, involving a large number of complex individual chemical reactions to build the desired molecule. These individual reactions lack selectivity, and as a result, (i) the yield is low and (ii) isolation/purification poses serious problems. Indeed, in most cases, the complex separation processes contribute a significant portion to the overall cost.
Design of Multiphase Reactors by Vishwas G. Pangarkar