The general objective of this thesis was to explore the potential of in-situ H2O removal during fuel-related synthesis reactions with focus on in-situ H2O removal by hydrophilic membranes and by chemical reaction. It is demonstrated that in-situ H2O removal through vapour permeation during CO2 hydrogenation to Fischer-Tropsch hydrocarbons and during DME/DEE synthesis leads to increased conversion and yield levels, which are directly linked to the degree of H2O recovery.
本书由J.M.Coulson和J.F. Richardson、J.R. Backhurst等 4 人合著。
AIChE Symposium Series
The Compleat Chemical Engineer: A Guide to Critical Thinking
Solutions Manual for Smith, Van Ness, Abbott, Introduction to Chemical Engineering Thermodynamics, 5th Ed
This collection of 15 hands-on experimentsOCoeach of which includes a full set of both student and teacher pagesOCochallenges students to take on the role of scientist and chef, as they boil, bake, and toast their way to better ...
Stampfer, J. E, McLeod, M. J., Betts, M. R., Martinez, A. M., and Berardinelli, S. P., Journal, American Industrial Hygiene Association, Vol. ... Forsberg, K. and Faniadis, S., Journal, American Industrial Hygiene Association, Vol.
Control Syst., 33, 1006–1009 (1960)]; and on the Gentile flow tube (also called Beth flow tube or Foster flow tube) by Hooper [Trans. Am. Soc. Mech. Eng., 72, 1099–1110 (1950)]. The use of a multiventuri system (in which an inner ...
本书由J.M. Coulson和J.F. Richardson、J.R. Backhurst等4人合著。
本书着重论述内燃机,电气和化学领域的革新,对20世纪美国的技术起着决定性的影响.
化工熱力學導論