Catalytic reaction rate enhancement at low temperatures

Organic compounds -- part of the class 532-570 series – Organic compounds – Oxygen containing

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568402, 502326, 20415762, 20415742, C07C 29141

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active

056890087

ABSTRACT:
The present invention relates to sustaining high reaction rates at lower reaction temperatures than conventionally utilized with the particular catalyst. The improved reaction rates are obtained using various techniques and combinations thereof including simulated boiling, utilizing the reactant in the form of a thin film, employing microwaves, and the use of micromachines.

REFERENCES:
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House et al;Modern Synthetic Reactions;Second Edition; pp. 34-36, 1972.
The Chemical Society of Japan, Mar. 1988, pp. 961-965, Michio Noda et al., "Liquid-Phase Dehydrogenation of 2-Propanol by Suspended Nickel Fine-Particle Catalyst".
Paper No. 203, pp. 1167-1174, entitled "La cinetique quantitative en catalyse heterogene. La deshydrogenation des alcools secondaires sur le nickel" by Francois Claes et Joseph C. Jungers; (1957).
Mechanical Engineering, Sep. 1994, pp. 82-85, R.S. Wegeng and M.K. Drost, "Developing new miniature energy systems".
Proceed.8th World Hydrogen Energy Conference, vol. 1, pp. 339-344, 1990, Y. Saito et al., "Hydrogen Production From 2-Propanol As A Key Reaction For Chemical Heat Pump With Reaction Couple Of 2-Propanol Dehydrogenation/Acetone Hydrogenation".

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