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U.S. Department of Energy
Office of Scientific and Technical Information

Novel Approaches to the Production of Higher Alcohols From Synthesis Gas. Quarterly report, January 1 - March 31, 1996

Technical Report ·
DOI:https://doi.org/10.2172/3447· OSTI ID:3447
 [1]
  1. Federal Energy Technology Center

Effort during this quarter was devoted to three areas: 1) analyzing the data from earlier runs with "zinc chromite"catalyst and three different slurry liquids: decahydronaphthalene (Decalin®, DHN), tetrahydronaphthalene (tetralin, THN) and tetrahydroquinoline (THQ); 2) analyzing newly-obtained data from earlier thermal stability tests on DHN and THN, and 3) carrying out a thermal stability test on THQ. Both the activity and selectivity of "zinc chromite" catalyst depended on the slurry liquid that was used. The catalyst activity for methanol synthesis was in the order: THQ > DHN > THN. Despite the basic nature of THQ, it exhibited the highest dimethyl ether (DME) production rates of the three liquids. Gas chromatography/mass spectroscopy (GC/MS) analyses of samples of THN and DHN were taken at the end of standard thermal stability tests at 375°C. With both liquids, the only measurable compositional change was a minor amount of isomerization. Analysis of a sample of THN after a thermal stability test at 425°C showed a small reduction in molecular weight, and a significant amount of opening of the naphthenic ring. Preliminary data from the tehrmal stability test of THQ showed that this molecule is more stable than DHN, but less stable than THN.

Research Organization:
Federal Energy Technology Center, Morgantown, WV, and Pittsburgh, PA; North Carolina State University, Raleigh, NC (US)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC22-90PC90043
OSTI ID:
3447
Report Number(s):
DE-AC22-90PC90043--22
Country of Publication:
United States
Language:
English