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

Supercritical water based liquefaction. Quarterly report No. 3, March 15-June 14, 1985

Technical Report ·
OSTI ID:5134192
The philosophy for our use of H/sub 2/O-H/sub 2/S as a substitute for organic slurrying solvent is that the water fulfills the role of the slurrying liquid and H/sub 2/S is the hydrogen atom donor. The data of Table 1 compare the H/sub 2/O-H/sub 2/S results along with those using (1) a petroleum-coal based organic solvent, anthracene oil (AO4) together with a solvent refined coal middle distillate from the demonstration plant at Tacoma, Washington (SRCMD) and (2) dihydrophenanthrene (DHP), a reputedly excellent hydrogen donor solvent. One rank of coal is represented in the data. Water with synthesis gas equals the performance of A04-SRCMD with synthesis gas for the conversion of two coal samples into volatile materials at the conditions used. The presence of a small amount of H/sub 2/S enhances the as-defined yields whether in water or in an organic solvent. The reactions which had the temperature programmed from 300/sup 0/C to 500/sup 0/C using H/sub 2/O-H/sub 2/S and synthesis gas gave the best of the aqueous-H/sub 2/S conversion yields. Synthesis gas is superior to pure H/sub 2/ (980 psig). The dihydrophenanthrene (DHP) runs gave better conversions than either water or A04-SRCMD given otherwise the same experimental conditions. However, DHP decomposes to the extent of 11% at 420/sup 0/C at 30 minutes, and the non-gaseous products are solids rather than liquids as they are with the water runs. In summary, the H/sub 2/O-H/sub 2/S solvent runs with various ranks of coal given respectable yields of total volatile materials at 420/sup 0/C and with temperature programming the reactor from 300/sup 0/C to 500/sup 0/C, the yields were as good if not better than using one of the best of hydrogen donor model compound solvents. The H/sub 2/S concentration the programming rates or ranges have not been optimized. 11 refs., 4 figs., 1 tab.
Research Organization:
North Dakota Univ., Grand Forks (USA)
DOE Contract Number:
FG22-84PC70787
OSTI ID:
5134192
Report Number(s):
DOE/PC/70787-T4; ON: DE86002100
Country of Publication:
United States
Language:
English