Abstract
The solubility of solvent-refined coal and solvent-refined lignite increased from 25-60 wt % to 80-100 wt % in benzene and chloroform upon either acetylation or silylation. Evidence is presented to confirm that intermolecular hydrogen bonding plays a key role in the solubility of coal-derived products. (9 refs.)
Citation Formats
Patel, K M, Stenberg, V I, Baltisberger, R J, Woolsey, N F, and Klabunde, K J.
Solubility increase of coal-derived liquids by silylation and acetylation: intermolecular hydrogen bonding.
United Kingdom: N. p.,
1980.
Web.
doi:10.1016/0016-2361(80)90205-7.
Patel, K M, Stenberg, V I, Baltisberger, R J, Woolsey, N F, & Klabunde, K J.
Solubility increase of coal-derived liquids by silylation and acetylation: intermolecular hydrogen bonding.
United Kingdom.
https://doi.org/10.1016/0016-2361(80)90205-7
Patel, K M, Stenberg, V I, Baltisberger, R J, Woolsey, N F, and Klabunde, K J.
1980.
"Solubility increase of coal-derived liquids by silylation and acetylation: intermolecular hydrogen bonding."
United Kingdom.
https://doi.org/10.1016/0016-2361(80)90205-7.
@misc{etde_5174965,
title = {Solubility increase of coal-derived liquids by silylation and acetylation: intermolecular hydrogen bonding}
author = {Patel, K M, Stenberg, V I, Baltisberger, R J, Woolsey, N F, and Klabunde, K J}
abstractNote = {The solubility of solvent-refined coal and solvent-refined lignite increased from 25-60 wt % to 80-100 wt % in benzene and chloroform upon either acetylation or silylation. Evidence is presented to confirm that intermolecular hydrogen bonding plays a key role in the solubility of coal-derived products. (9 refs.)}
doi = {10.1016/0016-2361(80)90205-7}
journal = []
volume = {59:6}
journal type = {AC}
place = {United Kingdom}
year = {1980}
month = {Jun}
}
title = {Solubility increase of coal-derived liquids by silylation and acetylation: intermolecular hydrogen bonding}
author = {Patel, K M, Stenberg, V I, Baltisberger, R J, Woolsey, N F, and Klabunde, K J}
abstractNote = {The solubility of solvent-refined coal and solvent-refined lignite increased from 25-60 wt % to 80-100 wt % in benzene and chloroform upon either acetylation or silylation. Evidence is presented to confirm that intermolecular hydrogen bonding plays a key role in the solubility of coal-derived products. (9 refs.)}
doi = {10.1016/0016-2361(80)90205-7}
journal = []
volume = {59:6}
journal type = {AC}
place = {United Kingdom}
year = {1980}
month = {Jun}
}