-
1
-
-
0031556179
-
Polyelectrolyte membranes for acid gas separations
-
R. Quinn and D.V. Laciak, Polyelectrolyte membranes for acid gas separations, J. Membrane Sci., 131 (1997) 49-60.
-
(1997)
J. Membrane Sci.
, vol.131
, pp. 49-60
-
-
Quinn, R.1
Laciak, D.V.2
-
3
-
-
0343316776
-
Evaluation of active transport membranes for carbon dioxide removal from hydrogen containing streams
-
November 1995 Contract No. DE-FC36-94GO10004, in press
-
P.J. Cook, D.V. Laciak, G.P. Pez, and R. Quinn, Evaluation of active transport membranes for carbon dioxide removal from hydrogen containing streams, DOE final topical report, November 1995 Contract No. DE-FC36-94GO10004, in press.
-
DOE Final Topical Report
-
-
Cook, P.J.1
Laciak, D.V.2
Pez, G.P.3
Quinn, R.4
-
4
-
-
0003037596
-
Salt hydrates: New reversible absorbents for carbon dioxide
-
R. Quinn, J.B. Appleby and G.P. Pez, Salt hydrates: new reversible absorbents for carbon dioxide, J. Am. Chem. Soc., 117 (1995) 329-335.
-
(1995)
J. Am. Chem. Soc.
, vol.117
, pp. 329-335
-
-
Quinn, R.1
Appleby, J.B.2
Pez, G.P.3
-
5
-
-
0008621962
-
-
US Patent 4,973,456, 1990
-
R. Quinn and G.P. Pez, Use of molten salt hydrates as reversible absorbents of acid gases, US Patent 4,973,456, 1990.
-
Use of Molten Salt Hydrates As Reversible Absorbents of Acid Gases
-
-
Quinn, R.1
Pez, G.P.2
-
6
-
-
0343752681
-
-
US patent 4,762,535, 1988
-
G.P. Pez and D.V. Laciak, Ammonia separation using semipermeable membranes, US patent 4,762,535, 1988.
-
Ammonia Separation Using Semipermeable Membranes
-
-
Pez, G.P.1
Laciak, D.V.2
-
8
-
-
0343316775
-
-
US patent 4,913,818, 1990
-
H.F. Van Wijk and A.E. Jansen, Method and membrane for the removal of water vapor from a gas/vapor mixture by means of vapor permeation, US patent 4,913,818, 1990.
-
Method and Membrane for the Removal of Water Vapor from a Gas/vapor Mixture by Means of Vapor Permeation
-
-
Van Wijk, H.F.1
Jansen, A.E.2
-
9
-
-
0343316774
-
Dehydration of alcohols by vapor permeation
-
R.A. Bakis (Ed.), Bakish Materials Corp.
-
A.E. Jansen, W.F. Versteeg, B. van Engelenburg and J.H. Hanemaaijer, Dehydration of alcohols by vapor permeation, Proc. Int. Conf. Pervaporation Processes Chem. Ind., 3rd, 338-341, R.A. Bakis (Ed.), Bakish Materials Corp., 1988.
-
(1988)
Proc. Int. Conf. Pervaporation Processes Chem. Ind., 3rd
, pp. 338-341
-
-
Jansen, A.E.1
Versteeg, W.F.2
Van Engelenburg, B.3
Hanemaaijer, J.H.4
-
10
-
-
0026849076
-
Methods to improve flux during alcohol/water azeotrope separation by vapor permeation
-
A.E. Jansen, W.F. Versteeg, B. van Engelenburg, J.H. Hanemaaijer and B.Ph. ter Meulen, Methods to improve flux during alcohol/water azeotrope separation by vapor permeation, J. Membrane Sci., 68 (1992) 229-239.
-
(1992)
J. Membrane Sci.
, vol.68
, pp. 229-239
-
-
Jansen, A.E.1
Versteeg, W.F.2
Van Engelenburg, B.3
Hanemaaijer, J.H.4
Ter Meulen, B.Ph.5
-
11
-
-
0004892729
-
Polyhedral clathrate hydrates.V. Structure of the tetra-n-butyl ammonium fluoride hydrate
-
R.K. McMullan, M. Bonamico and G.A. Jeffrey, Polyhedral clathrate hydrates.V. Structure of the tetra-n-butyl ammonium fluoride hydrate, J. Chem. Phys., 39 (1963) 3295-3310.
-
(1963)
J. Chem. Phys.
, vol.39
, pp. 3295-3310
-
-
McMullan, R.K.1
Bonamico, M.2
Jeffrey, G.A.3
-
12
-
-
0003453440
-
Hydrogen bonding. Part 18. The nature of the oxygen-hydrogen-fluoride hydrogen bond in choline fluoride
-
K.M. Harmon, S.L. Madeira, M.J. Jacks, G.F. Avci and A.C. Thiel, Hydrogen bonding. Part 18. The nature of the oxygen-hydrogen-fluoride hydrogen bond in choline fluoride, J. Molec. Struct., 128 (1985) 305-314.
-
(1985)
J. Molec. Struct.
, vol.128
, pp. 305-314
-
-
Harmon, K.M.1
Madeira, S.L.2
Jacks, M.J.3
Avci, G.F.4
Thiel, A.C.5
-
13
-
-
0019623862
-
Structure and ion transport in polymer-salt complexes
-
For example, the limiting polymer-salt molar ratio is 4 to 1 for polyethylene oxide/salt complexes. D.F. Shriver, B.L. Papke, M.A. Ratner, R. Dupon, T. Wong and M. Brodwin, Structure and ion transport in polymer-salt complexes, Solid State Ionics, 5 (1981) 83-88.
-
(1981)
Solid State Ionics
, vol.5
, pp. 83-88
-
-
Shriver, D.F.1
Papke, B.L.2
Ratner, M.A.3
Dupon, R.4
Wong, T.5
Brodwin, M.6
-
14
-
-
0342881868
-
-
American Chemical Society
-
A. saturated solution of KF contains 0.29 mol KF/mol water versus 0.43 mol CsF/mol water, both at 18°C. W.F. Linke, Solubilities of Inorganic and Metal-Organic Compounds, 4th edn, American Chemical Society (1958, 1965) Vol I, p. 888; Vol. II, p. 202.
-
(1958)
Solubilities of Inorganic and Metal-organic Compounds, 4th Edn
, vol.1
, pp. 888
-
-
Linke, W.F.1
-
15
-
-
0342881869
-
-
A. saturated solution of KF contains 0.29 mol KF/mol water versus 0.43 mol CsF/mol water, both at 18°C. W.F. Linke, Solubilities of Inorganic and Metal-Organic Compounds, 4th edn, American Chemical Society (1958, 1965) Vol I, p. 888; Vol. II, p. 202.
-
Solubilities of Inorganic and Metal-organic Compounds, 4th Edn
, vol.2
, pp. 202
-
-
-
16
-
-
0000645953
-
Gas permeation processes
-
S. Loeb and R.E. Lacey (Eds.), Wiley
-
S.A. Stern, Gas permeation processes, in: Industrial Processing with Membranes, S. Loeb and R.E. Lacey (Eds.), Wiley, 1972, pp. 279-339.
-
(1972)
Industrial Processing with Membranes
, pp. 279-339
-
-
Stern, S.A.1
-
17
-
-
0002237119
-
Industrial applications of facilitated transport
-
N.N. Li (Ed.), CRC Press
-
S.G. Kimura, S.L. Matson and W.J. Ward, Industrial applications of facilitated transport, in: Recent Developments in Separation Science, N.N. Li (Ed.), CRC Press, 1979, pp. 11-25.
-
(1979)
Recent Developments in Separation Science
, pp. 11-25
-
-
Kimura, S.G.1
Matson, S.L.2
Ward, W.J.3
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