Mixed ionic-electronic conductors for oxygen separation and elec

Chemistry: electrical and wave energy – Processes and products

Patent

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

204296, 204283, 252518, 252519, 252520, 252521, 429 33, 501103, 501123, 501126, 501134, 501152, C25B 102, C25B 1304

Patent

active

052736288

ABSTRACT:
Mixed oxygen ion and electronic conducting bismuth oxide based ceramic materials having high ambipolar activity which can be fabricated into thin membranes for high efficiency oxygen separation from air at intermediate temperatures. The ceramic materials may be homogeneous microstructures in the form of solid solutions or compounds or may be composite non-homogeneous microstructures of a separate substantially continuous oxygen ion conductive phase and a substantially continuous electronic conductive phase.

REFERENCES:
patent: 3956194 (1976-05-01), Armand
patent: 4793904 (1988-12-01), Mazanec et al.
patent: 4802958 (1989-02-01), Mazanec et al.
patent: 4803134 (1989-02-01), Sammells
patent: 4812329 (1989-03-01), Isenberg
patent: 4931214 (1990-06-01), Worrell et al.
patent: 4933054 (1990-06-01), Mazanec et al.
patent: 5006494 (1991-04-01), Virkar
Liu, Electrode Kinetics and Transport Properties of Mixed Ionic-Electronic Conductors; Proceedings of the First International Symposium on Ionic and Mixed Conducting Ceramics; vol. 91-12; 12-91 pp. 191-215.
Liu et al, Characterization of Mixed Ionic-Electronic Conductors, Proceedings of the First International Symposium on Ionic and Mixed Conducting Ceramics; vol. 91-12; pp. 231-247; 12-91.
Worell, Electrical Properties of Mixed-Conducting Oxides Having High Oxygen-Ion Conductivity; pp. 147-151; 1991.
M. J. Verkerk and A. J. Burggraaf, "High Oxygen Ion Conduction in Sintered Oxides of the Bi2O3-Dy2O3 System", J. Electrochem. Soc., 128, No. 1, 75-82 (1981).
P. J. Dordor, J. Tanaka and A. Watanabe, "Electrical Characterization of Phase Transition In Yttrium Doped Bismuth Oxide, Bi1.55Y0.45O3", Solid State Ionics, 25, 177-181, (1987).
H. T. Cahen, T. G. M. Van Den Belt, J. H. W. De Wit and G. H. J. Broers, "The Electrical Conductivity of --Bi2O3 Stabilized By Isovalent Rare-Earth Oxides R2O3", Solid State Ionics, 1, 411-423, (1980).
H. T. Cahen, J. H. W. De Wit, A. Honders, G. H. J. Broers and J. P. M. Van Den Dungen, "Thermogalvanic Power And Fast Ion Conduction In --Bi2O3 And -(Bi2O3)1-x(R2O3)x With R=Y, Tb-Lu", Solid State Ionics, 1, 4250440, (1980).
H. Iwahara, T. Esaka, T. Sato and T. Takahashi, J., "Formation of High Oxides Ion Conductive Phases in the Sintered Oxides of the System Bi2O3-La2)3 System Bi2O3-Ln2O3 (Ln=La-Yb)", Solid State Chem., 39, 173-180, (1981).
M. J. Verkerk and A. J. Burggraaf, "High Oxygen Ion Conduction In Sintered Oxides Of The Bi2O3-La2O3 System", Solid State Ionics, 3/4, 463-467, (1981).

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Mixed ionic-electronic conductors for oxygen separation and elec does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Mixed ionic-electronic conductors for oxygen separation and elec, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Mixed ionic-electronic conductors for oxygen separation and elec will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-1540380

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.