logo

Redox Flow Batteries Vanadium to Earth Quinones

PDF Publication Title:

Redox Flow Batteries Vanadium to Earth Quinones ( redox-flow-batteries-vanadium-earth-quinones )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 242

(15) G. Ciprios, W. Erstoine, Jr. and P. G. Grimes (Exxon/GRU, 1, 77-V, 1 and Exxon/ GRU. 2, BH, 77-V) NASA Contract Rep. No. NAS3-135-206, Vols. 1 & 2, 1977. (16) J. Giner, L. Swette and K. Cahill, NASA Contract NAS3-19760, NASA CR- 134705, 1976. 8. (17) Beccu, K.-D. Umweltbelastung Und Sicherheitsfaktoren Elektrochemischer Speichersysteme Zur Spitzenlastdeckung. Chemie Ingenieur Technik 1979, 51 (6), 659–662. (18) Warshay, M.; Wright, L. O. Cost and Size Estimates for a Redox Bulk Energy Storage Concept. Journal of The Electrochemical Society 1977, 124 (2), 173. (19) R. D. Weaver, Final Rep., Stanford Res. Inst., for EPRI (EPRI Proj. RP 370-2, SRI Proj. 3974-2), January, 1976. (20) Thaller, L. H. RECENT ADVANCES IN REDOX FLOW CELL STORAGE SYSTEMS. (21) 27 J. D. Giner and K. J. Cahill, U.S. Pat. 61 555 (June 20, 1980). (22) T. Nozaki, N. Kaneko and T. Ozawa, Denki Toronkai (Japan), 18 (1979) 33 https://docs.google.com/viewer?url=patentimages.storage.googleapis.com/p dfs/US5993986.pdf (accessed Jun 1, 2017). (23) N. H. Hagedorn and L. H. Thaller, NASA Tech. Mem, NASA-TM-81464, E- 383,1980. (24) Sept. N. H. Hagedorn, Proc. 16th Intersoc. Energy Conv. Eng. Conf., Vol. 1, 1981, p. 805. CPIA Publication 1 (1), 129–137. (25) Liu, C. C.; Galasco, R. T.; Savinell, R. F. Enhancing Performance of the Ti(III)/Ti(IV) Couple for Redox Battery Applications. Journal of The Electrochemical Society 1981, 128 (8), 1755. (26) Trainham, J. A.; Newman, J. A Comparison between Flow-through and Flow- by Porous Electrodes for Redox Energy Storage. Electrochimica Acta 1981, 26 (4), 455–469. (27) J. S. Ling and J. Charleston, NASA Tech. Mem. 1980, NASA-TM-82701, DOE/ NASA/12726-12, E798. (28) J. Giner, V. Jalan and L. Swette, Dechema - Monograf. 1982,92-1885 https://docs.google.com/viewer?url=patentimages.storage.googleapis.com/p dfs/US5104497.pdf (accessed Jun 2, 2017). (29) Liu, C. C.; Galasco, R. T.; Savinell, R. F. Operating Performance of an Fe-Ti Stationary Redox Battery in the Presence of Lead. Journal of The Electrochemical Society 1982, 129 (11), 2502. (30) Yang, C. Y. Catalytic Electrodes for the Redox Flow Cell Energy Storage Device. Journal of Applied Electrochemistry 1982, 12 (4), 425–434. (31) Oei, D.-G. Chemically Regenerative Redox Fuel Cells. Journal of Applied Electrochemistry 1982, 12 (1), 41–51. (32) Fedkiw, P. S.; Watts, R. W. A Mathematical Model for the Iron/Chromium Redox Battery. Journal of The Electrochemical Society 1984, 131 (4), 701. (33) H. Ohya, K. Emori, T. Ohto and Y. Negishi, Denki Kagaku, 52 (1984) 341. - 241

PDF Image | Redox Flow Batteries Vanadium to Earth Quinones

redox-flow-batteries-vanadium-earth-quinones-242

PDF Search Title:

Redox Flow Batteries Vanadium to Earth Quinones

Original File Name Searched:

FJVG_TESIS.pdf

DIY PDF Search: Google It | Yahoo | Bing

Salgenx Redox Flow Battery Technology: Salt water flow battery technology with low cost and great energy density that can be used for power storage and thermal storage. Let us de-risk your production using our license. Our aqueous flow battery is less cost than Tesla Megapack and available faster. Redox flow battery. No membrane needed like with Vanadium, or Bromine. Salgenx flow battery

CONTACT TEL: 608-238-6001 Email: greg@salgenx.com | RSS | AMP