By Peter L. Auer and David Douglas (Eds.)
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In addition to electrolyte loss, performance decay can be caused by the corrosion of the various cell components. Even stainless steel may be expected to corrode within MCFCs. Another potential degradation mechanism is the tendency of the lithium aluminate filler in the electrolyte system to undergo phase changes as a function of temperature and time. The phase changes result in volume (pore size) changes leading to a loss in the system's ability to retain electrolyte. 6 300 1,000 3,000 Cell Operating Time (h) 10,000 20,000 Fig.
2. The complexity of external fuel-processing equipment is eliminated. 3. Much smaller, modular MCFC power plants can be envisaged. , 1982) that project overall power plant efficiencies of 60%. This concept warrants careful watching for progress over the next 2 to 3 years. , methane (natural gas) and methanol. Fuels containing more than a single carbon do not reform cleanly, and the by-products would eventually contaminate the cell. 3. Solid Oxide Fuel Cell Systems Very little attention has been devoted to SOFC power plants.
1. The dramatic increase in the price of petroleum that started with the formation of OPEC in the early 1970s and continued throughout that decade. 2. The declaration by the Carter administration in 1976-1977 that the electric utility industry would be constrained in the use of petroleum and natural gas. This requirement was subsequently implemented under the Industrial Fuel Use Act of 1978. Although the act specifically exempted fuel cells, the utility industry was not completely convinced that this exemption would be permanent.
Advances in Energy Systems and Technology. Volume 5 by Peter L. Auer and David Douglas (Eds.)