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Advances in Energy Systems and Technology. Volume 5 by Peter L. Auer and David Douglas (Eds.) PDF

Posted On February 23, 2018 at 8:00 am by / Comments Off on Advances in Energy Systems and Technology. Volume 5 by Peter L. Auer and David Douglas (Eds.) PDF

By Peter L. Auer and David Douglas (Eds.)

ISBN-10: 0120149052

ISBN-13: 9780120149056

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Additional info for Advances in Energy Systems and Technology. Volume 5

Example text

Natural gas and petroleum are, temporarily at least, in good supply. Consequently, the Fuel Use Act is not rigidly enforced. Furthermore, many of the synthetic fuel projects initiated in the 1970s are being terminated for lack of economic viability. Given the vast changes in the fuel scenarios that have transpired over the past 20 years, we must conclude that developing a technology to meet any single future scenario would be foolhardy. Consider, for example, the following possible scenarios, any of which has some popular support based on a rational argument.

5. Any CO in the fuel gas will undergo the water/gas shift reaction (CO + H 2 0 -> C0 2 + H2) at 650°C cell temperature. The equilibrium constant for this reaction is a function of temperature; the theoretical potential decreases with increasing temperature. However, all other performance aspects improve with increasing temperature. The net effect is improved cell voltage with increased temperature (Fig. 14). The relatively small effect of temperatures above 650°C provides little incentive for operating above this temperature and thus encountering the additional corrosion problems that result.

System considerations have generally caused MCFC cost and efficiency to optimize at between 6 and 10 atm. 5. Any CO in the fuel gas will undergo the water/gas shift reaction (CO + H 2 0 -> C0 2 + H2) at 650°C cell temperature. The equilibrium constant for this reaction is a function of temperature; the theoretical potential decreases with increasing temperature. However, all other performance aspects improve with increasing temperature. The net effect is improved cell voltage with increased temperature (Fig.

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Advances in Energy Systems and Technology. Volume 5 by Peter L. Auer and David Douglas (Eds.)


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