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We Energies Coal Combustion Products ... - The White House

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16. Wisconsin Department of Transportation, “Standard Specifications for Highway and<br />

Structure Construction”, 2003 Edition.<br />

17. Michigan Department of Transportation, “2003 Standard Specifications for<br />

Construction”, February 2003.<br />

18. American Society for Testing and Materials, 1975, ASTM C595, “Standard<br />

Specifications for Blended Hydraulic Cements”, in Annual Book of ASTM Standards,<br />

Part 13, ASTM, Philadelphia, PA p. 353.<br />

19. Sivasundaram, V., Carette, G.G., and Malhotra, V.M., “Properties of Concrete<br />

Incorporating Low Quantity of Cement and High Volumes of Low Calcium Fly Ash”,<br />

ACI Special Publication SP-114, Vol. 1, 1989, pp. 45-71 (ed.: V.M. Malhorta).<br />

20. Dunstan, E.R., 1976, “Performance of Lignite and Sub-bituminous Fly Ash in Concrete<br />

– A Progress Report”, Bureau of Reclamation, Denver, CO, Report REC-ERC-76-1.<br />

21. Electric Power Research Institute, “Using <strong>Coal</strong> Ash to Mitigate Alkali Silica<br />

Reactivity”, Resource Paper, <strong>Combustion</strong> By-Product Use Program, November 2003.<br />

22. Golden, D., “Evaluation of the Effectiveness of High-Calcium Fly Ashes in Reducing<br />

Expansion Due to Alkali-Silica Reaction (ASR) in Concrete”, Technical Report,<br />

Electric Power Research Institute, December 2003.<br />

23. Mehta, P.K., “Role of Pozzolanic and Cementitious Materials in Sustainable<br />

Development of the Concrete Industry”, Proceedings of Sixth CANMET/ACI<br />

International Conference, Bangkok, Thailand, 1998.<br />

24. Naik, T.R. and Ramme, B.W., “Low Cement Content High Strength Structural Grade<br />

Concrete With Fly Ash”, Presented at the 1986 fall convention, ACI, Baltimore, MD,<br />

November 9–14, 1986.<br />

25. Naik, T.R. and Ramme, B.W., “Effects of High-Lime Fly Ash Content on Water<br />

Demand, Workability, Time of Set and Compressive Strength of Concrete”, Presented<br />

at the Third International Conference on the Use of Fly Ash, Silica Fume, Slag and<br />

Natural Pozzolan in Concrete, Trondheim, Norway, June 18–23, 1989.<br />

26. Naik, T.R. and Ramme, B.W., “Setting and Hardening of High Fly Ash Content<br />

Concrete”, Presented at the American <strong>Coal</strong> Ash Association's 8 th International <strong>Coal</strong><br />

Ash Utilization Symposium, Washington, D.C. , October 28–31, 1987.<br />

27. Naik, T.R., Singh, S.S., and Hossain, N.M., “Abrasion Resistance of Concrete Made<br />

With Class C Fly Ash”, CBU Report No. REP-200, May 1993.<br />

28. Naik, T.R., Singh, S.S., and Hossain, N.M., “Permeability of High Strength Concrete<br />

Containing Low Cement Factor”, Journal of Energy Engineering, April 1996.<br />

29. Tews, J.H., “TIF Districts and HVFA Concrete — A Good Partnership”, Presented at<br />

the American Concrete Pavement Association's Annual Meeting, Marco Island, FL,<br />

November 28 – December 2, 1995.<br />

30. Naik, T.R., Ramme, B.W., and Tews, J.H., “Use of High Volumes of Class C and<br />

Class F Fly Ash in Concrete”, Cement, Concrete & Aggregates, June 1994.<br />

31. Naik T.R., Ramme B.W., Kraus R.N., and Siddique R., “Long-Term Performance of<br />

High-Volume Fly Ash Concrete Pavements”, ACI Materials Journal, V. 100, NO 2,<br />

March-April , 2003, pp 150-155.<br />

32. Naik, T.R. and Ramme, B.W., “Roller Compacted No-Fines Concrete Containing Fly<br />

Ash for Road Base Course”."<br />

<strong>We</strong> <strong>Energies</strong> 256<br />

<strong>Coal</strong> <strong>Combustion</strong> <strong>Products</strong><br />

Utilization Handbook

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