Environmental Engineering Reference
In-Depth Information
9.
Shi, C., Day, R.L., Wu, X., and Tang, M., Uptake of Metal Ions by Autoclaved Cement
Pastes, Proceedings of Materials Research Society , Vol. 245, pp. 141-149, 1992.
10.
Shi, C., Shen, X., Wu, X., and Tang, M., Immobilization of Radioactive Wastes with
Portland and Alkali-Slag Cement Pastes, Il Cemento, Vol. 91, No. 2, pp. 97-108, 1994.
11.
Mattus, C.H. and Gilliam, T.M., A Literature Review of Mixed Waste Components:
Sensitivities and Effects Upon Solidification in Cement-Based Matrices , ORNL/TM-
12656, Oak Ridge National Laboratory, Oak Ridge, TN, 1994.
12.
Trussell, S. and Spence, R.D., A Review of Solidification/Stabilization Interferences,
Waste Management , Vol. 14, No. 6, pp. 507-519, 1994.
13.
USEPA, Test Methods for the Evaluation of Solid Wastes, Physical/Chemical Meth-
ods, Office of Water and Waste Management, Washington, DC, SW-846, 1986.
14.
USEPA, Code of Federal Regulations. Final Rule — Paint Filter Liquids Test, April
30, 1985.
15.
USEPA, Code of Federal Regulations. Liquids Release Test, October 29, 1991.
16.
Cartledge, F., Eaton, H., and Tittlebaum, M., Morphology and Microchemistry of
Solidified/Stabilized Hazardous Waste Systems, USEPA Cooperative Agreement CR-
812318-01-0, Risk Reduction Engineering Laboratory, Cincinnati, OH, 1990.
17.
Tittlebaum, M., Seals, R., Cartledge, F., and Engels, S., State of the Art Stabilization
of Hazardous Organic Liquid Wastes and Sludges, CRC Critical Reviews in Environ-
mental Control , 15 (2), pp. 179-211, 1985.
18.
Soundararajan, R., Barth, E., and Gibbons, J., Using an Organophilic Clay to Chem-
ically Stabilize Waste Containing Organic Compounds, Hazardous Materials Control
Journal, 2(1), 1990.
19.
American Academy of Environmental Engineers, Innovative Site Remediation Tech-
nology: Solidification/Stabilization, Volume 4, Annapolis, MD, 1994.
20.
Barth, E., Summary of Solidification/Stabilization SITE Demonstrations at Uncon-
trolled Hazardous Waste Sites, Stabilization and Solidification of Hazardous, Radio-
active, and Mixed Wastes, ASTM STP 1123, American Society for Testing and
Materials, Philadelphia, 1992.
21.
Bates, E., Akindele, F., and Sprinkle, D., American Creosote Site Case Study: Solid-
ification/Stabilization of Dioxins, PCP, and Creosote for $64 per Cubic Yard, Envi-
ronmental Progress , 21(2), 2002.
22.
Gibbons, J.J. and Soundararajan, R., The Nature of Chemical Bonding Between
Organic Wastes and Organophilic Binders, Part 2, American Laboratory , 21(7), pp.
70-79, 1989.
23.
Taylor, H.F.W., Cement Chemistry , Academic Press, Ltd., London, 1990, Chap. 8,
pp. 243-275.
24.
Powers, T.C., Physical properties of cement paste, in Proceedings of the Fourth
International Symposium on the Chemistry of Cement , Washington, D.C., 2, pp.
577-613, 1960.
25.
Powers, T.C., Structure and Physical Properties of Hardened Portland Cement Pastes,
Journal of the American Ceramic Society , Vol. 41, No. 1, pp. 1-6, 1958.
26.
Mindess, S. and Young, J.F., Concrete , Prentice-Hall, 1981.
27.
Conner, J.R. and Hoeffner, S.L., A Critical Review of Stabilization/Solidification
Technology, Critical Reviews in Environmental Science and Technology ,
28(4):397-462, 1998.
28.
Perket, C.L., Krueger, R.J., and Whitehurst, D.A., The Use of Extraction Tests for
Deciding Waste Disposal Options, Trends in Analytical Chemistry, Vol. 1, No. 14,
1982.
Search WWH ::




Custom Search