Environmental Engineering Reference
In-Depth Information
76.
Grim, R.E. Applied Clay Mineralogy , McGraw-Hill, New York (1962).
77.
American Colloid Co. Technical Bulletin Data No. 201, American Colloid Co.,
Chicago (1945).
78.
de Laguna, W., T. Tamura, H.O. Weeren, E.G. Struxness, and W.D. McClain. Engi-
neering Development of Hydraulic Fracturing as a Method for Permanent Disposal
of Radioactive Wastes . ORNL-4259. Oak Ridge National Laboratory, Oak Ridge, TN
(1968).
79.
K.-S. Jun, B.-W. Hwang, H.-S. Shin, and Y.-S. Won. Chemical characteristics and
leachability of organically contaminated heavy metal sludge solidified by silica fume
and cement. Water Science & Technology Vol 44 No 2-3 pp. 399-407 © IWA
Publishing 2001, http://www.iwaponline.com/wst/04402/wst044020399.htm.
80.
Silica Fume Association, http://www.silicafume.org/general-silicafume.html.
81.
Conner, J.R. and S.L. Hoeffner. The History of Stabilization/Solidification Technology.
Critical Reviews in Environmental Science and Technology . 28(4):325-396 (1998).
82.
Davis, E.L., J.S. Falcone, S.D. Boyce, and P.H. Krumrine. Mechanisms for the
Fixation of Heavy Metals in Solidified Wastes Using Soluble Silicates. The PQ Corp.:
Lafayette Hill, PA (1987).
83.
Collins, R.J. DOT/DOE Evaluation of Kiln Dust/Flyash Technology. Presented at the
6th Annual International Conference on Economic and Environmental Utility of Kiln
Dust and Kiln Dust/Flyash Technology. Feb. 19-21 (1985).
84.
Haynes, B.W. and G.W. Kramer. Characterization of U.S. Cement Kiln Dust. Bureau
of Mines Information Circular 8885 , U.S. Department of the Interior, Pittsburgh
(1982).
85.
Morgan, D.S., J.I. Novoa, and A.H. Haliff. Oil Sludge Solidification Using Cement
Kiln Dust. Journal of Environmental Engineering , vol. 110, no. 5, pp. 935-948
(1984).
Search WWH ::




Custom Search