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RECORD NUMBER: 226 OF 1003

Main Title Developing a Kinetic Leaching Model for Solidified/Stabilized Hazardous Wastes.
Author Cheng, K. Y. ; Bishop., P. L. ;
CORP Author Cincinnati Univ., OH. Dept. of Civil and Environmental Engineering.;Environmental Protection Agency, Cincinnati, OH. Risk Reduction Engineering Lab.
Publisher 1994
Year Published 1994
Report Number EPA-68-03-3379; EPA/600/A-94/053;
Stock Number PB94-159308
Additional Subjects Hazardous materials ; Leaching ; Mathematical models ; Reprint ; Chemical reactions ; Penetration ; Permeability ; Binders ; Compressive strength ; Cements ; Waste treatment ; Solidification ; Stabilization ; Metals ; Solid waste disposal ;
Internet Access
Description Access URL
https://nepis.epa.gov/Exe/ZyPDF.cgi?Dockey=30002015.PDF
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Status
NTIS  PB94-159308 Some EPA libraries have a fiche copy filed under the call number shown. 07/26/2022
Collation 19p
Abstract Chemical stabilization/solidification is common practice in the disposal of radioactive waste. In recent years this method has been applied to treatment of hazardous materials. The potential impact on the environment of solid wastes disposed on land is most frequently assessed and predicted using bench scale laboratory leaching tests. In order to do this effectively, predictive mathematical models must be used. The paper shows the relationship of the hydrogen ion in the leachant, the distance of leaching front, and the alkalinity leached from the solid matrix. Using these results, kinetic leaching models are developed.
Supplementary Notes See also PB90-179656. Presented at Symposiums on Solidification/Stabilization: Mechanisms and Applications, Lemar, TX., February 15-16, 1990. Sponsored by Environmental Protection Agency, Cincinnati, OH. Risk Reduction Engineering Lab.
Title Annotations Reprint: Developing a Kinetic Leaching Model for Solidified/Stabilized Hazardous Wastes.
Category Codes 68C; 99F
NTIS Prices PC A03/MF A01
Primary Description 600/14
Document Type NT
Cataloging Source NTIS/MT
Control Number 413330211
Origin NTIS
Type CAT