Waste Forms Technology and Performance

Waste Forms Technology and Performance

Author: National Research Council

Publisher: National Academies Press

Published: 2011-09-05

Total Pages: 308

ISBN-13: 0309187338

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The Department of Energy's Office of Environmental Management (DOE-EM) is responsible for cleaning up radioactive waste and environmental contamination resulting from five decades of nuclear weapons production and testing. A major focus of this program involves the retrieval, processing, and immobilization of waste into stable, solid waste forms for disposal. Waste Forms Technology and Performance, a report requested by DOE-EM, examines requirements for waste form technology and performance in the cleanup program. The report provides information to DOE-EM to support improvements in methods for processing waste and selecting and fabricating waste forms. Waste Forms Technology and Performance places particular emphasis on processing technologies for high-level radioactive waste, DOE's most expensive and arguably most difficult cleanup challenge. The report's key messages are presented in ten findings and one recommendation.


Decision-Maker's Guide to Solid-Waste Management

Decision-Maker's Guide to Solid-Waste Management

Author: Philip R. O'Leary

Publisher: DIANE Publishing

Published: 1999-02

Total Pages: 372

ISBN-13: 0788176048

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This Guide has been developed particularly for solid waste management practitioners, such as local government officials, facility owners and operators, consultants, and regulatory agency specialists. Contains technical and economic information to help these practitioners meet the daily challenges of planning, managing, and operating municipal solid waste (MSW) programs and facilities. The Guide's primary goals are to encourage reduction of waste at the source and to foster implementation of integrated solid waste management systems that are cost-effective and protect human health and the environment. Illustrated.


Risk-Based Waste Classification in California

Risk-Based Waste Classification in California

Author: National Research Council

Publisher: National Academies Press

Published: 1999-08-14

Total Pages: 235

ISBN-13: 0309065445

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The Department of Toxic Substances Control (DTSC) of the State of California Environmental Protection Agency is in the process of complying with the Regulatory Structure Update. The Regulatory Structure Update is a comprehensive review and refocusing of California's system for identifying and regulating management of hazardous wastes. As part of this effort, the DTSC proposes to change its current waste classification system that categorizes wastes as hazardous or nonhazardous based on their toxicity. Under the proposed system there would be two risk-based thresholds rather than the single toxicity threshold currently used to distinguish between the wastes. Wastes that contain specific chemicals at concentrations that exceed the upper threshold will be designated as hazardous; those below the lower threshold will be nonhazardous; and those with chemical concentrations between the two thresholds will be "special" wastes and subject to variances for management and disposal. The proposed DTSC system combines toxicity information with short or long-term exposure information to determine the risks associated with the chemicals. Under section 57004 of the California Health and Safety Code, the scientific basis of the proposed waste classification system is subject to external scientific peer review by the National Academy of Sciences, the University of California, or other similar institution of higher learning or group of scientists. This report addresses that regulatory requirement.


Investigation of Test Methods for Solidified Waste Evaluation

Investigation of Test Methods for Solidified Waste Evaluation

Author: J. A. Stegemann

Publisher:

Published: 1991

Total Pages: 140

ISBN-13:

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A study was undertaken by Environment Canada, in conjunction with the US Environmental Protection Agency (EPA), Alberta Environment and 15 industrial participants involved in developing or marketing solidification technology, to develop and validate 16 laboratory test methods for evaluating the physical and chemical properties of solidified wastes. Environment Canada and the US EPA provided the 15 industrial participants with 5 untreated hazardous wastes, which were then treated with their proprietary processes and returned as solidified products to 4 laboratories in Canada and the US for testing. Seven physical tests, 5 leaching tests, and 4 micromorphological characterization methods were applied to the solidified products.


Cyanide in Water and Soil

Cyanide in Water and Soil

Author: David A. Dzombak

Publisher: CRC Press

Published: 2005-12-09

Total Pages: 616

ISBN-13: 1420032070

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The presence of cyanide is a significant issue in industrial and municipal wastewater treatment and management, in remediation of former manufactured gas plant sites and aluminum production waste disposal sites, in treatment and management of residuals from hydrometallurgical gold mining, and in other industrial operations in which cyanide-bearing