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Introductory technical guidance for civil engineers, environmental engineers and construction managers interested in treatment of contaminated soils and sludges. Here is what is discussed: 1. BIOLOGICAL TREATMENT, 2. ENCAPSULATION, 3. LOW TEMPERATURE THERMAL DESORPTION, 4. SOLIDIFICATION/STABILIZATION, 5. THERMAL DESTRUCTION, 6. VOLUME REDUCTION, 7. WET OXIDATION, 8. EVAPORATION.
Introductory technical guidance for civil engineers, environmental engineers and other professional engineers nd construction managers interested in handling and treatment of hazardous contaminated soil and treatment sludge. Here is what is discussed: 1. BIOLOGICAL TREATMENT, 2. ENCAPSULATION, 3. LOW TEMPERATURE THERMAL DESORPTION, 4. SOLIDIFICATION/STABILIZATION, 5. THERMAL DESTRUCTION. 6. VOLUME REDUCTION, 7. WET OXIDATION, 8. EVAPORATION.
Introductory technical guidance for professional engineers interested in hazardous waste collection and removal. Here is what is discussed: 1. DRUM HANDLING, 2. STORAGE, 3. TANK CLEANING AND DEMOLITION, 4. LAGOON MANAGEMENT, 5. EXCAVATION OF LANDFILLS AND CONTAMINATED SOILS., 6. REMOVAL OF CONTAMINATED SEDIMENTS, 7. DECONTAMINATION OF STRUCTURES, 8. DECONTAMINATION OF MISCELLANEOUS MEDIA.
Introductory technical guidance for Professional Engineers interested in remediation of contaminated soils. Here is what is discussed: 1. INTRODUCTION, 2. PRECIPITATION—GENERAL DISCUSSION AND THEORY, 3.HYDROXIDE PRECIPITATION, 4. SULFIDE PRECIPITATION, 5. CARBONATE PRECIPITATION, 6. OTHER PRECIPITATION TECHNIQUES.
Introductory technical guidance for civil engineers, environmental engineers and other professional engineers and construction managers interested in industrial water treatment. Here is what is discussed: 1. CHEMICAL CLEANING OF INDUSTRIAL WATER SYSTEMS, 2. COOLING TOWER WATER TREATMENT, 3. MAKEUP WATER FOR INDUSTRIAL WATER SYSTEMS, 4. OILY WASTEWATER COLLECTION AND TREATMENT, 5. PRETREATMENT CONSIDERATIONS FOR WATER DESALINATION, 6. TREATMENT OF CLOSED INDUSTRIAL WATER SYSTEMS, 7. WATER SAMPLING AND TESTING, 8. TREATMENT OF STEAM BOILER WATER.
Introductory technical guidance for civil engineers, environmental engineers, mechanical engineers and other professional engineers and construction managers interested in oily wastewater collection and treatment. Here is what is discussed: 1. OBJECTIVES, 2. SOURCES, 3. DISCHARGE CRITERIA, 4. POINT SOURCE CONTROL, 5. DISPOSAL OF OIL, 6. EMERGENCY CONTAINMENT AND CLEANUP, 7. OILY WASTEWATER CHARACTERISTICS, 8. COLLECTION AND TRANSFER, 9. OILY WASTEWATER TREATMENT, 10. DESIGN CRITERIA FOR OIL-WATER SEPARATORS AND APPURTENANCES.
Introductory technical guidance for professional engineers and construction managers interested in industrial water treatment. Here is what is discussed: 1. CHEMICAL CLEANING OF INDUSTRIAL WATER SYSTEMS, 2. COOLING TOWER WATER TREATMENT, 3. MAKEUP WATER FOR INDUSTRIAL WATER SYSTEMS, 4. OILY WASTEWATER COLLECTION AND TREATMENT, 5. PRETREATMENT CONSIDERATIONS FOR WATER DESALINATION, 6. TREATMENT OF CLOSED INDUSTRIAL WATER SYSTEMS, 7. WATER SAMPLING AND TESTING, 8. TREATMENT OF STEAM BOILER WATER.
Introductory technical guidance for civil and environmental engineers interested in treatment of hazardous soils and sludges. Here is what is discussed: 1. BIOLOGICAL TREATMENT 2. ENCAPSULATION 3. LOW TEMPERATURE THERMAL DESORPTION 4. SOLIDIFICATION/STABILIZATION 5. THERMAL DESTRUCTION 6. VOLUME REDUCTION 7. WET OXIDATION 8. EVAPORATION.
Hazardous Wastes An illuminating, problem-solving approach to source area analysis, environmental chemodynamics, risk assessment, and remediation In the newly revised second edition of Hazardous Wastes: Assessment and Remediation, a team of distinguished researchers delivers a foundational and comprehensive treatment of all aspects of hazardous waste problems. The book offers two sections—one on assessment and the following on remediation—while exploring topics crucial to the study of environmental science and engineering at the senior or master’s level. This latest edition includes a new emphasis on the chemistry of emerging contaminants, including perfluorinated compounds, 1,4-dioxane, methyl tert-butyl ether, and personal care products. It also offers updated data on contaminant Threshold Limit Value, Reference Dose, Slope Factor, Reference Concentration, and Inhalation Unit Risk. New remediation chapters also provide many design problems, incorporating economic analyses and the selection of various design alternatives. Approximately 200 new end-of-chapter problems—with solutions—have been added as well. Readers will also find: A thorough introduction to hazardous wastes, including discussion of pre-regulatory disposal and hazardous waste legislation Comprehensive discussions of common hazardous wastes, including their nomenclature, industrial uses, and disposal histories In-depth explorations of partitioning, sorption, and exchange at surfaces, as well as volatilization Extensive descriptions of the concepts of hazardous waste toxicology and quantitative toxicology Perfect for senior- and masters-level college courses in hazardous wastes in Environmental Science, Environmental Engineering, Civil Engineering, or Chemical Engineering programs, Hazardous Wastes: Assessment and Remediation will also earn a place in the libraries of professional environmental scientists and engineers.