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Introductory technical guidance for professional engineers interested in precipitation treatment of contaminated water. 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 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 professional engineers and construction managers interested in domestic water and wastewater treatment. Here is what is discussed: 1. INTRODUCTION, 2. DOMESTIC WATER TREATMENT OVERVIEW, 3. COAGULATION AND FLOCCULATION, 4. HYDROXIDE PRECIPITATION, 5. SULFIDE AND CARBONATE PRECIPITATION, 6. PRELIMINARY WASTEWATER TREATMENT, 7. PRIMARY WASTEWATER TREATMENT, 8. SECONDARY WASTEWATER TREATMENT, 9. ACTIVATED SLUDGE WASTEWATER TREATMENT, 10. ADVANCED WASTEWATER TREATMENT, 11. DESIGN OF WASTEWATER PONDS, 12. WASTEWATER LAND TREATMENT, 13. SLUDGE DISPOSAL.
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 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.
This book provides the reader with the comprehensive view necessary to understand and critically evaluate the design, implementation, and monitoring of phytoremediation at sites characterized by contaminated groundwater. Part I presents the historical foundation of the interaction between plants and groundwater, introduces fundamental groundwater concepts for plant physiologists, and introduces basic plant physiology for hydrogeologists. Part II presents information on how to assess, design, implement, and monitor phytoremediation projects for hydrologic control. Part III presents how plants take up and detoxify a wide range of organic xenobiotics in contaminated groundwater systems, and provides various approaches on how this can be assessed and monitored. Throughout, concepts are emphasized with numerous case studies, illustrations and pertinent literature citations.
Introductory technical guidance for Professional Engineers interested in groundwater occurrence and control. Here is what is discussed: 1. INTRODUCTION, 2. HISTORY OF USE, 3. ORIGIN, 4. OCCURRENCE OF GROUND WATER, 5. GROUNDWATER QUALITY, 6. GROUND AND SURFACE-WATER RELATIONSHIPS, 7. GROUND-WATER RIGHTS, 8. APPLICATION OF GROUNDWATER ENGINEERING.