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Introductory technical guidance for civil engineers, environmental engineers and construction managers interested in waste stream treatment. Here is what is discussed: 1. COAGULATION AND FLOCCULATION 2. PRECIPITATION
Introductory technical guidance for civil and environmental engineers and construction managers and treatment plant operators interested in treatment of hazardous waste using coagulation techniques. Here is what is discussed: 1. COAGULATION AND FLOCCULATION 2. THEORY AND DISCUSSION 3. COAGULANTS, POLYELECTROLYTES, AND COAGULANT AIDS 4. POLYELECTROLYTES VS. INORGANIC COAGULANTS 5. COAGULANT AIDS 6. MIXING—GENERAL DISCUSSION AND THEORY 7. TREATABILITY TESTING 8. PRE-TREATMENT REQUIREMENTS.
Coagulation and Flocculation in Water and Wastewater Treatment provides a comprehensive account of coagulation and flocculation techniques and technologies in a single volume covering theoretical principles to practical applications. Thoroughly revised and updated since the 1st Edition it has been progressively modified and increased in scope to cater for the requirements of practitioners involved with water and wastewater treatment. A thorough gamut of treatment scenarios is attempted, including turbidity, color and organics removal, including the technical aspects of enhanced coagulation. The effects of temperature and ionic content are described as well as the removal of specific substances such as arsenic and phosphorus. Chemical phosphorus removal is dealt with in detail, Rapid mixing for efficient coagulant utilization, and flocculation are dealt with in specific chapters. Water treatment plant waste sludge disposal is dealt with in considerable detail, in an Appendix devoted to this subject. Invaluble for water scientists, engineers and students of this field, Coagulation and Flocculation in Water and Wastewater Treatment is a convenient reference handbook in the form of numerous examples and appended information.
The purpose of this report is to provide a review of chemical precipitation processes for the treatment of low and intermediate level aqueous waste. It supersedes Technical Reports Series No. 89, Chemical Treatment of Radioactive Wastes, published in 1968. It provides data on the performance of existing plants and on improved processes that are in an advanced state of development.
Introductory technical guidance for civil engineers, environmental engineers and construction managers interested in treatment of hazardous liquid waste streams. Here is what is discussed: 1. APPLICABILITY, 2. TECHNIQUES, 3. DEFINITIONS, 4. AIR STRIPPING, 5. BIOLOGICAL TREATMENT, 6. CARBON ADSORPTION, 7. CHEMICAL OXIDATION, 8. RESIN ADSORPTION, 9. CHEMICAL REDUCTION, 10. PRECIPITATION, 11. FLOCCULATION AND SEDIMENTATION, 12. NEUTRALIZATION, 13. OIL-WATER SEPARATION, 14. DISSOLVED AIR FLOTATION, 15. REVERSE OSMOSIS, 16. SOLIDIFICATION/STABILIZATION, 17. ULTRAFILTRATION.
Safety and environmental impact is of uppermost concern when dealing with the movement and storage of nuclear waste. The 20 chapters in 'An Introduction to Nuclear Waste Immobilisation' cover all important aspects of immobilisation, from nuclear decay, to regulations, to new technologies and methods. Significant focus is given to the analysis of the various matrices used in transport: cement, bitumen and glass, with the greatest attention being given to glass. The last chapter concentrates on the performance assessment of each matrix, and on new developments of ceramics and glass composite materials, thermochemical methods and in-situ metal matrix immobilisation. The book thoroughly covers all issues surrounding nuclear waste: from where to locate nuclear waste in the environment, through nuclear waste generation and sources, treatment schemes and technologies, immobilisation technologies and waste forms, disposal and long term behaviour. Particular attention is paid to internationally approved and worldwide-applied approaches and technologies.* Each chapter focuses on a different matrix used in nuclear waste immobilisation: Cement, bitumen, glass and new materials.* Keeps the most important issues surrounding nuclear waste – such as treatment schemes and technologies, and disposal - at the forefront.
Introductory technical guidance for civil, environmental and mechanical engineers interested in industrial wastewater collection and treatment. Here is what is discussed: 1. OBJECTIVES 2. INDUSTRIAL POLLUTANTS 3. SOURCE CONTROL AND WASTE REDUCTION 4. WASTEWATER FLOWS AND CHARACTERISTICS 5. WASTEWATER COLLECTION 6. WASTEWATER TREATMENT 7. GUIDELINES FROM ACTUAL EXPERIENCE.