Solids Process Design and Management

Solids Process Design and Management
Author: Water Environment Federation
Publisher: McGraw Hill Professional
Total Pages: 1147
Release: 2012-06-04
Genre: Technology & Engineering
ISBN: 0071780955

"Water Environment Federation, Alexandria, Virginia; Water Environment Reserach Foundation; U.S. Environmental Protection Agency."

Solids Process Design and Management

Solids Process Design and Management
Author: Water Environment Federation
Publisher: McGraw Hill Professional
Total Pages: 1146
Release: 2012-07-04
Genre: Technology & Engineering
ISBN: 0071780963

The Definitive Guide to Solids Treatment and Management This authoritative resource is essential for professionals involved in the design, approval, and operation of municipal solids treatment and disposal systems. Solids Process Design and Management contains the latest information on public outreach and involvement, waste minimization, anaerobic and aerobic digestion, odors, and treatment and utilization of green gases. Significant advancements in equipment, technologies, and processes as well as improved planning, design, and management practices are addressed in this comprehensive manual. Coverage includes: Conveyance of wastewater residuals Chemical conditioning Thickening Sludge minimization technologies Dewatering and composting Alkaline treatment Thermal drying and oxidation Disinfection and stabilization processes Pyrolysis and gasification Transport and storage Sidestreams from solids treatment processes Instrumentation and monitoring Landfill management systems And much more

Natural Wastewater Treatment Systems, Second Edition

Natural Wastewater Treatment Systems, Second Edition
Author: Ronald W. Crites
Publisher: CRC Press
Total Pages: 552
Release: 2014-03-14
Genre: Technology & Engineering
ISBN: 1466583266

Calling for ecologically and economically sound wastewater treatment systems, the authors of Natural Wastewater Treatment Systems explore the use of wetlands, sprinkler or deep irrigation, groundwater recharge, and other natural systems as sustainable methods for the treatment and management of wastewater. Based on work by prominent experts in natural waste treatment, this text provides a thorough explanation on how soil and plants can successfully sustain microbial populations in the treatment of wastewater. Determining that natural systems cost less to construct and operate, and require less energy than mechanical treatment alternatives, this book also explains how these processes produce lower amounts of residual solids, and use little or no chemicals. What’s New in the Second Edition: This revised edition includes current design and regulatory and operational developments in the natural wastewater treatment field. It provides detailed examples and analyses along with significant operational data in each chapter. It also considers how processes provide passive treatment with a minimum of mechanical elements, and describes new approaches to partially mixed ponds, including dual-powered aeration ponds. Introduces the planning procedures and treatment mechanisms responsible for treatment in ponds, wetlands, land application, and soil absorption systems Provides new case studies of constructed wetlands and water reuse systems Presents design criteria and methods of pond treatment and pond effluent upgrading Describes constructed wetlands design procedures, process applications, treatment performance data, and land treatment concepts and design equations Includes information on constituents of emerging concern (CEC) and their fate in natural systems The text discusses wastewater pond systems, free water surface constructed wetlands, subsurface and vertical flow constructed wetlands, land treatment, sludge management, and onsite wastewater systems. It describes residuals and biosolids management, including nitrogen removal pretreatment methods, and uses U.S. customary and metric units in all chapters. It presents case studies of new applications of natural systems and includes worked examples of design equations for ponds and land treatment. It also provides a biosolids regulatory update from a top EPA scientist, and algae reduction technologies for ponds and wetlands. Designed for practicing wastewater engineers and scientists involved in the planning, design, and operation of ponds, wetlands, land treatment, biosolids, and onsite soil-based treatment systems, the book integrates many natural treatment systems into one single source.

Product and Process Design

Product and Process Design
Author: Jan Harmsen
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 464
Release: 2018-05-22
Genre: Technology & Engineering
ISBN: 3110467747

Product and Process Design: Driving Innovation is a comprehensive textbook for students and industrial professionals. It treats the combined design of innovative products and their innovative manufacturing processes, providing specific methods for BSc, MSc, PDEng and PhD courses. Students, industrial innovators and managers are guided through all design steps in all innovation stages (discovery, concept, feasibility, development, detailed engineering, and implementation) to successfully obtain novel products and their novel processes. The authors’ decades of innovation experience in industry, as well as in teaching BSc, MSc, and post-academic product and process design courses, thereby including the latest design publications, culminate in this book.

Design of Water Resource Recovery Facilities, Manual of Practice No.8, Sixth Edition

Design of Water Resource Recovery Facilities, Manual of Practice No.8, Sixth Edition
Author: Water Environment Federation
Publisher: McGraw Hill Professional
Total Pages: 2257
Release: 2017-09-29
Genre: Technology & Engineering
ISBN: 1260031195

Complete Coverage of the State-of-the-Art in Water Resource Recovery Facility Design Featuring contributions from hundreds of wastewater engineering experts, this fully updated guide presents the latest in facility planning, configuration, and design. Design of Water Resource Recovery Facilities: WEF Manual of Practice No. 8 and ASCE Manuals and Reports on Engineering Practice No. 76, Sixth Edition, covers key technical advances in wastewater treatment, including •Advances with membrane bioreactors applications •Advancements within integrated fixed-film/activated sludge (IFAS) systems and moving-bed biological-reactors systems •Biotrickling filtration for odor control •Increased use of ballasted flocculation •Enhanced nutrient-control systems •Sidestream nutrient removal to reduce the loading on the main nutrient-removal process •Use and application of wireless instrumentation •Use and application of modeling wastewater treatment processes for the basis of design and evaluations of alternatives •Process design and disinfection practices to minimize generation of TTHMs and other organics monitored for potable water quality •Approaches to minimizing biosolids production and advances in biosolids handling, including effective thermal hydrolysis, and improvements in sludge thickening and dewatering technologies •Increasing goals toward energy neutrality and driving net zero •Trend toward resource recovery

Handbook of Solid Waste Management

Handbook of Solid Waste Management
Author: George Tchobanoglous
Publisher: McGraw Hill Professional
Total Pages: 834
Release: 2002-07-13
Genre: Technology & Engineering
ISBN: 0071500340

In a world where waste incinerators are not an option and landfills are at over capacity, cities are hard pressed to find a solution to the problem of what to do with their solid waste. Handbook of Solid Waste Management, 2/e offers a solution. This handbook offers an integrated approach to the planning, design, and management of economical and environmentally responsible solid waste disposal system. Let twenty industry and government experts provide you with the tools to design a solid waste management system capable of disposing of waste in a cost-efficient and environmentally responsible manner. Focusing on the six primary functions of an integrated system--source reduction, toxicity reduction, recycling and reuse, composting, waste- to-energy combustion, and landfilling--they explore each technology and examine its problems, costs, and legal and social ramifications.