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Energy Efficiency Strategies for Municipal Wastewater Treatment Facilities

Energy Efficiency Strategies for Municipal Wastewater Treatment Facilities
Author:
Publisher:
Total Pages: 0
Release: 2012
Genre:
ISBN:

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Water and wastewater systems are significant energy consumers with an estimated 3%-4% of total U.S. electricity consumption used for the movement and treatment of water and wastewater. Water-energy issues are of growing importance in the context of water shortages, higher energy and material costs, and a changing climate. In this economic environment, it is in the best interest for utilities tofind efficiencies, both in water and energy use. Performing energy audits at water and wastewater treatment facilities is one way community energy managers can identify opportunities to save money, energy, and water. In this paper the importance of energy use in wastewater facilities is illustrated by a case study of a process energy audit performed for Crested Butte, Colorado's wastewater treatment plant. The energy audit identified opportunities for significant energy savings by looking at power intensive unit processes such as influent pumping, aeration, ultraviolet disinfection, and solids handling. This case study presents best practices that can be readily adopted by facility managers in their pursuit of energy and financial savings in water and wastewater treatment. This paper is intended to improve community energy managers' understanding of the role that the water and wastewater sector plays in a community's total energy consumption. The energy efficiency strategies described provide information on energy savings opportunities, which can be used as a basis for discussing energy management goals with water and wastewater treatment facility managers.


Energy Conservation in Water and Wastewater Facilities - MOP 32

Energy Conservation in Water and Wastewater Facilities - MOP 32
Author: Water Environment Federation
Publisher: McGraw-Hill Education
Total Pages: 0
Release: 2009-10-30
Genre: Technology & Engineering
ISBN: 9780071667944

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Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product. The Definitive Guide to Energy Conservation in Water and Wastewater Treatment Plants Covering both drinking water treatment as well as wastewater, this authoritative guide from the Water Environment Federation presents the latest strategies for improving energy efficiency in plant operations. Each chapter discusses principles and concepts of energy requirements, potential sources of inefficiency, and recommended energy conservation measures for specific equipment and processes. Energy Conservation in Water and Wastewater Facilities covers: Energy efficiency Utility billing procedures and incentives Electric motors and transformers Pumps Variable controls Aeration systems Blowers Solids processes Energy management Electricity basics Estimates of electricity used in treatment facilities


Mass Flow and Energy Efficiency of Municipal Wastewater Treatment Plants

Mass Flow and Energy Efficiency of Municipal Wastewater Treatment Plants
Author: Cao Ye Shi
Publisher: IWA Publishing
Total Pages: 133
Release: 2011-09-14
Genre: Science
ISBN: 1843393824

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Special Offer: Cao Ye Shi Author Set - Buy all three books together and save a total £76! Mass Flow and Energy Efficiency of Municipal Wastewater Treatment Plants presents the results of a series of studies that examined the mass flow and balance, and energy efficiency, of municipal wastewater treatment plants; it offers a vision of the future for municipal wastewater treatment plants. These studies were undertaken as part of the R & D program of the Public Utilities Board (PUB), Singapore. The book covers the latest practical and academic developments and provides: a detailed picture of the mass flow and transfer of Chemical Oxygen Demand (COD), solids, nitrogen and phosphorus and energy efficiency in a large municipal wastewater treatment plants in Singapore. The results are compared with the Strass wastewater treatment plant, Austria, which reaches energy self-sufficiency, and the approaches for improvement are proposed. a description of the biological conversions and mass flow and energy recovery in an up-flow anaerobic sludge blanket reactor - activated sludge process (UASB-ASP) - and compares this to the conventional activated sludge process. a comprehensive and critical review of the current state of the art of energy efficiency of municipal wastewater treatment plants including benchmarks, best available technologies and practices in energy saving and recovery, institution policies, and road maps to high energy recovery and high efficiency plants. a vision of future wastewater treatment plants including the major challenges of the paradigm shift from waste removal to resource recovery, technologies and processes to be studied, integrated sanitation system and management and policies. Mass Flow and Energy Efficiency of Municipal Wastewater Treatment Plants is a valuable reference on energy and sustainable management of municipal wastewater treatment plants, and will be especially useful for process and design researchers in wastewater research institutions, engineers, consultants and managers in water companies and water utilities, as well as students and academic staff in civil/sanitation/environment departments in universities.


A-B processes: Towards Energy Self-sufficient Municipal Wastewater Treatment

A-B processes: Towards Energy Self-sufficient Municipal Wastewater Treatment
Author: Yu Liu
Publisher: IWA Publishing
Total Pages: 184
Release: 2019-11-15
Genre: Science
ISBN: 1789060079

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The principle of the conventional activated sludge (CAS) for municipal wastewater treatment is primarily based on biological oxidation by which organic matters are converted to biomass and carbon dioxide. After more than 100 years’ successful application, the CAS process is receiving increasing critiques on its high energy consumption and excessive sludge generation. Currently, almost all municipal wastewater treatment plants with the CAS as a core process are being operated in an energy-negative fashion. To tackle such challenging situations, there is a need to re-examine the present wastewater treatment philosophy by developing and adopting novel process configurations and emerging technologies. The solutions going forward should rely on the ways to improve direct energy recovery from wastewater, while minimizing in-plant energy consumption. This book begins with a critical overview of the energy situation and challenges in current municipal wastewater treatment plants, showing the necessity of the paradigm shift from removal to recovery in terms of energy and resource. As such, the concept of A-B process is discussed in detail in the book. It appears that various A-B process configurations are able to provide possible engineering solutions in which A-stage is primarily designed for COD capture with the aim for direct anaerobic treatment without producing excessive biosludge, while B-stage is designated for nitrogen removal. Making the wastewater treatment energy self-sustainable is obviously of global significance and eventually may become a game changer for the global market of the municipal wastewater reclamation technology. The principal audiences include practitioners, professionals, university researchers, undergraduate and postgraduate students who are interested and specialized in municipal wastewater treatment and process design, environmental engineering, and environmental biotechnology.


Sewage Treatment Plants

Sewage Treatment Plants
Author: Katerina Stamatelatou
Publisher: IWA Publishing
Total Pages: 376
Release: 2015-05-15
Genre: Science
ISBN: 1780405014

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Sewage Treatment Plants: Economic Evaluation of Innovative Technologies for Energy Efficiency aims to show how cost saving can be achieved in sewage treatment plants through implementation of novel, energy efficient technologies or modification of the conventional, energy demanding treatment facilities towards the concept of energy streamlining. The book brings together knowledge from Engineering, Economics, Utility Management and Practice and helps to provide a better understanding of the real economic value with methodologies and practices about innovative energy technologies and policies in sewage treatment plants.


Clean Energy and Resource Recovery

Clean Energy and Resource Recovery
Author: Vinay Kumar Tyagi
Publisher: Elsevier
Total Pages: 484
Release: 2021-11-10
Genre: Science
ISBN: 0323901794

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Clean Energy and Resource Recovery: Wastewater Treatment Plants as Bio-refineries, Volume 2, summarizes the fundamentals of various treatment modes applied to the recovery of energy and value-added products from wastewater treatment plants. The book addresses the production of biofuel, heat, and electricity, chemicals, feed, and other products from municipal wastewater, industrial wastewater, and sludge. It intends to provide the readers an account of up-to-date information on the recovery of biofuels and other value-added products using conventional and advanced technological developments. The book starts with identifying the key problems of the sectors and then provides solutions to them with step-by-step guidance on the implementation of processes and procedures. Titles compiled in this book further explore related issues like the safe disposal of leftovers, from a local to global scale. Finally, the book sheds light on how wastewater treatment facilities reduce stress on energy systems, decrease air and water pollution, build resiliency, and drive local economic activity.As a compliment to Volume 1: Biomass Waste Based Biorefineries, Clean Energy and Resource Recovery, Volume 2: Wastewater Treatment Plants as Bio-refineries is a comprehensive reference on all aspects of energy and resource recovery from wastewater. The book is going to be a handy reference tool for energy researchers, environmental scientists, and civil, chemical, and municipal engineers interested in waste-to-energy. Offers a comprehensive overview of the fundamental treatments and methods used in the recovery of energy and value-added products from wastewater Identifies solutions to key problems related to wastewater to energy/resource recovery through conventional and advanced technologies and explore the alternatives Provides step-by-step guidance on procedures and calculations from practical field data Includes successful case studies from both developing and developed countries


Energy Efficiency and Recovery Opportunities Analysis for Municipal Wastewater Treatment Plant Operations

Energy Efficiency and Recovery Opportunities Analysis for Municipal Wastewater Treatment Plant Operations
Author: Sarah Guzman
Publisher:
Total Pages:
Release: 2015
Genre:
ISBN:

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Central Weber Sewer Improvement District (CWSID) was built in 1957, offering its sewer treatment services to the residents of Weber and Davis Counties in Northern Utah. The plant serves a population of approximately 213,000 people (MWH Global 2012). The State of Utah Division of Water Quality permits the CWSID. Originally, Central Weber Sewer Improvement District had a rated wastewater treatment capacity of 45 million gallons per day (MGD) (MWH Global 2014). This wastewater treatment was built in 1959. Due to the population growth of the Weber and Davis counties, Central Weber Sewer Improvement District needed to add additional wastewater treatment capacity into the existing system.


Energy Efficiency in Water and Wastewater Facilities a Guide to Developing and Implementing Greenhouse Gas Reduction Programs

Energy Efficiency in Water and Wastewater Facilities a Guide to Developing and Implementing Greenhouse Gas Reduction Programs
Author: U S Environmental Protection Agency
Publisher: CreateSpace
Total Pages: 58
Release: 2014-08-02
Genre:
ISBN: 9781500696962

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Saving energy through energy efficiency improve- ments can cost less than generating, transmitting, and distributing energy from power plants, and provides multiple economic and environmental benefits. Energy savings can reduce operating costs for local govern- ments, freeing up resources for additional investments in energy efficiency and other priorities. Energy efficiency can also help reduce air pollution and GHG emissions, improve energy security and independence, and create jobs. Local governments can promote energy efficiency in their jurisdictions by improving the efficiency of municipal facilities and operations and encouraging energy efficiency improvements in their residential, commercial, and industrial sectors. The energy efficiency guides in this series describe the process of developing and implementing strategies, using real-world examples, for improving energy efficiency in local government operations (see the guides on local government operations, energy efficiency in K-12 schools, energy-efficient product procure- ment, and combined heat and power) as well as in the community.