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Current Energy Position of New York State Wastewater Treatment Facilities.

By: Contributor(s): Material type: TextTextSeries: WERF Research Report SeriesPublisher: London : IWA Publishing, 2016Copyright date: ©2016Edition: 1st edDescription: 1 online resource (88 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781780407784
Subject(s): Genre/Form: Additional physical formats: Print version:: Current Energy Position of New York State Wastewater Treatment FacilitiesDDC classification:
  • 621.30999999999995
LOC classification:
  • TK1001A537 2016
Online resources:
Contents:
Cover -- Copyright -- Acknowledgments -- Abstract and Benefits -- Table of Contents -- List of Tables -- List of Figures -- List of Acronyms and Abbreviations -- Executive Summary -- ES.1 Purpose -- ES.2 Methods -- ES.3 Findings -- Chapter 1.0: Introduction -- 1.1 Research Context -- 1.1.2 Description of the Wastewater Sector in New York -- 1.1.3 2008 NYSERDA Statewide Assessment of Energy Use -- 1.1.4 Other National and Regional Benchmarking Data -- 1.2 Project Overview -- 1.2.1 Research Objectives -- 1.2.2 Research Scope and Approach -- 1.2.3 Barriers to Energy Efficiency -- 1.2.4 Report Organization -- Chapter 2.0: Data Collection Methodology -- 2.1 Electrical Data Sources and Methodology -- 2.2 SPDES Data -- 2.3 Online Survey -- 2.4 Public Funding Records -- Chapter 3.0: Baseline Electrical Use -- 3.1 Normalized Power -- 3.2 Statewide Composite Energy Trends -- 3.3 Interpretation of Findings -- 3.3.1 Flow Normalization -- 3.3.2 Load Normalization -- 3.3.3 Variability in Energy Intensity -- 3.3.4 Performance Relative to National Benchmarks -- Chapter 4.0: Plant Characteristics -- 4.1 Pumping -- 4.2 Nutrient Removal -- 4.3 Aeration Efficiency and Control -- 4.4 UV Disinfection -- 4.5 Digestion: Energy Recovery and Generation -- Chapter 5.0: Energy Efficiency Initiatives: Experience and Impacts -- 5.1 Capital Projects -- 5.1.1 Building Improvements -- 5.1.2 Process Efficiency -- 5.1.3 Energy Generation -- 5.1.4 Future Plans for Energy Improvements -- 5.2 Operational Optimization to Reduce Energy -- 5.3 Maintenance to Maintain Efficiency -- 5.4 Outside-the-Fenceline Efficiency Approaches -- 5.5 Summary -- Chapter 6.0: Impact of Organizational Energy Approaches -- 6.1 WEF Energy Roadmap -- 6.2 Assessing Energy Program Level of Development -- 6.3 Observed Outcomes -- Chapter 7.0: Highlighted Plants -- 7.1 Amherst Water Pollution Control Facility.
7.2 Hornell Water Pollution Control Plant -- 7.3 26th Ward Wastewater Treatment Plant -- 7.4 Jamestown Wastewater Treatment Facility -- Chapter 8.0: Conclusions -- 8.1 Normalized Power Consumption Trends -- 8.2 Statewide Power -- 8.3 Factors Affecting Energy Use Trends -- Appendix A: Online Survey -- References.
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Cover -- Copyright -- Acknowledgments -- Abstract and Benefits -- Table of Contents -- List of Tables -- List of Figures -- List of Acronyms and Abbreviations -- Executive Summary -- ES.1 Purpose -- ES.2 Methods -- ES.3 Findings -- Chapter 1.0: Introduction -- 1.1 Research Context -- 1.1.2 Description of the Wastewater Sector in New York -- 1.1.3 2008 NYSERDA Statewide Assessment of Energy Use -- 1.1.4 Other National and Regional Benchmarking Data -- 1.2 Project Overview -- 1.2.1 Research Objectives -- 1.2.2 Research Scope and Approach -- 1.2.3 Barriers to Energy Efficiency -- 1.2.4 Report Organization -- Chapter 2.0: Data Collection Methodology -- 2.1 Electrical Data Sources and Methodology -- 2.2 SPDES Data -- 2.3 Online Survey -- 2.4 Public Funding Records -- Chapter 3.0: Baseline Electrical Use -- 3.1 Normalized Power -- 3.2 Statewide Composite Energy Trends -- 3.3 Interpretation of Findings -- 3.3.1 Flow Normalization -- 3.3.2 Load Normalization -- 3.3.3 Variability in Energy Intensity -- 3.3.4 Performance Relative to National Benchmarks -- Chapter 4.0: Plant Characteristics -- 4.1 Pumping -- 4.2 Nutrient Removal -- 4.3 Aeration Efficiency and Control -- 4.4 UV Disinfection -- 4.5 Digestion: Energy Recovery and Generation -- Chapter 5.0: Energy Efficiency Initiatives: Experience and Impacts -- 5.1 Capital Projects -- 5.1.1 Building Improvements -- 5.1.2 Process Efficiency -- 5.1.3 Energy Generation -- 5.1.4 Future Plans for Energy Improvements -- 5.2 Operational Optimization to Reduce Energy -- 5.3 Maintenance to Maintain Efficiency -- 5.4 Outside-the-Fenceline Efficiency Approaches -- 5.5 Summary -- Chapter 6.0: Impact of Organizational Energy Approaches -- 6.1 WEF Energy Roadmap -- 6.2 Assessing Energy Program Level of Development -- 6.3 Observed Outcomes -- Chapter 7.0: Highlighted Plants -- 7.1 Amherst Water Pollution Control Facility.

7.2 Hornell Water Pollution Control Plant -- 7.3 26th Ward Wastewater Treatment Plant -- 7.4 Jamestown Wastewater Treatment Facility -- Chapter 8.0: Conclusions -- 8.1 Normalized Power Consumption Trends -- 8.2 Statewide Power -- 8.3 Factors Affecting Energy Use Trends -- Appendix A: Online Survey -- References.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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