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|a 929152582
|a 948962750
|a 1042318746
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|a 1050602815
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|a 9781780406794
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|a 9781780406794
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|a (OCoLC)960788610
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|z (OCoLC)948962750
|z (OCoLC)1042318746
|z (OCoLC)1050358301
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|a TP156.D5 ǂb R677 2014eb
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|a 660.28425
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|a UAMI
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|a Rosso, Diego.
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|a Framework for Energy Neutral Treatment for the 21st Century through Energy Efficient Aeration /
|c Diego Rosso, Andrew Shaw.
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|b IWA Publishing,
|c 2015.
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|a 1 online resource (80 pages).
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
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|a WERF Research Report Series
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|b Clean and process water tests for aeration efficiency measurements were performed on a suite of diffusers in different processes for approximately one year. The research plan was set up to test the same diffusers in different processes and different diffusers in the same process. The most evident finding regarding the scaling factor for oxygen transfer efficiency in process water (±-factor) is that all diffusers seems to experience a decrease with time until reaching what appears a stabilization value. As time progressed, the diffuser performance decreased for all diffusers also in terms of diffuser head loss (or dynamic wet pressure DWP). At the same time, it was observed that once the diffuser have been colonized a relatively stable base/plateau of microbial species remains in the diffuser surface. Regarding the DNA concentration found on the membranes, the silicone membrane tube was the less fouled than the other membrane tubes. Although tested in different processes, the relative microbial abundance on the membrane diffusers was of the same magnitude. One should expect much higher fouling for the high-rate process, however this may be more pronounced as the fouling biofilm fully ripens, possibly after the first year of operation.
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|a Includes bibliographical references.
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|a ""Cover""; ""Copyright""; ""Acknowledgments""; ""Abstract and Benefits""; ""Table of Contents""; ""List of Tables""; ""List of Figures""; ""List of Acronyms and Definitions""; ""Executive Summary""; ""Chapter 1.0: Introduction""; ""Chapter 2.0: Materials and Methods""; ""2.1 Off-Gas Methodology""; ""2.1.1 Irvine Ranch Water District (IWRD)""; ""2.1.2 DC Water""; ""2.1.3 Sydney Water""; ""2.1.4 Hampton Roads Sanitation District (HRSD)""; ""2.1.5 Strass""; ""2.2 Diffuser Material Properties""; ""2.3 Molecular Biology Tools""; ""Chapter 3.0: Project Results: Diffusers Performance""
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|a ""3.1 Irvine Ranch Water District (IRWD)""""3.1.1 Aeration Efficiency""; ""3.1.2 Diffuser Material Properties""; ""3.2 DC Water""; ""3.3 Sydney Water (Cronulla WWTP)""; ""3.4 Deamonification Process at HRSD York River""; ""3.5 Strass""; ""Chapter 4.0: Project Results: Biofilm Microbiology""; ""4.1 IRWD Fouling Results""; ""4.2 DC Water Fouling Results""; ""4.2.1 Fouling Assessment of Flexing and No-Flexing Strategy""; ""4.2.2 Fouling Assessment of Diffusers Discs""; ""4.2.3 Fouling Assessment of Membrane Tubes""; ""4.2.4 Fouling Comparison between IRWD and DC Water""
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|a ""4.3 Strass WWTP Fouling Results""""4.4 Bacterial Biofilm Identification Using Pyrosequencing""; ""4.4.1 Relationship between Diffuser Material Composition and Microbial Consortium""; ""4.5 Viability Examination for IRWD""; ""Chapter 5.0: Linking Aeration Efficiency and Microbiology""; ""5.1 Relationship between Efficiency Parameters and Microbial Growth""; ""5.2 Relationship Between Energy Requirements and Microbial Growth""; ""Chapter 6.0: Energy Neutrality Achievement through Aeration Efficiency Improvement""; ""6.1 Biological Process and MCRT""; ""6.2 Diffuser Type""
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|a ""6.2.1 Aeration Energy Projections""""6.3 Diffuser Fouling Mitigation""; ""Chapter 7.0: Conclusions""; ""Appendix A: Additional Material""; ""A.1 DNA Concentration Variation Based on Sampling Location""; ""A.1.1 Bead Beating by Sample Location and Replicates""; ""Appendix B: Calculation of Aeration Energy Consumption""; ""B.1 Calculation of Aeration Energy Consumption""; ""B.1.1 Oxygen Requirements""; ""B.1.2 Oxygen Transfer Efficiency""; ""B.1.2.1 Blower Power Requirements and its Associated Electricity Consumption""; ""References""
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a Distillation.
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|a Distillation.
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|a distillation.
|2 aat
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|a Water supply & treatment.
|2 bicssc
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|a Distillation
|2 fast
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|a Water supply & treatment.
|2 thema
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|a Shaw, Andrew.
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|i has work:
|a Framework for Energy Neutral Treatment for the 21st Century through Energy Efficient Aeration (Text)
|1 https://id.oclc.org/worldcat/entity/E39PD3fbcF3vkV9MDGtGRfmgqP
|4 https://id.oclc.org/worldcat/ontology/hasWork
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|i Print version:
|a Rosso, Diego.
|t Framework for Energy Neutral Treatment for the 21st Century through Energy Efficient Aeration.
|d London : IWA Publishing, ©1900
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856 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=3425853
|z Texto completo
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|a Askews and Holts Library Services
|b ASKH
|n BDZ0025650860
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|a ProQuest Ebook Central
|b EBLB
|n EBL3425853
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|a YBP Library Services
|b YANK
|n 12536399
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