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Title: | Engineering Granular Microbiomes Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / |
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From: |
by David Gregory Weissbrodt.
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Person: |
Weissbrodt, David Gregory.
author. aut http://id.loc.gov/vocabulary/relators/aut |
Main Author: | |
Corporate Author: | |
Format: | Electronic eBook |
Language: | English |
Published: |
Cham :
Springer International Publishing : Imprint: Springer,
2024.
|
Edition: | 1st ed. 2024. |
Series: | Springer Theses, Recognizing Outstanding Ph.D. Research,
|
Subjects: | |
Online Access: | https://doi.org/10.1007/978-3-031-41009-3 |
Summary: | This book reports on the ecological engineering of granular sludge processes for a high-rate removal of carbon, nitrogen, and phosphorus nutrients in compact wastewater treatment plants. It provides novel insights into microorganisms and metabolisms in wastewater microbiomes and the use of microbial ecology principles to manage wastewater treatment processes. It covers a very comprehensive and inter-disciplinary research of systems microbiology and environmental biotechnology. From the initial economic assessment of the aerobic granular sludge technology, concepts of microbiome science and engineering are developed to uncover and manage the microbial ecosystem of granular sludge. Mixed-culture biotechnological processes, multifactorial experimental designs, laser scanning microscopy, molecular microbial ecology and bioinformatics methods, numerical ecology workflows, and mathematical modelling are engaged to disentangle granulation phenomena, microbial selection, and nutrient conversions across scales. The findings are assembled in a guideline for microbial resource management in granular sludge processes to support knowledge utilization in engineering practice. Outputs are integrated in the state of the art of biological wastewater treatment. This book addresses both scientists and engineers who are eager to get insights into and engineer microbiomes for environmental biotechnologies. It makes a valuable contribution to methods for strengthening the role of wastewater treatment plants for recovering safe water and resources, in the context of circular economy and for sustaining health and the environment in an ecologically balanced society. |
Physical Description: | 1 Online-Ressource (XXXVI, 525 p. 89 illus., 65 illus. in color.) |
ISBN: | 9783031410093 |
ISSN: | 2190-5061 |
Staff View
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520 | |a This book reports on the ecological engineering of granular sludge processes for a high-rate removal of carbon, nitrogen, and phosphorus nutrients in compact wastewater treatment plants. It provides novel insights into microorganisms and metabolisms in wastewater microbiomes and the use of microbial ecology principles to manage wastewater treatment processes. It covers a very comprehensive and inter-disciplinary research of systems microbiology and environmental biotechnology. From the initial economic assessment of the aerobic granular sludge technology, concepts of microbiome science and engineering are developed to uncover and manage the microbial ecosystem of granular sludge. Mixed-culture biotechnological processes, multifactorial experimental designs, laser scanning microscopy, molecular microbial ecology and bioinformatics methods, numerical ecology workflows, and mathematical modelling are engaged to disentangle granulation phenomena, microbial selection, and nutrient conversions across scales. The findings are assembled in a guideline for microbial resource management in granular sludge processes to support knowledge utilization in engineering practice. Outputs are integrated in the state of the art of biological wastewater treatment. This book addresses both scientists and engineers who are eager to get insights into and engineer microbiomes for environmental biotechnologies. It makes a valuable contribution to methods for strengthening the role of wastewater treatment plants for recovering safe water and resources, in the context of circular economy and for sustaining health and the environment in an ecologically balanced society. | ||
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Record in the Search Index
DE-BY-UBR_katkey | ZDB-2-SBL-978-3-031-41009-3 |
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any_adam_object | |
author | Weissbrodt, David Gregory |
author_corporate | SpringerLink (Online service) |
author_corporate_role | |
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bvnumber | localUBR |
callnumber-first | T - Technology |
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collection | ZDB-2-SBL ZDB-2-SXB |
contents | General Introduction & Economic Analysis -- Granular Sludge - State of the Art -- Research Questions & Scientific Overview -- Microbial selection during granulation of activated sludge under wash-out dynamics -- Concluding Remarks & Outlook. |
dewey-full | 628.5 660.6 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 628 - Sanitary engineering 660 - Chemical engineering |
dewey-raw | 628.5 660.6 |
dewey-search | 628.5 660.6 |
dewey-sort | 3628.5 |
dewey-tens | 620 - Engineering and allied operations 660 - Chemical engineering |
discipline | Chemie / Pharmazie Bauingenieurwesen |
edition | 1st ed. 2024. |
format | Electronic eBook |
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indexdate | 2025-06-23T13:27:57Z |
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isbn | 9783031410093 |
issn | 2190-5061 |
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spelling | Weissbrodt, David Gregory. author. aut http://id.loc.gov/vocabulary/relators/aut Engineering Granular Microbiomes [electronic resource] : Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / by David Gregory Weissbrodt. 1st ed. 2024. Cham : Springer International Publishing : Imprint: Springer, 2024. 1 Online-Ressource (XXXVI, 525 p. 89 illus., 65 illus. in color.) text txt rdacontent computer c rdamedia online resource cr rdacarrier text file PDF rda Springer Theses, Recognizing Outstanding Ph.D. Research, 2190-5061 General Introduction & Economic Analysis -- Granular Sludge - State of the Art -- Research Questions & Scientific Overview -- Microbial selection during granulation of activated sludge under wash-out dynamics -- Concluding Remarks & Outlook. This book reports on the ecological engineering of granular sludge processes for a high-rate removal of carbon, nitrogen, and phosphorus nutrients in compact wastewater treatment plants. It provides novel insights into microorganisms and metabolisms in wastewater microbiomes and the use of microbial ecology principles to manage wastewater treatment processes. It covers a very comprehensive and inter-disciplinary research of systems microbiology and environmental biotechnology. From the initial economic assessment of the aerobic granular sludge technology, concepts of microbiome science and engineering are developed to uncover and manage the microbial ecosystem of granular sludge. Mixed-culture biotechnological processes, multifactorial experimental designs, laser scanning microscopy, molecular microbial ecology and bioinformatics methods, numerical ecology workflows, and mathematical modelling are engaged to disentangle granulation phenomena, microbial selection, and nutrient conversions across scales. The findings are assembled in a guideline for microbial resource management in granular sludge processes to support knowledge utilization in engineering practice. Outputs are integrated in the state of the art of biological wastewater treatment. This book addresses both scientists and engineers who are eager to get insights into and engineer microbiomes for environmental biotechnologies. It makes a valuable contribution to methods for strengthening the role of wastewater treatment plants for recovering safe water and resources, in the context of circular economy and for sustaining health and the environment in an ecologically balanced society. Bioremediation. Refuse and refuse disposal. Biotechnology. Environmental Biotechnology. Waste Management/Waste Technology. Chemical Bioengineering. SpringerLink (Online service) Springer Nature eBook Printed edition: 9783031410086 Printed edition: 9783031410109 Printed edition: 9783031410116 |
spellingShingle | Weissbrodt, David Gregory Engineering Granular Microbiomes Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / Springer Theses, Recognizing Outstanding Ph.D. Research, General Introduction & Economic Analysis -- Granular Sludge - State of the Art -- Research Questions & Scientific Overview -- Microbial selection during granulation of activated sludge under wash-out dynamics -- Concluding Remarks & Outlook. Bioremediation. Refuse and refuse disposal. Biotechnology. Environmental Biotechnology. Waste Management/Waste Technology. Chemical Bioengineering. |
title | Engineering Granular Microbiomes Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / |
title_auth | Engineering Granular Microbiomes Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / |
title_exact_search | Engineering Granular Microbiomes Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / |
title_full | Engineering Granular Microbiomes [electronic resource] : Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / by David Gregory Weissbrodt. |
title_fullStr | Engineering Granular Microbiomes [electronic resource] : Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / by David Gregory Weissbrodt. |
title_full_unstemmed | Engineering Granular Microbiomes [electronic resource] : Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / by David Gregory Weissbrodt. |
title_short | Engineering Granular Microbiomes |
title_sort | engineering granular microbiomes bacterial resource management for nutrient removal in aerobic granular sludge wastewater treatment systems |
title_sub | Bacterial Resource Management for Nutrient Removal in Aerobic Granular Sludge Wastewater Treatment Systems / |
topic | Bioremediation. Refuse and refuse disposal. Biotechnology. Environmental Biotechnology. Waste Management/Waste Technology. Chemical Bioengineering. |
topic_facet | Bioremediation. Refuse and refuse disposal. Biotechnology. Environmental Biotechnology. Waste Management/Waste Technology. Chemical Bioengineering. |
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