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Ammonia Oxidizing Bacteria: Applications in Industrial Wastewater Treatment

Ammonia Oxidizing Bacteria: Applications in Industrial Wastewater Treatment
Author: Maulin P Shah
Publisher: Royal Society of Chemistry
Total Pages: 240
Release: 2023-09-29
Genre: Science
ISBN: 1839166878

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Ammonia oxidising bacteria (AOB) and archaea are ubiquitous microorganisms, but their abundance and diversity vary widely across environments and play a crucial role in many ecosystems and aquatic ecosystems in particular. However, characterization of AOB communities require genomic methods as they are difficult to isolate from samples. Although non-toxic to humans, in the short term, ammonia in water systems are harmful to aquatic life both directly and indirectly through the disruption of the ecosystem by promoting the proliferation of algae (a process called eutrophication). Contamination often occurs due to use of disinfectants with chloramines, fertilizers, waste disposal and from natural processes. Due to their natural presence, utilising AOBs to treat water is viewed as an attractive solution, but greater knowledge of their biochemical processes and measurement of their efficacy is required. Ideal for postgraduates and researchers in a variety of disciplines, this book covers the ecology, genomics, physiology and biochemistry of AOBs and their presence in wastewater, and the challenges, opportunities and potential applications for nitrification and ammonia removal.


Development in Wastewater Treatment Research and Processes

Development in Wastewater Treatment Research and Processes
Author: Maulin P Shah
Publisher: Elsevier
Total Pages: 488
Release: 2022-05-12
Genre: Science
ISBN: 032398505X

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Development in Wastewater Treatment Research and Processes: Microbial Ecology, Diversity and Functions of Ammonia Oxidizing Bacteria covers up-to-date research on ammonia oxidizing bacteria and their application for the removal of ammonia nitrogen from wastewater treatment plants (WWTPs), discussing remaining gaps in their biology and functions. In this sense, this book features the application of the newly developed omics tools in order to develop less energy intensive and cost-effective biological processes for nitrogen removal from WWTPs. This makes this book an essential and unique book for advanced students, research scientists, environmental agencies and industries involved in wastewater treatment. Covers the application of different omics tools for studying the microbial ecology, diversity and function of ammonia oxidizing bacteria in wastewater treatment plants (WWTPs) Describes the role of ammonia oxidizing microorganisms in WWTPs Presents the microbial ecology of ammonia oxidizing bacteria in WWTPs Includes the microbial diversity of ammonia oxidizing bacteria Emphasizes important aspects of cutting-edge molecular tools in the study of metabolic pathways of ammonia oxidizing bacteria


Anaerobic Ammonium Oxidation

Anaerobic Ammonium Oxidation
Author: Maulin P. Shah
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 219
Release: 2023-06-06
Genre: Science
ISBN: 3110780186

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Current use of the ammonia oxidizing bacteria (AOB) within biological wastewater treatment system is incomplete due to limitations of current culture-based techniques. This book offers an overview of new nitrification technologies via the use of AOB in the removal of ammonia nitrogen from wastewater. The application of new approaches based on AOB leads to greater ammonia nitrogen removal and results in more efficient wastewater treatment.


Research on Nitrification and Related Processes, Part A

Research on Nitrification and Related Processes, Part A
Author: Martin G. Klotz
Publisher: Academic Press
Total Pages: 602
Release: 2011-01-10
Genre: Reference
ISBN: 0123812941

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State-of-the-art update on methods and protocols dealing with the detection, isolation and characterization of macromolecules and their hosting organisms that facilitate nitrification and related processes in the nitrogen cycle as well as the challenges of doing so in very diverse environments. Provides state-of-the-art update on methods and protocols Deals with the detection, isolation and characterization of macromolecules and their hosting organisms Deals with the challenges of very diverse environments


Anammox Technology in Industrial Wastewater Treatment

Anammox Technology in Industrial Wastewater Treatment
Author: Maulin P. Shah
Publisher: Springer Nature
Total Pages: 153
Release: 2023-07-19
Genre: Science
ISBN: 9819934591

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Ammonia in wastewater causes the eutrophication of water bodies and the subsequent depletion of dissolved oxygen. In addition, certain forms of nitrogen such as ammonia, nitrite, and nitrate are highly toxic to aquatic life. Although there are several biological and physical–chemical techniques for the removal of ammoniacal nitrogen compounds, including air stripping and breakpoint chlorination, which have been widely applied, a microbiological or microbe-based approach is attractive because it is based on sustainable technologies. In this regard, ammonia-oxidizing bacteria have recently gained great interest, specifically in wastewater treatment plants for the removal of ammoniacal nitrogen especially, owing to its relatively low capital cost, eco-friendliness, and high efficiency when compared with conventional cleanup technologies. This book provides specific and advanced knowledge on the microbial ecology of ammonia-oxidizing bacteria and their diversity and functions in the treatment of toxic pollutants present in wastewater. The book thus serves as a valuable resource for engineers, scientists, and managers who require an excellent introductory and advanced knowledge of the field, professionals who are working or interested in the environmental microbiology or bioremediation field, and students learning about environmental biotechnology and microbiology.


Ammonia-oxidizing Archaea and Complete Ammonia-oxidizing Bacteria in a Municipal Wastewater Treatment Plant

Ammonia-oxidizing Archaea and Complete Ammonia-oxidizing Bacteria in a Municipal Wastewater Treatment Plant
Author: Emilie Spasov
Publisher:
Total Pages:
Release: 2018
Genre: Archaebacteria
ISBN:

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High levels of ammonia in aquatic environments can lead to eutrophication, oxygen depletion, and toxicity to aquatic animals. An important goal of municipal wastewater treatment plants (WWTPs) is to remove ammonia from human waste before the treated effluent is released into receiving waters. Nitrification, the oxidation of ammonia to nitrate via nitrite, is a process that removes ammonia, and it is mediated solely by microorganisms. Historically it was thought that the two enzymatic steps of nitrification were carried out by distinct groups of microorganisms. The first step, aerobic ammonia oxidation, was long-known to be carried out by ammonia-oxidizing bacteria (AOB), and more recently the ammonia-oxidizing archaea (AOA) were discovered as contributors to the same process. The second step, nitrite oxidation, is carried out by nitrite-oxidizing bacteria (NOB), which are phylogenetically distinct from the AOB. However, certain species of Nitrospira are now recognized as being capable of catalyzing both steps of nitrification in the process of complete ammonia oxidation (comammox). Due to the importance of nitrifiers to the functionality of WWTPs, this research aimed to better understand microorganisms and processes associated with ammonia oxidation within the tertiary treatment system biofilm of a municipal WWTP. The Guelph WWTP has four trains of rotating biological contactors (RBCs) that are each composed of eight individual RBC stages. As water flows from RBC 1 to 8, the ammonia concentration decreases due to the activity of ammonia oxidizers. Because of relatively low ammonia concentrations entering the RBCs, compared to secondary treatment aeration basins, and their fixed-film design, these RBCs present a valuable opportunity to study novel nitrifiers, such as the AOA and comammox bacteria. The group I.1b AOA representative Candidatus Nitrosocosmicus exaquare was previously enriched from the RBCs. Initial enrichment cultivation and genome analysis data indicated that ammonia oxidation by this archaeon was stimulated by the addition of organic carbon sources, such as pyruvate and succinate. For other AOA, pyruvate stimulation is likely a result of hydrogen peroxide detoxification, not mixotrophy. Conversely, Ca. N. exaquare may already be capable of detoxifying hydrogen peroxide without pyruvate because it possesses a gene for catalase. Additionally, it possesses dicarboxylate transporters. This suggests that Ca. N. exaquare may be able to use pyruvate and succinate mixotrophically. To test this hypothesis, incubation experiments without organic carbon, and with organic carbon sources or catalase were established. Both succinate and pyruvate did not consistently or significantly stimulate ammonia oxidation over controls with repeated incubations. Catalase was also not stimulatory to nitrite production, indicating that Ca. N. exaquare does not require exogenous catalase, and the pyruvate may be used instead as a carbon source. Evidence for mixotrophy was inconclusive, and further work with a pure culture of Ca. N. exaquare, and experiments with labelled organic carbon, would help determine if this AOA species is capable of mixotrophy. Due to their recent discovery, comammox bacteria had not previously been reported in the Guelph WWTP, and little is known about their abundances in WWTPs. Using a combination of metagenomics and quantitative PCR, the abundance and diversity of comammox bacteria in the RBCs were explored over two sampling years. Taxonomic profiling of all microorganisms revealed that Nitrospira spp. dominated the RBC microbial community. Functional profiling indicated that comammox-associated Nitrospira represented the most abundant group of ammonia-oxidizing microorganisms. The diversity of comammox bacteria was also high, with multiple populations present. A cluster of comammox Nitrospira was also phylogenetically distinct from cultivated comammox species and these taxa represent ideal targets for future cultivation efforts. Genetic evidence that RBC Nitrospira are capable of complete ammonia oxidation includes Nitrospira metagenome assembled genomes that contain genes for both ammonia oxidation (e.g. amoA) and nitrite oxidation (e.g. nxrB). The results indicate that comammox bacteria co-exist with AOA and AOB, as well as with strict nitrite-oxidizing Nitrospira. The ammonia oxidizers displayed distinct patterns in relative abundance. In 2010 samples, AOA-associated amoA and 16S rRNA genes were higher in abundance in RBC 8 than RBC 1, but the opposite pattern was observed for 2016 samples. The relative abundance of AOB amoA genes was lower for 2016 samples than 2010 samples, suggesting a change in the environmental conditions of the RBCs. The relative abundance patterns of comammox Nitrospira amoA genes were consistent across the two years. This study indicated that the environmental factors that govern AOA, AOB, and comammox bacteria differ, suggesting that these groups occupy distinct niches within this wastewater biofilm environment. This thesis research is an important step towards understanding the nitrifying microorganisms in the Guelph RBCs. Although Ca. N. exaquare possesses the ability to deal with hydrogen peroxide stress, this research did not conclusively address organic carbon stimulation and assimilation. This thesis work showed that comammox bacteria were the dominant ammonia oxidizers in the Guelph RBCs, and this is the first study showing that comammox bacteria can be the dominant nitrifiers in a WWTP. This research paves the way for future studies on the microbial ecology of nitrification in engineered and aquatic environments.


Nitrification

Nitrification
Author: Bess B. Ward
Publisher: American Society for Microbiology Press
Total Pages: 610
Release: 2011-03-25
Genre: Science
ISBN: 1555814816

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A full review of the latest research findings on microbes involved in conventional aerobic nitrification, anaerobic ammonia oxidation, and related processes. • Examines the four principal groups of nitrifying microbes including conventional aerobic bacterial ammonia oxidizers, recently discovered aerobic archaeal ammonia oxidizers, anaerobic ammonia-oxidizing planctomycetes, and nitrite-oxidizing bacteria. • Provides current information on the ecology, phylogeny, biochemistry, molecular biology, and genomics of each group of microbes. • Discusses the latest industrial applications of nitrification and anammox processes, and explores the ecology of nitrification in marine, freshwater, soil, and wastewater environments.


Waste-Based Zeolite

Waste-Based Zeolite
Author: Mihir Kumar Purkait
Publisher: Elsevier
Total Pages: 284
Release: 2024-05-28
Genre: Technology & Engineering
ISBN: 0443223173

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Waste-Based Zeolite: Synthesis and Environmental Applications focuses on the use of waste-based materials to fabricate zeolite and its subsequent use in environmental applications. It presents recent progress in zeolite synthesis using wastes products such as fly ash, steel slag, biomass waste, water treatment plant sludge, and municipal waste, among others. It discusses the application of waste-based zeolite for environmental applications such as biodiesel production, as well as considering techniques for recovering spent zeolite. Many industries produce substantial quantities of waste material comprising various hazardous constituents that lead to pollution and threaten the environment. However, such waste can often be a rich source of precursor ingredients for zeolite synthesis, and waste-based zeolites could potentially provide an economically and environmentally viable alternative to commercially available zeolites. This book illuminates this fascinating avenue of research. Investigates the synthesis of waste-based zeolites and their application for environmental remediation Covers the classification, structure, and characterization techniques of waste-based zeolites Discusses waste-based zeolites as a potential catalyst for biofuel production Considers the regeneration analysis and recovery of spent zeolite material


Anaerobic Ammonium Oxidation

Anaerobic Ammonium Oxidation
Author: Maulin P. Shah
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 176
Release: 2023-06-06
Genre: Science
ISBN: 3110780097

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Current use of the ammonia oxidizing bacteria (AOB) within biological wastewater treatment system is incomplete due to limitations of current culture-based techniques. This book offers an overview of new nitrification technologies via the use of AOB in the removal of ammonia nitrogen from wastewater. The application of new approaches based on AOB leads to greater ammonia nitrogen removal and results in more efficient wastewater treatment.


Application of Sewage Sludge in Industrial Wastewater Treatment

Application of Sewage Sludge in Industrial Wastewater Treatment
Author: Maulin P. Shah
Publisher: John Wiley & Sons
Total Pages: 148
Release: 2024-04-16
Genre: Science
ISBN: 1119857368

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Comprehensive reference examining activated sludge technologies in industrial wastewater treatment, combining a theoretical framework with practical methodologies Application of Sewage Sludge in Industrial Wastewater Treatment provides a roadmap to the methodologies for the treatment of industrial wastewaters from several major sectors integrating theory and practice, highlighting the importance of sewage sludge technologies in industrial wastewater treatment to clean up the environment from pollution caused by human activities, and assessing the applications of several existing activated sludge techniques and introduces new emerging technologies. All discussion within the text is based on a solid theoretical background. Application of Sewage Sludge in Industrial Wastewater Treatment covers key topics such as: Issues related to activated sludge treatment, such as biodegradability-based characterization, modeling, assessment of stoichiometric, and kinetic parameters and design Issues related to industrial pollution control, such as in-plant control, effect of pretreatment, and more Recently increasing quantity and complexity of toxic effluents, which can be bio remediable for plants and suitable microbes, whether natural or customized for specific purposes Ecological, profitable, and natural solutions designed to eliminate heavy metals, radionuclides, xenobiotic compounds, organic waste, pesticides, and more This reference provides an essential, one-of-a-kind, integrated approach for environmental microbiologists, biochemical engineers, environmental engineers, effluent treatment plant operators, and biologists and chemists at wastewater treatment plants.