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Anammox technology in industrial was...
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Shah, Maulin P.
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Anammox technology in industrial wastewater treatment
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Anammox technology in industrial wastewater treatment/ edited by Maulin P. Shah.
其他作者:
Shah, Maulin P.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
v, 151 p. :ill. (some col.), digital ;24 cm.
內容註:
Ammonia oxidizing bacteria in wastewater -- Ammonia-oxidizing bacteria: Biochemical and molecular characteristics -- Anaerobic ammonium oxidation using engineered nanomaterials as potential modulators -- Anammox-cell biology, metabolism, growth and genetics -- Cultivation, growth physiology, and chemotaxonomy of nitrite-oxidizing bacteria.
Contained By:
Springer Nature eBook
標題:
Water - Purification -
電子資源:
https://doi.org/10.1007/978-981-99-3459-1
ISBN:
9789819934591
Anammox technology in industrial wastewater treatment
Anammox technology in industrial wastewater treatment
[electronic resource] /edited by Maulin P. Shah. - Singapore :Springer Nature Singapore :2023. - v, 151 p. :ill. (some col.), digital ;24 cm.
Ammonia oxidizing bacteria in wastewater -- Ammonia-oxidizing bacteria: Biochemical and molecular characteristics -- Anaerobic ammonium oxidation using engineered nanomaterials as potential modulators -- Anammox-cell biology, metabolism, growth and genetics -- Cultivation, growth physiology, and chemotaxonomy of nitrite-oxidizing bacteria.
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.
ISBN: 9789819934591
Standard No.: 10.1007/978-981-99-3459-1doiSubjects--Topical Terms:
993506
Water
--Purification
LC Class. No.: TD475
Dewey Class. No.: 628.162
Anammox technology in industrial wastewater treatment
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Ammonia oxidizing bacteria in wastewater -- Ammonia-oxidizing bacteria: Biochemical and molecular characteristics -- Anaerobic ammonium oxidation using engineered nanomaterials as potential modulators -- Anammox-cell biology, metabolism, growth and genetics -- Cultivation, growth physiology, and chemotaxonomy of nitrite-oxidizing bacteria.
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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.
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