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Functional Interrelationships of Microorganisms in Iron-Based Anaerobic Wastewater Treatment
by
Rifat Anwar
, Dongyang Deng
, Lian-Shin Lin
, Emily Garner
, Musfique Ahmed
in
Acid mine drainage
/ Ammonium
/ Anaerobic microorganisms
/ Anaerobic processes
/ Anaerobic treatment
/ Bacteria
/ Biological activity
/ Biological wastewater treatment
/ Biology (General)
/ Bioreactors
/ Carbon dioxide
/ Chemical oxygen demand
/ Cloning
/ Feammox
/ functional interrelationship
/ Gene amplification
/ Iron
/ iron-based wastewater treatment
/ Iron-reducing bacteria
/ Metabolism
/ Microorganisms
/ Nitrogen fixation
/ Nitrogen-fixing bacteria
/ Nitrogenation
/ Organic compounds
/ Oxidation
/ QH301-705.5
/ Ratios
/ Resource recovery
/ Sediments
/ Sludge
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ wastewater
/ Wastewater treatment
/ Water treatment
2021
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Functional Interrelationships of Microorganisms in Iron-Based Anaerobic Wastewater Treatment
by
Rifat Anwar
, Dongyang Deng
, Lian-Shin Lin
, Emily Garner
, Musfique Ahmed
in
Acid mine drainage
/ Ammonium
/ Anaerobic microorganisms
/ Anaerobic processes
/ Anaerobic treatment
/ Bacteria
/ Biological activity
/ Biological wastewater treatment
/ Biology (General)
/ Bioreactors
/ Carbon dioxide
/ Chemical oxygen demand
/ Cloning
/ Feammox
/ functional interrelationship
/ Gene amplification
/ Iron
/ iron-based wastewater treatment
/ Iron-reducing bacteria
/ Metabolism
/ Microorganisms
/ Nitrogen fixation
/ Nitrogen-fixing bacteria
/ Nitrogenation
/ Organic compounds
/ Oxidation
/ QH301-705.5
/ Ratios
/ Resource recovery
/ Sediments
/ Sludge
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ wastewater
/ Wastewater treatment
/ Water treatment
2021
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Do you wish to request the book?
Functional Interrelationships of Microorganisms in Iron-Based Anaerobic Wastewater Treatment
by
Rifat Anwar
, Dongyang Deng
, Lian-Shin Lin
, Emily Garner
, Musfique Ahmed
in
Acid mine drainage
/ Ammonium
/ Anaerobic microorganisms
/ Anaerobic processes
/ Anaerobic treatment
/ Bacteria
/ Biological activity
/ Biological wastewater treatment
/ Biology (General)
/ Bioreactors
/ Carbon dioxide
/ Chemical oxygen demand
/ Cloning
/ Feammox
/ functional interrelationship
/ Gene amplification
/ Iron
/ iron-based wastewater treatment
/ Iron-reducing bacteria
/ Metabolism
/ Microorganisms
/ Nitrogen fixation
/ Nitrogen-fixing bacteria
/ Nitrogenation
/ Organic compounds
/ Oxidation
/ QH301-705.5
/ Ratios
/ Resource recovery
/ Sediments
/ Sludge
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ wastewater
/ Wastewater treatment
/ Water treatment
2021
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Functional Interrelationships of Microorganisms in Iron-Based Anaerobic Wastewater Treatment
Journal Article
Functional Interrelationships of Microorganisms in Iron-Based Anaerobic Wastewater Treatment
2021
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Overview
This study explicated the functional activities of microorganisms and their interrelationships under four previously reported iron reducing conditions to identify critical factors that governed the performance of these novel iron-dosed anaerobic biological wastewater treatment processes. Various iron-reducing bacteria (FeRB) and sulfate reducing bacteria (SRB) were identified as the predominant species that concurrently facilitated organics oxidation and the main contributors to removal of organics. The high organic contents of wastewater provided sufficient electron donors for active growth of both FeRB and SRB. In addition to the organic content, Fe (III) and sulfate concentrations (expressed by Fe/S ratio) were found to play a significant role in regulating the microbial abundance and functional activities. Various fermentative bacteria contributed to this FeRB-SRB synergy by fermenting larger organic compounds to smaller compounds, which were subsequently used by FeRB and SRB. Feammox (ferric reduction coupled to ammonium oxidation) bacterium was identified in the bioreactor fed with wastewater containing ammonium. Organic substrate level was a critical factor that regulated the competitive relationship between heterotrophic FeRB and Feammox bacteria. There were evidences that suggested a synergistic relationship between FeRB and nitrogen-fixing bacteria (NFB), where ferric iron and organics concentrations both promoted microbial activities of FeRB and NFB. A concept model was developed to illustrate the identified functional interrelationships and their governing factors for further development of the iron-based wastewater treatment systems.
Publisher
MDPI AG,MDPI
Subject
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