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1.
Bioresour Technol ; 377: 128914, 2023 Jun.
Article in English | MEDLINE | ID: mdl-36940881

ABSTRACT

Side-stream reactor (SSR), as an in-situ sludge reduction process with high sludge reduction efficiency (SRE) and less negative impact on effluent, has been widely researched. In order to reduce cost and promote large-scale application, the anaerobic/anoxic/micro-aerobic/oxic bioreactor coupled with micro-aerobic SSR (AAMOM) was used to investigate nutrient removal and SRE under short hydraulic retention time (HRT) of SSR. When HRT of SSR was 4 h, AAMOM system achieved 30.41% SRE, while maintaining carbon and nitrogen removal efficiency. Micro-aerobic in mainstream accelerated the hydrolysis of particulate organic matter (POM) and promoted denitrification. Micro-aerobic in side-stream increased cell lysis and ATP dissipation, thus increasing SRE. Microbial community structure indicated that the cooperative interactions among hydrolytic, slow growing, predatory and fermentation bacteria played key roles in improving SRE. This study confirmed that SSR coupled micro-aerobic was a promising and practical process, which could benefit nitrogen removal and sludge reduction in municipal wastewater treatment plants.


Subject(s)
Sewage , Waste Disposal, Fluid , Sewage/microbiology , Anaerobiosis , Bioreactors/microbiology , Fermentation , Nitrogen
2.
Bioresour Technol ; 177: 194-203, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25490102

ABSTRACT

An ozone/ultrasound lysis-cryptic growth technology combining a continuous flow anaerobic-anoxic-microaerobic-aerobic (AAMA+O3/US) system was investigated. Techno-economic evaluation and sludge lyses return ratio (r) optimization of this AAMA+O3/US system were systematically and comprehensively discussed. Economic assessment demonstrated that this AAMA+O3/US system with r of 30% (AAMA+O3/US2# system) was more economically feasible that can give a 14.04% saving of costs. In addition to economic benefits, a 55.08% reduction in sludge production, and respective 21.17% and 5.45% increases in TN and TP removal efficiencies were observed in this AAMA+O3/US2# system. Considering the process performances and economic benefits, r of 30% in AAMA+O3/US2# system was recommended. Excitation-emission matrix and Fourier transform infrared spectra analyses also proved that less refractory soluble microbial products were generated from AAMA+O3/US2# system. Improvement in 2,3,5-triphenyltetrazolium chloride electron transport system (TTC-ETS) activity in AAMA+O3/US2# further indicated that a lower sludge lyses return ratio stimulated the microbial activity.


Subject(s)
Organic Chemicals/isolation & purification , Ozone/chemistry , Sewage/chemistry , Ultrasonics/methods , Waste Disposal, Fluid/economics , Waste Disposal, Fluid/methods , Water Pollutants, Chemical/isolation & purification , Aerobiosis , Ammonium Compounds/isolation & purification , Anaerobiosis , Biodegradation, Environmental , Biological Oxygen Demand Analysis , Electron Transport , Nitrogen/isolation & purification , Phosphorus/isolation & purification , Spectrometry, Fluorescence , Spectroscopy, Fourier Transform Infrared , Tetrazolium Salts/chemistry , Time Factors
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