By Bing-Jie Ni
Aerobic granular sludge know-how will play a tremendous function as an cutting edge expertise substitute to the current activated sludge method in commercial and municipal wastewater therapy within the close to destiny. meant to fill the gaps within the reports of cardio granular sludge, this thesis comprehensively investigates the formation, characterization and mathematical modeling of cardio granular sludge, via integrating the method engineering instruments and complicated molecular microbiology. The study result of this thesis contributed considerably to the improvement of realizing and optimization of the bacterial granulation strategies, the following new release of know-how for least expensive organic wastewater treatment.
Dr. Bing-Jie Ni works at complicated Water administration Centre (AWMC) of The college of Queensland, Australia.
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Additional info for Formation, characterization and mathematical modeling of the aerobic granular sludge
In Chap. 12, the feasibility to start up the anammox process by seeding the reactor with aerobic granular sludge is investigated. The anammox granules are successfully cultivated in an upflow anaerobic sludge blanket (UASB) reactor by seeding with aerobic granular sludge. The average total nitrogen removal efficiency exceeds 94 % after the formation of the granules. 064 kg N kg VSS-1 d-1. The ASM1 extended with a two-step denitrification consideration is incorporated with the anammox process to formulate a new platform to simulate the reactor performance well.
Technol. : Iron metabolism in humans and plants. Am. Sci. : Enzymatic activity in the activated-sludge floc matrix. Appl. Microbiol. Biotechnol. : Extraction of extracellular polymers from activated sludge using a cation exchange resin. Water Res. : Impact of the repetition of oxygen deficiencies on the filamentous bacteria proliferation in activated sludge. Water Res. : Biological Wastewater Treatment, 2nd edn. pp. 282– 284. : Removal of bulk dissolved organic carbon (DOC) and trace organic compounds by bank filtration and artificial recharge.
Water Sci. Technol. : Interactions of microbial biofilms with toxic trace metals: 1. Observation and modeling of cell growth, attachment, and production of extracellular polymer. Biotechnol. Bioeng. : Role of soluble microbial products (SMP) in membrane fouling and flux decline. Environ. Sci. Technol. : Poly(3-hydroxybutyrate) granules at the early stages of formation are localized close to the cytoplasmic membrane in Caryophanon latum. Appl. Environ. Microbiol. : Comprehensive insight into floc characteristics and their impact on compressibility and settleability of activated sludge.