Related Experiment Video
Updated: Jun 21, 2026

A Novel Bioreactor for High Density Cultivation of Diverse Microbial Communities
Published on: December 25, 2015
Biological nitrification-denitrification with alternating oxic and anoxic operations using aerobic granules
Sunil S Adav1, Duu-Jong Lee, Juin-Yih Lai
1Department of Chemical Engineering, National Taiwan University, Taipei, Taiwan.
Abstract:
Efficient nitrification and denitrification of wastewater containing 1,700 mgl(-1) of ammonium-nitrogen was achieved using aerobic granular sludge cultivated at medium-to-high organic loading rates. The cultivated granules were tested in a sequencing batch reactor (SBR) fed with 6.4 or 10.2 kg NH (4) (+) -N m(-3) day(-1), a loading significantly higher than that reported in literature. With alternating 2 h oxic and 2 h anoxic operation (OA) modes, removal rate was 45.5 mg NH (4) (+) -N g(-1) volatile suspended solids(-1) h(-1) at 6.4 kg NH (4) (+) -N m(-3) day(-1) loading and 41.3 +/- 2.0 at 10.2 kg NH (4) (+) -N m(-3) day(-1) loading. Following the 60 days SBR test, granules were intact. The fluorescence in situ hybridization and confocal laser scanning microscopy results indicate that the SBR-OA granules have a distribution with nitrifers outside and heterotrophs outside that can effectively expose functional strains to surrounding substrates at high concentrations with minimal mass transfer limit. This microbial alignment combined with the smooth granule surface achieved nitrification-denitrification of wastewaters containing high-strength ammonium using aerobic granules. Conversely, the SBR continuous aeration mode yielded a distribution with nitrifers outside and heterotrophs inside with an unsatisfactory denitrification rate and floating granules as gas likely accumulated deep in the granules.
More Related Videos
11:31Continuously-stirred Anaerobic Digester to Convert Organic Wastes into Biogas: System Setup and Basic Operation
Published on: July 13, 2012
08:05Measurement of the Potential Rates of Dissimilatory Nitrate Reduction to Ammonium Based on 14NH4+/15NH4+ Analyses via Sequential Conversion to N2O
Published on: October 7, 2020
Related Concept Videos
Microbes and the Nitrogen Cycle
Metabolism of Chemolithotrophs
Inorganic Nitrogen Assimilation
Overview of Nitrogen Metabolism
The largest pool of nitrogen available in the terrestrial ecosystem is gaseous nitrogen (N2) from the air, but this nitrogen...
Microbial Wastewater Treatment
Microbial Mats