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Settling and dewatering characteristics of granulated methane-oxidizing bacteria
Authors:Kwang Ho Ahn  Kwang Soo Kim  Sung Won Kang  Chul Yong Um  Won Tae Lee and Kwang Baik Ko
Institution:1. Korea Institute of Construction Technology, 283, Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si, Gyeonggi-Do 411-712, Korea;School of Civil and Environmental Engineering, Yonsei University, Sinchondong 134, Sudaemungu, Seoul 120-749, Korea
2. Korea Institute of Construction Technology, 283, Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si, Gyeonggi-Do 411-712, Korea
3. School of Civil and Environmental Engineering, Yonsei University, Sinchondong 134, Sudaemungu, Seoul 120-749, Korea
4. School of Civil and Environmental Engineering, Kumoh National Institute of Technology, Daehak-ro 61, Gumi, Gyeongbuk 730-701, Korea
Abstract:We evaluated the settling ability and dewaterability of granulated methane-oxidizing bacteria (GMOB) after granulation using a continuous-flow reactor. A comparative analysis on settling and dewatering characteristics due to changes in sludge retention time (SRT, 10, 15 and 20 days) during cultivation of GMOB was conducted. In assessing dewaterability, the specific resistance to filtration (SRF) of activated sludge and GMOB was found to be 8.21 × 1013−2.38 × 1014 and 4.88 × 1012 −1.98 × 1013 m/kg, respectively. It was confirmed that as SRT decreased, SRF of GMOB increased. In the case of bound extracellular polymeric substance (EPS), activated sludge registered 147.5 mg/g-VSS while GMOB exhibited 171–177.2 mg/g-VSS. In the case of extracellular polymeric substance soluble EPS in effluent, activated sludge measured 62 mg/L and GMOB had 17.4–21.4 mg/L. The particle size analysis showed that mean particle diameters of GMOB were 402, 369, and 350 μm, respectively, at SRTs of 20, 15 and 10 days. In addition, it was found that GMOB had a larger mean particle diameter and exhibited much better settleability and dewaterability than activated sludge did.
Keywords:methane-oxidizing bacteria  dewaterability  specific resistance to filtration  extracellular polymeric substances
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