Session Details
用排水システム(1)
Wed. Sep 2, 2026 9:20 AM - 10:40 AM JST
Wed. Sep 2, 2026 12:20 AM - 1:40 AM UTC
Wed. Sep 2, 2026 12:20 AM - 1:40 AM UTC
Room C31, 3rd Floor, Building 6 (Hokkai-Gakuen University)
[VII-14]Continuous Treatment of Phenol-Containing Wastewater Using a Multi-Feed Multi-Stage Mesophilic UASB Reactor
*Shoya Aratake1,2, Reiya Harada, Shoji Ikeda1, Masayoshi Yamada1 (1. National institute of Technology,kagoshima college, 2. Advanced Civil Engineering)
[VII-15]Performance Evaluation of Sulfur-Based Mixotrophic Denitrification in USB Reactors
*Yuto Kato1, Takahiro Watari1, Masashi Hatamoto1, Takashi Yamaguchi1 (1. Nagaoka University of Technology)
[VII-16]Evaluation of Diclofenac Removal Performance by Activated Carbon in DHS and UASB–DHS Effluents
*Yukino Soga1, Takahiro Watari1, Tsutomu Okubo2, Vinay Tyagi3, Masashi Hatamoto1, Takashi Yamaguchi1 (1. Nagaoka University of Technology, 2. National Institute of Technology, Kisarazu College, 3. National Institute of Hydrology, India)
[VII-17]Evaluation of Treatment Performance and Microbial Community Structure in a DHS Reactor Using a Novel Sponge Media
*Kyou Sejimo1, Yodai Shimotashiro1, Takashi Yamaguchi1, Takahiro Watari1, Masashi Hatamoto1, Ryosuke Tsujibayashi2, XINGCHEN ZHU2 (1. Nagaoka University of Technology, 2. Sanki Engineering Co., Ltd.)
[VII-18]Volatile Fatty Acid Production from H2/CO2 via Microbial Processes Using an Anaerobic DHS Reactor
*Naoki Obokata1, Yamada Koyo1, Watari Takahiro1, Yamaguchi Takashi1, Hatamoto Masashi1 (1. Nagaoka University of Technology)
[VII-19]Endogenous Denitrification in an Anoxic DHS Reactor under Changing Organic Loading
*Haruya Hirata1, Aoba Hasegawa1, Haruhiko Sumino1, Shuji Kawakami2 (1. National Institute of Technology , Gifu College, 2. National Institute of Technology , Nagaoka College)
[VII-20]Effect of tetrahydrofolate on the growth of the marine anammox bacteria Ca. Scalindua
*Kohei Yamamoto1, Tomonori Kindaichi1 (1. Hiroshima University)
[VII-21]Isolation of bacteria described in the phylumSynergistota, a dominant uncultured phylogenetic group in anaerobic wastewater treatment sludge.
*Yuma Arai1, Masashi Hatamoto1, Takahiro Watari1, Takashi Yamaguchi1 (1. Nagaoka University of Technology)
