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The Science of the Total Environment|January 1, 2021
Understanding complete ammonium removal mechanism in single-chamber microbial fuel cells based on microbial ecologyYounghyun Park, Jaecheul Yu, Van Khanh Nguyen, et al.Bioresource Technology|January 7, 2023
Biofuel production from Euglena: Current status and techno-economic perspectivesSunah Kim, Hyungjoon Im, Jaecheul Yu, et al.Bioresource Technology|December 19, 2023
Valorization of fruit and vegetable byproducts for the beta-glucan production from Euglena gracilisJaecheul Yu, Liu Fang, Sunah Kim, et al.Bioresource Technology|May 24, 2011
Microbial community structure and dynamics in a mixotrophic nitrogen removal process using recycled spent caustic under different loading conditionsSora Park, Jaecheul Yu, Imgyu Byun, et al.Journal of Industrial Microbiology & Biotechnology|February 11, 2017
Microbial arsenite oxidation with oxygen, nitrate, or an electrode as the sole electron acceptorVan Khanh Nguyen, Huong T Tran, Younghyun Park, et al.The Science of the Total Environment|November 28, 2022
Long-term adaptation of two anammox granules with different ratios of Candidatus Brocadia and Candidatus Jettenia under increasing salinity and their application to treat saline wastewaterSoyeon Jeong, Jeongmi Kim, Lucky Caesar Direstiyani, et al.Water Science and Technology : a Journal of the International Association on Water Pollution Research|July 7, 2012
Variations of electron flux and microbial community in air-cathode microbial fuel cells fed with different substratesJaecheul Yu, Younghyun Park, Haein Cho, et al.Bioresource Technology|March 5, 2013
Microalgae cultivation for bioenergy production using wastewaters from a municipal WWTP as nutritional sourcesSunja Cho, Nakyeong Lee, Seonghwan Park, et al.The Science of the Total Environment|October 27, 2022
Feeding strategy for single-stage deammonification to treat moderate-strength ammonium under low free ammonia conditionsJeongmi Kim, Lucky Caesar Direstiyani, Soyeon Jeong, et al.Microorganisms|August 7, 2021
Isolation and Characterization of Euglena gracilis-Associated Bacteria, Enterobacter sp. CA3 and Emticicia sp. CN5, Capable of Promoting the Growth and Paramylon Production of E. gracilis under Mixotrophic CultivationRubiyatno, Kazuhiro Mori, Daisuke Inoue, et al.Pageof 4