Formation of filamentous microorganisms impedes oxygen transfer and decreases aeration efficiency for wastewater treatment G Liu, J Wang, K Campbell Journal of Cleaner Production 189, 502-509, 2018 | 29 | 2018 |
Assessing activated sludge morphology and oxygen transfer performance using image analysis K Campbell, J Wang, M Daniels Chemosphere 223, 694-703, 2019 | 26 | 2019 |
Filamentous organisms degrade oxygen transfer efficiency by increasing mixed liquor apparent viscosity: Mechanistic understanding and experimental verification K Campbell, J Wang, GT Daigger Water research 173, 115570, 2020 | 21 | 2020 |
Activated sludge morphology significantly impacts oxygen transfer at the air–liquid boundary K Campbell, J Wang, G Liu, G Daigger Water Environment Research 91 (6), 500-509, 2019 | 12 | 2019 |
New insights into the effect of surfactants on oxygen mass transfer in activated sludge process K Campbell, J Wang Journal of Environmental Chemical Engineering 8 (5), 104409, 2020 | 11 | 2020 |
Implementation of long solids retention time activated sludge process for rural residential community K Campbell, J Wang, R Tucker, C Struemph Water Environment Research 93 (2), 174-185, 2021 | 9 | 2021 |
Understanding the role of activated sludge in oxygen transfer: Effects of sludge settleability, solids retention time, and nitrification reaction K Campbell, J Wang Water Environment Research 94 (11), e10806, 2022 | 2 | 2022 |
Filamentous cyanobacteria and associated microorganisms, structurally preserved in a Late Jurassic chert from Patagonia, Argentina JLG Massini, DM Guido, KC Campbell, AJ Sagasti, M Krings Journal of South American Earth Sciences 107, 103111, 2021 | 2 | 2021 |
Formation of filamentous microorganisms impedes oxygen transfer and decreases aeration efficiency for wastewater treatment. LGQ Liu GuoQiang, WJM Wang JianMin, K Campbell | | 2018 |