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Anatoliy M. Kopachevsky
Anatoliy M. Kopachevsky
Biomass
Wastewater
Anaerobic digestion
Chemistry
Sludge
4
Papers
65
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Co-digestion of Wastewater-Grown Filamentous Algae With Sewage Sludge Improves Biomethane Production and Energy Balance Compared to Thermal, Chemical, or Thermochemical Pretreatments
2019
Frontiers in Energy Research
Pavlo Bohutskyi
Troy A. Keller
Duc Phan
Markeshia L. Parris
Mengyuan Li
Lakesha Richardson
Anatoliy M. Kopachevsky
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Citations (14)
Production of lipid-containing algal-bacterial polyculture in wastewater and biomethanation of lipid extracted residues: Enhancing methane yield through hydrothermal pretreatment and relieving solvent toxicity through co-digestion
2019
Science of The Total Environment
Pavlo Bohutskyi
Duc Phan
Ruth Spierling
Anatoliy M. Kopachevsky
Edward J. Bouwer
Trygve J. Lundquist
Michael J. Betenbaugh
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Citations (15)
Bioenergy from wastewater resources: Nutrient removal, productivity and settleability of indigenous algal-bacteria polyculture, and effect of biomass composition variability on methane production kinetics and anaerobic digestion energy balance
2018
Algal Research-Biomass Biofuels and Bioproducts
Pavlo Bohutskyi
Ruth Spierling
Duc Phan
Anatoliy M. Kopachevsky
Yuting Tang
Michael J. Betenbaugh
Edward J. Bouwer
Trygve J. Lundquist
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Citations (6)
Synergistic Co-Digestion of Wastewater Grown Algae-Bacteria Polyculture Biomass and Cellulose to Optimize Carbon-to-Nitrogen Ratio and Application of Kinetic Models to Predict Anaerobic Digestion Energy Balance
2018
Bioresource Technology
Pavlo Bohutskyi
Duc Phan
Anatoliy M. Kopachevsky
Steven Chow
Edward J. Bouwer
Michael J. Betenbaugh
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Citations (30)
1