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Capture and conversion of CO2 by biological methanization process in h2 based membrane biyofilm reactor (MBfR)

2024
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Advisor: Prof. Dr. Binnaz Zeynep Zaimoğlu ; Prof. Dr. Kevser Cırık

Abstract (EN)

This thesis aims to optimize the biomethane process in a batch anaerobic membrane biofilm reactor (AnMBfR) and this study consists of two different stages. In the first stage of the study, anaerobic batch reactors were operated at different H2:CO2 (v:v) ratios (4:1-3:1-2:1-1:1) and different temperatures (37 and 55 °C). At this stage, the optimum H2:CO2 ratio and temperature were found to be 4:1 and 55 °C, respectively. At the same time, the highest methane (CH4) concentration in the outlet gas under optimum conditions was found to be 81%, and the hydrogen (H2) utilization efficiency and carbon dioxide (CO2) conversion efficiency were found to be 96% and 98%, respectively. In the second stage of the study, the effects of changing the H2:CO2 (v:v) ratio (4:1-5:1), temperature (37-55 °C), and gas feeding times (60-90-120-150 min.) on the AnMBfR performance were investigated. Study findings showed that varying H2:CO2 ratio, temperature, and gas feeding times played an important role in biomethane production in the intermittently operated AnMBfR, and the optimum gas feeding time, H2:CO2 ratio, and temperature were determined as 120 min, 4:1, and 55 °C, respectively. In addition, the highest CH4 concentration in the outlet gas under optimum conditions was 83% and H2, which has a very low solubility in the liquid phase, was not detected in the outlet gas (100% H2 usage efficiency). Under optimum conditions, the CO2 conversion efficiency was obtained as 86%. As a result, the use of a membrane in the system caused the complete dissolution of H2 in the liquid phase and an increase in the CH4 concentration. Keywords: Biological biogas upgrade, Anaerobic membrane biofilm reactor, Biomethane.

Author

Melike Kozak

How to Cite

Melike Kozak (Doctorate thesis). Capture and conversion of CO2 by biological methanization process in h2 based membrane biyofilm reactor (MBfR), 2024, Çukurova University.

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