상세 보기
- Lee, Jeong Seop;
- Sung, Young Joon;
- Sim, Sang Jun
WEB OF SCIENCE
13SCOPUS
12초록
The microalgae-based bioconversion process is a promising carbon utilization technology because it can upgrade CO2 into valuable substances, but a multiplex monitoring system required for process control to maximize biomass productivity has not been well established. Herein, a 3D printed real-time optical density monitoring device (RTOMD) combined platform was presented. This platform enables precise kinetics analysis by maintaining high accuracy (over 95 %) under raucous outdoor conditions. Through RTOMD-based high-frequency measurements, it was observed that maximum biomass productivity of 4.497 g L−1 d−1 was reached, which greatly exceeds the requirements for a feasible microalgae process. We discovered that the CO2 fixation efficiency could be achieved to 70.75 %, indicating the potential of a bioconversion process to realize a carbon–neutral society. Consequently, the RTOMD system can contribute to promoting microalgae cultivation as an attractive carbon mitigation technology based on an improved understanding of the photosynthetic CO2 fixation kinetics. © 2022 Elsevier Ltd
키워드
- 제목
- Kinetic analysis of microalgae cultivation utilizing 3D-printed real-time monitoring system reveals potential of biological CO2 conversion
- 저자
- Lee, Jeong Seop; Sung, Young Joon; Sim, Sang Jun
- 발행일
- 2022-11
- 유형
- Article
- 권
- 364
- 페이지
- 1 ~ 12