논문투고
축산관련 논문을 투고한 자료를 모아 정보를 제공합니다. 관련자료가 없는 성과년도는 표기되지 않습니다.
논문명(한글), 논문명(영문), 성과주관부서, 품목코드, 학술지명, 주저자, 연도, 성과적용일, 첨부파일, 내용으로 구성된 글 상세입니다.
논문명(한글) |
Enhanced production of biohydrogen and biomethane through a two-stage anaerobic fermentation of food waste mixed with conductive additives |
논문명(영문) |
Enhanced production of biohydrogen and biomethane through a two-stage anaerobic fermentation of food waste mixed with conductive additives |
성과주관부서 |
국립축산과학원 축산생명환경부 축산환경과 |
품목코드 |
|
학술지명 |
Chemical Engineering Journal |
주저자 |
김태훈 |
성과년도 |
|
성과적용일 |
2023년10월 |
This study was conducted to examine the effects of three different conductive materials (CMs) on H2 and CH4
production in a two-stage fermentation process (TSFP). This study also investigated the distinct roles played by the different types of CMs within the process. The study findings revealed that the combination of two or more CMs led to a significant improvement in production compared to using a single CM. Magnetite nanoparticle (MNP) played a crucial role in enhancing H2 productivity during the first stage of the TSFP. The TSFP with carbon nanotubes (CNT) + MNP demonstrated the highest H2 yield of 121 ± 7 mL/g?COD with the H2 production rate of 219 ± 18 mL/hr, followed by the TSFP with MNP alone yielded the second highest H2 of 81 ± 5 mL/g?COD with the H2 production rate of 169 ± 25 mL/hr. Both powdered activated carbon (PAC) alone (277 ± 17 mL/g?COD) and PAC + CNT (278 ± 15 mL/g?COD) showed the highest CH4 yield, indicating that PAC
contributed to higher CH4 production in the second stage of the TSFP. The addition of PAC to the samples led to higher chemical oxygen demand (COD) removal efficiency in the TSFP, while the presence of MNP ignificantly increased the total energy production.