| International Symposium on Resource Exploration and Environmental Science | |
| The effects of cathodic micro-voltage combined with hydrothermal pretreatment on methane fermentation of lignocellulose substrate | |
| 地球科学;生态环境科学 | |
| Liu, Dianxin^1 ; Ning, Ping^1 ; Qu, Guangfei^1 ; Huang, Xi^1 ; Liu, Yuhuan^1 ; Zhang, Jian^1 | |
| Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming | |
| 650500, China^1 | |
| 关键词: Biogas production; Cathode voltages; Cellulose degradation; Fermentation technologies; Hydrothermal pretreatment; Lignocellulose degradation; Lignocellulosic material; Methane fermentation; | |
| Others : https://iopscience.iop.org/article/10.1088/1755-1315/64/1/012083/pdf DOI : 10.1088/1755-1315/64/1/012083 |
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| 学科分类:环境科学(综合) | |
| 来源: IOP | |
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【 摘 要 】
The methane fermentation study assisted with cathodic micro-voltage was carried out to investigate the electric field effects on the fermentation of hydrothermally pretreated lignocellulose substrate. It was illustrated that a 0.25V cathode voltage and hydrothermal pretreatment could improve the biogas production, biogas quality and lignocellulose degradation ratio significantly. The cumulative biogas productions in the fermentation of hydrothermally pretreated cow dungs at 50°C, 150°C and 200°C with a 0.25V cathode voltage were observed in a total of 6640mL, 9218mL and 9456mL respectively over a detention time of 33 days. In comparison with the fermentation pretreated at 200°C without any voltage, nearly doubled of cumulative biogas production was obtained in the process of cathode-assisted fermentation. It was also observed that the daily methane content greater than or equal to 70% in the biogas generated with cathode voltage were clearly greater than that without voltages. Furthermore, the fermentation applied with a 0.25V cathode voltage had resulted into significant increases of 12.64% and 9.44% in lignin and cellulose degradation ratio relative to voltage free fermentation. And in the process of fermentation applied with cathode voltage, the final lignocellulose degradation ratio increased with the hydrothermal pretreatment temperature. Thus, the hydrothermal pretreatment and assisting fermentation with low cathode voltage can effectively promote the lignocellulose degradation. All results revealed that cathodic micro-voltage combined with hydrothermal pretreatment can remarkably improve the fermentation of lignocellulosic materials, indicating that a more effective fermentation technology can be developed by applying with cathodic micro-voltage.
【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| The effects of cathodic micro-voltage combined with hydrothermal pretreatment on methane fermentation of lignocellulose substrate | 426KB |
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