Anaerobic co-digestion of sodium hydroxide pretreated sugarcane leaves with pig manure and dairy manure
文献类型: 外文期刊
第一作者: Luo, Juan
作者: Luo, Juan;Wachemo, Akiber Chufo;Yuan, Hairong;Zhang, Liang;Li, Xiujin;Luo, Juan;Meng, Haibo;Yao, Zonglu;Wachemo, Akiber Chufo
作者机构:
关键词: NaOH pretreatment; co-digestion; sugarcane leaves; pig manure; dairy manure
期刊名称:INTERNATIONAL JOURNAL OF AGRICULTURAL AND BIOLOGICAL ENGINEERING ( 影响因子:2.032; 五年影响因子:2.137 )
ISSN: 1934-6344
年卷期: 2018 年 11 卷 4 期
页码:
收录情况: SCI
摘要: Sugarcane leaves (SL) pretreated by alkali was used as substrate to enhance biogas production via mesophilic anaerobic digestion (AD) in this study. Effectiveness of different concentrations of NaOH pretreatment on AD performance was investigated. Results showed that compared to untreated sample of SL, the lignocellulose (LCH) content of NaOH pretreated group was decreased by 5.79%-16.85%. However, the cumulative biogas production of the pretreated samples increased in the range of 34.54%-82.67%; moreover, T90 was shorten by 5-7 d. The highest anaerobic digestibility of SL was achieved at 6% NaOH pretreatment, which produced 287.30 mL/g TS of biogas. A significant interactive effect of the three parameters (temperature, SL/manure mixing ratio and C/N ratio) was found on the biogasification of anaerobic co-digestion, and a maximum biogas production was achieved at 36.2 degrees C, mixing ratio of 1.6 and C/N ratio of 29.2. These show that the verification experiment confirmed the optimization results. This study provides meaningful insight for exploring efficient pretreatment strategy and optimal condition to stabilize and enhance AD performance for practical application.
分类号:
- 相关文献
作者其他论文 更多>>
-
Bio-carbon composite for supercapacitor electrodes: Harnessing hydrochar frameworks and bio-tar polymerization
作者:Jia, Jixiu;Sun, Yuxuan;Huo, Lili;Zhao, Lixin;Liu, Ziyun;Zhang, Shuaishuai;Xie, Teng;Zhao, Yanan;Yao, Zonglu;Liu, Zhidan;Kang, Kang;Kang, Kang
关键词:Hydrochar; Bio-tar; Bio-carbon composite; Porous bio-carbon; Supercapacitor electrode
-
Multi-scale structural influence of starch on their interaction of caffeic acid and starch after freeze-thaw: Taking potato starch and lotus seed starch as examples
作者:Zhao, Renjie;Li, Chi;Liu, Qiannan;Liu, Wei;Zhang, Liang;Zhang, Zhenzhen;Zhao, Ruixuan;Hu, Honghai;Yao, Jia;Li, Chi
关键词:Caffeic acid; Starch; Interaction
-
Adsorption and in vitro controlled-release properties of a soybean cellulose nanocrystal/polyacrylamide-based hydrogel as a carrier for different polyphenols
作者:Tang, Lu;Zhao, Dan;Wang, Bo;Bai, Shiru;Fan, Bei;Zhang, Liang;Wang, Fengzhong;Wang, Bo
关键词:Hydrogel; Polyphenols; Absorption; Release; Bioavailability
-
Enhanced healing of MRSA-infected wounds with okara cellulose nanocrystals-based temperature-sensitive cationic hydrogel: Development and characterization
作者:Tang, Lu;Wang, Bo;Bai, Shiru;Liu, Xiaolin;Zhao, Dan;Fan, Bei;Zhang, Liang;Wang, Fengzhong;Wang, Bo;Wang, Fengzhong;Wang, Fengzhong
关键词:Hydrogel; Functional properties; MRSA-infected wound healing
-
Impacts of Biochar Pyrolysis Temperature, Particle Size, and Application Rate on Water Retention of Loess in the Semiarid Region
作者:Zhang, Peizhen;Chang, Fangling;Huo, Lili;Yao, Zonglu;Luo, Juan;Zhang, Peizhen;Chang, Fangling;Huo, Lili;Yao, Zonglu;Luo, Juan
关键词:corn straw; biochar; pyrolysis temperature; particle size; water retention; loess
-
Phylogeography Analysis Reveals Rabies Epidemiology, Evolution, and Transmission in the Philippines
作者:Zhang, Liang;Jiang, Jianfeng;Gong, Wenjie;Zhang, Liang;Sun, Sheng;Liu, Yan;Tu, Changchun;Gong, Wenjie;Feng, Ye;Cruz, Jeffrey;Gonzales, Riva Marie;Azul, Rachel R.;Pena, Rainelda C. Dela;Tian, Yao;Jiang, Tao;Fang, Liqun;Feng, Ye;Wang, Yuyang;Tu, Changchun
关键词:rabies virus; Philippines; molecular epidemiology; transmission patterns; selection pressure; strategy
-
Mechanistic study on the co-pyrolysis of cellulose and LDPE: Activation energy variations and functional group evolution
作者:Xie, Teng;Yao, Zonglu;Huo, Lili;Jia, Jixiu;Zhang, Peizhen;Zhang, Xinyi;Zhao, Yanan;Zhao, Lixin
关键词:Co-pyrolysis; Cellulose; Low-density-polyethylene; Functional group; Mechanism