Insights on anaerobic co-digestion of carbohydrate and protein at high load: synergy evolution and inhibition transfer mechanism
文献类型: 外文期刊
作者: Jialiang Zhou;Siqi Ming;Yuanhui Zhang;Hongbin Liu;Na Duan
作者机构:
关键词: Anaerobic co-digestion;Carbohydrate;Inhibition transfer mechanism;Protein;Synergistic effect
期刊名称: Chemical Engineering Journal
ISSN: 1385-8947
年卷期: 2025 年 518 卷
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: The anaerobic co-digestion (AcoD) of carbon-rich and nitrogen-rich substrates has significant synergistic effect in methane production, but its synergy mechanism is still unclear, which hinders the in-depth understanding of the synergistic effect in AcoD and the establishment of scientific proportioning rule based on organic components. This study determined the synergy evolution and revealed the two-way synergistic mechanism between carbohydrate and protein in AcoD system. The addition of certain protein can avoid the acidification of AD process with high-concentration carbohydrate by providing additional alkalinity to neutralize H+. However, the increased dosage of protein (≥60 %) would change the acid inhibition gradually to ammonia inhibition. The optimal dosage of protein was 40 % of carbohydrate with the highest methane conversion efficiency of 0.93, where that of carbohydrate mono-digestion was only 0.16. On the other hand, low proportion of carbohydrate can reduce ammonia inhibition during the AD process of high-concentration protein through promoting the conversion of free ammonia to ammonium ion, but the excessive addition (≥60 %) would significantly inhibit the volatilization of ammonia nitrogen and then aggravate the ammonia inhibition. The suitable dosage of carbohydrate was 40 %–50 % of protein with the optimal methane conversion efficiency of 0.68–0.71, where that of protein mono-digestion was only 0.55. These results provide a deep insight in the two-way synergistic mechanism between carbohydrate and protein in the AcoD process, and promote the concrete implementation of AcoD with multiple substrates.
分类号:
- 相关文献
作者其他论文 更多>>
-
Glucose and Lignin Differentially Drive Phosphorus Fractions to Vary in Mollisols (WRB) and Fluvo-Aquic Soil (Chinese Soil Taxonomy) via Microbial Community Shifts
作者:Xue Li;Fuyue Dai;Shuo Chen;Hongyuan Wang;Shuxia Wu;Bingqian Fan;Hongbin Liu
关键词:carbon source;microbial functional traits;phosphatase;phosphorus transformation
-
Dual valorization of bamboo waste via superheated steam torrefaction: Efficient bioenergy production and pollutant adsorption
作者:Qiaohui Peng;Haibo Meng;Yi Liu;Nannan Wu;Na Duan;Dongdong Zhang
关键词:Bamboo waste;Bio-adsorbent;Bio-energy;Superheated steam-boosted torrefaction
-
Investigation on the interaction between catalase and typical phthalates with different side chain lengths
作者:Rui Guan;Yaoyao Wang;Hongbin Liu;Wansong Zong;Rongguang Shi;Jing Lan;Xingchen Zhao;Zongshan Zhao
关键词:Catalase;Conformation;Molecular mechanism;Multispectral analysis;Phthalates
-
Integrated rice-crab co-culture system shows capability to reduce greenhouse gases emission and global warming potential
作者:Muhammad Amjad Bashir;Yang Xu;Hongyuan Wang;Yibin Zhang;Qurat ul Ain Raza;Wentao Sun;Muhammad Aon;Xiushuang Zhang;Abdur Rehim;Hongbin Liu
关键词:Agri-aquaculture;Co-culture;RC system;Rice production;Rice-animal
-
Machine learning-driven method for in-situ high-frequency CH4 measurement in paddy fields based on water-soil-air factors: A case study of the Yangtze River Basin
作者:Qinjing Zhang;Weijia Wen;Yanhua Zhuang;Liang Zhang;Limei Zhai;Sisi Li;Hongbin Liu;Yun Du
关键词:In-situ monitoring;Machine learning;Methane (CH4);Paddy fields;Water-soil-air environment factors
-
Centromere-size reduction and chromatin state dynamics following intergenomic hybridization in cotton
作者:Jinlei Han;Guanjing Hu;Yan Dai;Xin Zhang;Jingjing Tian;Jialiang Zhou;Xinqi Xu;Qi Chen;Xiaobing Kou;Lei Xu;Xinyu Wu;Ziying Sun;Jiahui Geng;Lin Li;Chenyu Qiu;Teame Gereziher Mehari;Baohua Wang;Hui Zhang;Xinlian Shen;Zhenzhen Xu;Jonathan F. Wendel;Kai Wang
关键词:(2-0-3)
-
Genomic insights into monensin resistance development in Eimeria tenella
作者:Xiaolong Gu;Sufang Fang;Hongbin Liu;Yubo Shi;Yuanyuan Zhang;Peng Wang;Ping Cui;Xinming Tang
关键词:Eimeria tenella;experimental evolution;genome resequencing;monensin;resistance pressure