数字农科院2.0

The threshold of aeration intensity in micro-oxygen lactic acid fermentation and the underlying microbial mechanisms

文献类型: 外文期刊

作者: 曹起涛;;尹福斌;;连天境;;周谈龙;;蔡阳扬;;魏晓曼;;孙佳欣;;董红敏

关键词: agricultural waste; lactic acid; micro-oxygen; aeration threshold; microbial function

期刊名称: Journal of Environmental Management

ISSN: 0301-4797

年卷期: 2026 年

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: The unique contribution of this study lies in the systematic quantification of clear aeration intensity thresholds and their underlying microbial mechanisms for maximizing lactic acid (LA) production from completely untreated mixed agricultural wastes. Micro-oxygen aeration could improve LA yield from low cost agricultural wastes, yet its effectiveness is strongly dose-dependent. This study employed swine manure and apple waste as feedstocks to produce LA through micro-oxygen co-fermentation, systematically investigating the impacts of aeration intensity (0-2000 mL/L/d) on LA synthesis efficiency and microbial community structure. Results showed that aeration intensity greatly affected LA production and carbon source metabolic pathways. The optimal micro-oxygen aeration intensity-defined as the level yielding the highest peak LA concentration (23.1 g/L), was determined to be 1000 mL/L/d. Moderate micro-oxygen aeration promoted Lactobacillus dominance (52%), while excessive aeration shifted the community toward hydrolytic bacteria (e.g., Clostridium_sensu_stricto_1, Terrisporobacter), associated with increased carbon competition and potential respiratory dissipation,ultimately diminishing LA production. These findings identify an optimal aeration window for maximizing LA production from agricultural wastes and provide insights into microbial regulatory mechanisms, offering a theoretical basis for precise control of microbial consortia dynamics in high-value waste valorization-advancing sustainable bio-processes for environmental management and carbon-neutral organic acid production.

分类号:

  • 相关文献

[1]The driving role of extracellular polymeric substances in the bioelectrical conversion of petroleum hydrocarbons by rhizosphere microbial fuel cells: bioelectricity production, substrate bioconversion, microbial function and their network correlation. Lanmei Zhao,Yuru Wen,Lyu Can,Long Meng,Jian Liu,Dong Zhao. 2025

[2]Environmental Life Cycle Assessment Of Different Biorefinery Platforms Valorizing Municipal Solid Waste To Bioenergy, Microbial Protein, Lactic And Succinic Acid. Khoshnevisan, B, Tabatabaei, M, Tsapekos, P, Rafiee, S, Aghbashlo, M, Lindeneg, S, Angelidaki, I. 2020

[3]Mechanocatalytic Production Of Lactic Acid F.rom Glucose By Ball M illing. Li, LY, Yan, LL, Shen, F, Qiu, M, Qi, XH. 2017

[4]Mass transfer kinetics study for improving the uniform quality of lactic acid marinated pork (longissimus dorsi muscle). Liu C., Zhang C.. 2022

[5]Heat stress-induced mucosal barrier dysfunction is potentially associated with gut microbiota dysbiosis in pigs. Xia B., Wu W., Fang W., Wen X., Xie J., Zhang H.. 2022

[6]Biodetoxification Of Phenolic Inhibitors From L.ignocellulose Pretreatment Using Kurthia H uakuii Lam0618(T) And Subsequent Lactic Acid Fermentation. Xie, YJ, Hu, Q, Feng, GD, Jiang, X, Hu, JL, He, MX, Hu, GQ, Zhao, SM, Liang, YX, Ruan, ZY, Peng, N. 2018

[7]Production Of Short-Chain Carboxylic Acids By Co-Digestion Of Swine Manure And Corn Silage: Effect Of Carbon-Nitrogen Ratio. Cao, Q, Zhang, W, Zheng, Y, Lian, T, Dong, H. 2020

[8]Effects of organized soil cultivation on yield and quality of tomato in greenhouse. Zhang, ZB,He, CX. 2005

[9]Suspension stability and aggregation of multi-walled carbon nanotubes as affected by dissolved organic matters extracted from agricultural wastes. Li, Helian,Qiu, Yanhua,Wang, Xiaonuan,Liu, Wenhao,Ma, Yibing,Li, Helian,Chen, Guangcai,Xing, Baoshan,Chen, Guangcai,Ma, Yibing.

[10]Efficient Hydrolysis Of Cellulose To G.lucose In Water By A gricultural Residue-Derived Solid Acid Catalyst. Su, JL, Qiu, M, Shen, F, Qi, XH. 2018

[11]Preparation of methyl-esterified pectin oligosaccharides with antibacterial activity using fungus-derived bifunctional pectinase. Sheng Wang,Sunjia Ding,Kun Meng,刘晓青,Yuan Wang,Xiaolu Wang,Xing Qin,Huiying Luo,Bin Yao,Huoqing Huang,Tao Tu. 2022

[12]Improving production of lactic acid and volatile fatty acids from dairy cattle manure and corn straw silage: Effects of mixing ratios and temperature. Tianjing Lian,Wanqin Zhang,Qitao Cao,Shunli Wang,Hongmin Dong,Fubin Yin. 2022

[13]Revealing mechanism of micro-aeration for enhancing volatile fatty acids production from swine manure. Cao Q.,Zhang W.,Lian T.,Wang S.,Yin F.,Zhou T.,Wei X.,Dong H.. 2022

[14]Environmental safety risk for application of anaerobic fermentation biogas slurry from livestock manure in agricultural land in China. Wang X.,Yan X.,Li X.. 2021

[15]Fertilizer-Use Efficiency Of Farmers Using M.anure In Liaozhong County, C hina. Kusano, E, Yin, CB, Chien, HP. 2019

[16]Biochar combined with ferrous sulfate reduces nitrogen and carbon losses during agricultural waste composting and enhances microbial diversity. Peizhen Chen,Xiangqun Zheng,Weimin Cheng. 2022

[17]Editorial: Resource utilization of agricultural waste through bioprocess engineering for environmental sustainability. Junting Pan,Yeqing Li,Benyamin Khoshnevisan. 2023

[18]Phytotoxicity Removal Technologies for Agricultural Waste as a Growing Media Component: A Review. Cui W.,Bai Q.,Liu J.,Chen J.,Qi Z.,Zhou W.. 2024

[19]Performance, interaction, and metabolic pathway of novel dry–wet anaerobic digestion for treating high-solid agricultural waste. Yi Liang,Jiadong Yu,Zonglu Yao,Yuxuan Sun,Lixin Zhao. 2024

[20]A comparative review on the progress of thermochemical hydrogen production technologies from agricultural waste. Xinyi Zhang,Lili Huo,Zonglu Yao,Teng Xie,Yuxuan Sun,Ziyun Liu,Yanan Zhao,Lixin Zhao. 2024

作者其他论文 更多>>