Effect of pH on metabolic pathway shift in fermentation and electro-fermentation of xylose by Clostridium autoethanogenum

被引:2
|
作者
Martinez-Ruano, Jimmy Anderson [1 ]
Suazo, Andres [1 ]
Veliz, Fabian [1 ]
Otalora, Fabian [1 ]
Conejeros, Raul [1 ]
Gonzalez, Ernesto [1 ,2 ]
Aroca, German [1 ]
机构
[1] Pontificia Univ Catolica Valparaiso, Sch Biochem Engn, Valparaiso, Chile
[2] Univ Complutense Madrid, Fac Chem Sci, Dept Chem & Mat Engn, Madrid, Spain
关键词
Clostridium autoethanogenum; Electro-fermentation; pH; Xylose; Acids and alcohols production; CARBON-MONOXIDE; ACID PRODUCTION; ETHANOL; ACETOBUTYLICUM; BATCH;
D O I
10.1016/j.jenvman.2023.119918
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Clostridium autoethanogenum can to convert waste gases (CO2, CO, H-2) and xylose from hydrolyzed biomass into acetate, lactate, formate, ethanol and 2,3-butanediol, being a candidate for the transformation of waste streams of lignocellulosic biorefineries. Electro-fermentation (EF) modify the pattern of traditional fermentations resulting in improved product yields as has been shown when using Clostridium strains. The aim of this work was to evaluate the influence of pH on microbial growth and product distribution during fermentation and EF of xylose by C. autoethanogenum DSM10061. Fermentation and EF were carried out in a H-type reactor at three controlled pH: 5.0, 5.5 and 5.8, and at a fixed potential of -600 mV (versus Ag/AgCl) in the EF. The experiments showed that maximum biomass concentration increased as the pH increased in fermentation and EF. In accordance with maximum biomass reached, the highest substrate conversion was observed at pH 5.8 for both systems, with 76.80 % in fermentation and 96.18 % in EF. Moreover, the highest concentrations of acetic acid (1.41 +/- 0.07 g L-1) and ethanol (1.45 +/- 0.15 g L-1) were obtained at the end of cultures in the EF at pH 5.8. The production of lactic and formic acid decreased by the application of the external potential regardless of the pH value, reaching the lowest productivity at pH 5.8. In contrast, the specific productivity of acetic acid and ethanol was lower in both fermentation and EF at the lowest pH. Furthermore, the presence of 0.06 g L-1 of 2,3-butanediol was only detected in EF at pH 5.8. The results revealed that EF modulated microbial metabolism, which can be explained by a possible increased generation of NADP+/NADPH cofactors, which would redirect the metabolic pathway to more reduced products.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Fermentation of xylose into acetic acid by Clostridium thermoaceticum
    Balasubramanian, N
    Kim, JS
    Lee, YY
    APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2001, 91-3 (1-9) : 367 - 376
  • [22] Fermentation of xylose into acetic acid by Clostridium thermoaceticum
    Niru Balasubramanian
    Jun Seok Kim
    Y. Y. Lee
    Applied Biochemistry and Biotechnology, 2001, 91-93 : 367 - 376
  • [23] 13C-Labelled Glucose Reveals Shifts in Fermentation Pathway During Cathodic Electro-Fermentation with Mixed Microbial Culture
    Salvatori, Gaia
    Giampaoli, Ottavia
    Marchetti, Angela
    Miccheli, Alfredo
    Virdis, Bernardino
    Sciubba, Fabio
    Villano, Marianna
    CHEMSUSCHEM, 2025, 18 (02)
  • [24] The effect of pH and redox potential on metabolic flux in the fermentation of inulin by Clostridium thermosuccinogenes.
    Sridhar, J
    Eiternan, MA
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1999, 217 : U170 - U171
  • [25] New insight into process pH regulation on caproate production from waste activated sludge acidogenic fermentation liquid by cathodic electro-fermentation
    Wu, Ping
    Cao, Qi-hao
    Kang, Guo-dong
    Qi, Dan
    Liu, Hong-bo
    Zhang, Sheng-hu
    Zhang, Hou-hu
    Liu, He
    JOURNAL OF CLEANER PRODUCTION, 2024, 471
  • [26] Increased Biobutanol Production by Mediator-Less Electro-Fermentation
    Engel, Mareike
    Holtmann, Dirk
    Ulber, Roland
    Tippkoetter, Nils
    BIOTECHNOLOGY JOURNAL, 2019, 14 (04)
  • [27] Sustainable Production of Biofuels and Biochemicals via Electro-Fermentation Technology
    Salar-Garcia, Maria Jose
    Ortiz-Martinez, Victor Manuel
    Sanchez-Segado, Sergio
    Valero Sanchez, Raul
    Saez Lopez, Antonia
    Lozano Blanco, Luis Javier
    Godinez-Seoane, Carlos
    MOLECULES, 2024, 29 (04):
  • [28] Optimization of a cathodic electro-fermentation process for enhancing co-production of butanol and hydrogen via acetone-butanol-ethanol fermentation of Clostridium beijerinckii
    Li, Jianzheng
    Zhang, Yafei
    Sun, Kai
    Liu, Wenbin
    Yan, Han
    Meng, Jia
    ENERGY CONVERSION AND MANAGEMENT, 2022, 251
  • [29] Temperature dependence of acids recovery from wastewater electro-fermentation
    Lu, Sidan
    Leininger, Aaron
    Jassby, David
    Hoek, Eric M. V.
    May, Harold D.
    Ren, Zhiyong Jason
    RESOURCES CONSERVATION AND RECYCLING, 2024, 203
  • [30] Electro-Fermentation for Biopolymers Production: Trends Determination with Bioinformatics Data
    Chernysh, Y.
    Bataltsev, Y.
    Shen, X. -J
    Bohdanovych, O.
    Yakhnenko, O.
    JOURNAL OF ENGINEERING SCIENCES-UKRAINE, 2022, 9 (02): : H1 - H8