Insights into Agitated Bacterial Cellulose Production with Microbial Consortia and Agro-Industrial Wastes

被引:2
作者
Paez, Maria Augusta [1 ]
Casa-Villegas, Mary [1 ]
Aldas, Miguel [1 ]
Luna, Maribel [2 ]
Cabrera-Valle, Daniel [3 ]
Lopez, Orestes [3 ]
Fernandez, Danae [3 ]
Cruz, Maria Alejandra [4 ]
Flor-Unda, Omar [5 ]
Garcia, Mario D. [3 ]
Cerda-Mejia, Liliana [6 ]
机构
[1] Escuela Politec Nacl, Fac Ingn Quim & Agroind, Dept Ciencia Alimentos & Biotecnol, Quito 170517, Ecuador
[2] Escuela Politec Nacl, Fac Ingn Quim & Agroind, Dept Ciencias Nucl, Quito 170525, Ecuador
[3] Univ Tecn Ambato, Fac Ciencia Ingn Alimentos & Biotecnol, Carrera Biotecnol, Ambato 180206, Ecuador
[4] Univ Amer, Fac Ingn & Ciencias Aplicadas, Ingn Biotecnol, Quito 170125, Ecuador
[5] Univ Amer, Ingn Ind, Fac Ingn & Ciencias Aplicadas, Quito 170125, Ecuador
[6] Univ Tecn Ambato, Fac Ciencia Ingn Alimentos & Biotecnol, Carrera Alimentos, Ambato 180206, Ecuador
来源
FERMENTATION-BASEL | 2024年 / 10卷 / 08期
关键词
bacterial cellulose; agro-industrial wastes; agitated culture; microbial consortium; ACETOBACTER-XYLINUM; LIGNOCELLULOSIC BIOMASS; RICE BRAN; ACID; FERMENTATION; HYDROLYSATE; CULTURE; CULTIVATION; RESIDUES; GROWTH;
D O I
10.3390/fermentation10080425
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Bacterial cellulose (BC) is emerging as an attractive large-scale polymer due to its superior properties. The dominant static culture for BC fermentation by bacteria or microbial consortium results in low productivity. Agitated culture, as an industrially projected technique, has been widely investigated but exclusively for cellulose-producing bacterial strains. Addressing this concern and evaluating the potential of residues as feedstock, this study highlights the utilization of microbial consortium BA2 and seven agro-industrial wastes including cocoa husks, sugarcane bagasse and others. Remarkably, rice bran (RB) appears as a promising substrate, achieving 2.14 g/L (dry basis) and outperforming the traditional HS medium, evident from a 15-day fermentation. A complex interplay between oxygen availability, glucose consumption and BC yield was revealed; while orbital and magnetic stirring with forced air ventilation (AFV) showed low BC yields and early biomass saturation, 4.07 g/L (dry basis) was targeted by magnetic stirring at 100 rpm from the start using only headspace air. However, beyond controlled operating conditions, mechanical agitation and favorable cellulose adhesion to metal in the stirred tank bioreactor negatively affect BC yield. This pattern uncovers the need for a further approach to the design of bioreactors when the microbial consortium is considered.
引用
收藏
页数:20
相关论文
共 83 条
[31]   Improved production of bacterial cellulose through investigation of effects of inhibitory compounds from lignocellulosic hydrolysates [J].
Kim, Haeun ;
Son, Jemin ;
Lee, Jonghwa ;
Yoo, Hah Young ;
Lee, Taek ;
Jang, Min ;
Oh, Jong-Min ;
Park, Chulhwan .
GLOBAL CHANGE BIOLOGY BIOENERGY, 2021, 13 (03) :436-444
[32]   Bacterial cellulose production by Gluconacetobacter sp RKY5 in a rotary biofilm contactor [J].
Kim, Yong-Jun ;
Kim, Jin-Nam ;
Wee, Young-Jung ;
Park, Don-Hee ;
Ryu, Hwa-Won .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2007, 137 (1-12) :529-537
[33]   Fermentation of Rice Bran and Defatted Rice Bran for Butanol Production Using Clostridium beijerinckii NCIMB 8052 [J].
Lee, Jieun ;
Seo, Eunjong ;
Kweon, Dae-Hyuk ;
Park, Kimoon ;
Jin, Yong-Su .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2009, 19 (05) :482-490
[34]   Dilute acid hydrolysis of lignocellulosic biomass [J].
Lenihan, P. ;
Orozco, A. ;
O'Neill, E. ;
Ahmad, M. N. M. ;
Rooney, D. W. ;
Walker, G. M. .
CHEMICAL ENGINEERING JOURNAL, 2010, 156 (02) :395-403
[35]   Characterization of oxygen transfer conditions and their effects on Phaffia rhodozyma growth and carotenoid production in shake-flask cultures [J].
Liu, YS ;
Wu, HY ;
Ho, KP .
BIOCHEMICAL ENGINEERING JOURNAL, 2006, 27 (03) :331-335
[36]   Influence of working conditions upon Kombucha conducted fermentation of black tea [J].
Loncar, E. ;
Djuric, M. ;
Malbasa, R. ;
Kolarov, L. J. ;
Klasnja, M. .
FOOD AND BIOPRODUCTS PROCESSING, 2006, 84 (C3) :186-192
[37]   Influence of Date Syrup as a Carbon Source on Bacterial Cellulose Production by Acetobacter xylinum 0416 [J].
Lotfiman, Samaneh ;
Biak, Dayang Radiah Awang ;
Ti, Tey Beng ;
Kamarudin, Suryani ;
Nikbin, Saeid .
ADVANCES IN POLYMER TECHNOLOGY, 2018, 37 (04) :1085-1091
[38]   A synthetic medium for bacterial cellulose production by Acetobacter xylinum subsp sucrofermentans [J].
Matsuoka, M ;
Tsuchida, T ;
Matsushita, K ;
Adachi, O ;
Yoshinaga, F .
BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1996, 60 (04) :575-579
[39]   USE OF DINITROSALICYLIC ACID REAGENT FOR DETERMINATION OF REDUCING SUGAR [J].
MILLER, GL .
ANALYTICAL CHEMISTRY, 1959, 31 (03) :426-428
[40]   Critical parameters and procedures for anaerobic cultivation of yeasts in bioreactors and anaerobic chambers [J].
Mooiman, Christiaan ;
Bouwknegt, Jonna ;
Dekker, Wijb J. C. ;
Wiersma, Sanne J. ;
Ortiz-Merino, Raul A. ;
de Hulster, Erik ;
Pronk, Jack T. .
FEMS YEAST RESEARCH, 2021, 21 (05)