Inhibition Effects of Dilute-Acid Prehydrolysate of Corn Stover on Enzymatic Hydrolysis of Solka Floc

被引:14
|
作者
Kothari, Urvi D. [1 ]
Lee, Yoon Y. [1 ]
机构
[1] Auburn Univ, Dept Chem Engn, Auburn, AL 36849 USA
关键词
Inhibition; Cellulase; Hydrolysate; Tolerance; Xylo-oligomers; Lignin; Dilute-acid pretreatment; Degradation; Phenolic; Enzymatic hydrolysis; SACCHAROMYCES-CEREVISIAE; ACETIC-ACID; BETA-GLUCOSIDASE; SIMULTANEOUS SACCHARIFICATION; DEGRADATION-PRODUCTS; ETHANOL-PRODUCTION; FERMENTATION; PRETREATMENT; CONVERSION; CELLULOSE;
D O I
10.1007/s12010-011-9355-3
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Dilute-acid pretreatment liquor (PL) produced at NREL through a continuous screw-driven reactor was analyzed for sugars and other potential inhibitory components. Their inhibitory effects on enzymatic hydrolysis of Solka Floc were investigated. When the PL was mixed into the enzymatic hydrolysis reactor at 1:1 volume ratio, the glucan and xylan digestibility decreased by 63% and 90%, respectively. The tolerance level of the enzyme for each inhibitor was determined. Of the identified degradation components, acetic acid was found to be the strongest inhibitor for cellulase activity, as it decreased the glucan yield by 10% at 1 g/L. Among the sugars, cellobiose and glucose were found to be strong inhibitors to glucan hydrolysis, whereas xylose is a strong inhibitor to xylan hydrolysis. Xylo-oligomers inhibit xylan digestibility more strongly than the glucan digestibility. Inhibition by the PL was higher than that of the simulated mixture of the identifiable components. This indicates that some of the unidentified degradation components, originated mostly from lignin, are potent inhibitors to the cellulase enzyme. When the PL was added to a simultaneous saccharification and co-fermentation using Escherichia coli KO11, the bioprocess was severely inhibited showing no ethanol formation or cell growth.
引用
收藏
页码:1391 / 1405
页数:15
相关论文
共 50 条
  • [41] Characterization of mechanical pulverization/phosphoric acid pretreatment of corn stover for enzymatic hydrolysis
    Yu, Haitao
    Xiao, Weihua
    Han, Lujia
    Huang, Guangqun
    [J]. BIORESOURCE TECHNOLOGY, 2019, 282 : 69 - 74
  • [42] Evaluation of soluble fraction and enzymatic residual fraction of dilute dry acid, ethylenediamine, and steam explosion pretreated corn stover on the enzymatic hydrolysis of cellulose
    Qin, Lei
    Liu, Li
    Li, Wen-Chao
    Zhu, Jia-Qing
    Li, Bing-Zhi
    Yuan, Ying-Jin
    [J]. BIORESOURCE TECHNOLOGY, 2016, 209 : 172 - 179
  • [43] Effect of anatomical fractionation on the enzymatic hydrolysis of acid and alkaline pretreated corn stover
    Duguid, K. B.
    Montross, M. D.
    Radtke, C. W.
    Crofcheck, C. L.
    Wendt, L. M.
    Shearer, S. A.
    [J]. BIORESOURCE TECHNOLOGY, 2009, 100 (21) : 5189 - 5195
  • [44] Ethylene glycol based acid pretreatment of corn stover for cellulose enzymatic hydrolysis
    Xue, Fengyang
    Li, Wenzhi
    An, Shengxin
    Li, Cunshuo
    Li, Xu
    Wu, Mingwei
    Wei, Xiuzhi
    [J]. RSC ADVANCES, 2021, 11 (23) : 14140 - 14147
  • [45] Study of the enzymatic activity inhibition on the saccharification of acid pretreated corn stover
    Wojtusik, Mateusz
    Villar, Juan C.
    Zurita, Mauricio
    Ladero, Miguel
    Garcia-Ochoa, Felix
    [J]. BIOMASS & BIOENERGY, 2017, 98 : 1 - 7
  • [46] Enhancing enzymatic hydrolysis of corn cob, corn stover and sorghum stalk by dilute aqueous ammonia combined with ultrasonic pretreatment
    Xu, Qin-Qin
    Zhao, Meng-Jiao
    Yu, Zhen-Zi
    Yin, Jian-Zhong
    Li, Guo-Min
    Zhen, Meng-Yuan
    Zhang, Qiao-Zhi
    [J]. INDUSTRIAL CROPS AND PRODUCTS, 2017, 109 : 220 - 226
  • [47] Improved Xylan Hydrolysis of Corn Stover by Deacetylation with High Solids Dilute Acid Pretreatment
    Chen, Xiaowen
    Shekiro, Joseph
    Elander, Rick
    Tucker, Melvin
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2012, 51 (01) : 70 - 76
  • [48] Dilute sulfurous acid pretreatment and subsequent enzymatic hydrolysis of corn cobs
    Kharina, M., V
    Loginova, I., V
    Petukhova, E., V
    Meshcheryakova, M. N.
    [J]. 2ND INTERNATIONAL SCIENTIFIC CONFERENCE AGRIBUSINESS, ENVIRONMENTAL ENGINEERING AND BIOTECHNOLOGIES ( AGRITECH-II-2019), 2020, 421
  • [49] Kinetic Modelling and Experimental Studies for the Effects of Fe2+ Ions on Xylan Hydrolysis with Dilute-Acid Pretreatment and Subsequent Enzymatic Hydrolysis
    Wei, Hui
    Chen, Xiaowen
    Shekiro, Joseph
    Kuhn, Erik
    Wang, Wei
    Ji, Yun
    Kozliak, Evguenii
    Himmel, Michael E.
    Tucker, Melvin P.
    [J]. CATALYSTS, 2018, 8 (01):
  • [50] Enzymatic hydrolysis of corn stalk by dilute acid-steam explosion
    Li, D. -M.
    Feng, Y. -J.
    Yuan, Y. -X.
    [J]. 2011 AASRI CONFERENCE ON ARTIFICIAL INTELLIGENCE AND INDUSTRY APPLICATION (AASRI-AIIA 2011), VOL 4, 2011, : 37 - 42