• EI
  • Scopus
  • 中国科技期刊卓越行动计划项目资助期刊
  • 北大核心期刊
  • DOAJ
  • EBSCO
  • 中国核心学术期刊RCCSE A+
  • 中国精品科技期刊
  • JST China
  • FSTA
  • 中国农林核心期刊
  • 中国科技核心期刊CSTPCD
  • CA
  • WJCI
  • 食品科学与工程领域高质量科技期刊分级目录第一方阵T1
中国精品科技期刊2020

利用玉米淀粉黄浆水发酵生产细菌纤维素的培养基优化

丁勇, 邵明亮, 罗仓学, 罗晓鸿, 刘琳, 陈思

丁勇, 邵明亮, 罗仓学, 罗晓鸿, 刘琳, 陈思. 利用玉米淀粉黄浆水发酵生产细菌纤维素的培养基优化[J]. 食品工业科技, 2016, (15): 193-197. DOI: 10.13386/j.issn1002-0306.2016.15.029
引用本文: 丁勇, 邵明亮, 罗仓学, 罗晓鸿, 刘琳, 陈思. 利用玉米淀粉黄浆水发酵生产细菌纤维素的培养基优化[J]. 食品工业科技, 2016, (15): 193-197. DOI: 10.13386/j.issn1002-0306.2016.15.029
DING Yong, SHAO Ming-liang, LUO Cang-xue, LUO Xiao-hong, LIU Lin, CHEN Si. Optimization of culture media for bacterial cellulose production by fermentation of corn starch wastewater[J]. Science and Technology of Food Industry, 2016, (15): 193-197. DOI: 10.13386/j.issn1002-0306.2016.15.029
Citation: DING Yong, SHAO Ming-liang, LUO Cang-xue, LUO Xiao-hong, LIU Lin, CHEN Si. Optimization of culture media for bacterial cellulose production by fermentation of corn starch wastewater[J]. Science and Technology of Food Industry, 2016, (15): 193-197. DOI: 10.13386/j.issn1002-0306.2016.15.029

利用玉米淀粉黄浆水发酵生产细菌纤维素的培养基优化

基金项目: 

榆林轻工绿色产业技术研发及示范基地(2012cxy1-9);

详细信息
    作者简介:

    丁勇(1974-),男,硕士,讲师,研究方向:食品发酵工程,E-mail:dingyong@sust.edu.cn。;

  • 中图分类号: TQ920.6

Optimization of culture media for bacterial cellulose production by fermentation of corn starch wastewater

  • 摘要: 玉米淀粉黄浆水是生产淀粉过程中排放的高浓度有机废水,以其作为Acetobacter xylinum DS398的基础培养基发酵细菌纤维素。采用Plackett-Burman设计和Box-Behnken响应面分析法对培养基成分进行优化,并对产物进行表征。以纤维素干重为响应值,从7个相关影响因素筛选出3个显著因子:蔗糖、磷酸二氢钾和乙醇。在此基础上,根据Box-Behnken响应面分析法确定以上三因素的最佳浓度。最优的玉米淀粉黄浆水培养基组分为:玉米黄浆水稀释比1∶4,蔗糖3.32 g/100 m L,CaCl20.3 g/100 m L,KH2PO40.12 g/100 m L,Mg SO40.05 g/100 m L,柠檬酸0.2 g/100 m L,乙醇1.50 m L/100 m L,细菌纤维素产量达到1.11 g/100 m L,为优化前的1.63倍。结果表明经优化后黄浆水培养基能够满足Acetobacter xylinum生长代谢的需要,细菌纤维素产量得到显著提高;同时傅立叶红外光谱图和场发射扫描电镜图显示产物是纯度较高的纤维素,微观结构与椰果相似。 
    Abstract: Corn starch wastewater is a kind of high concentration organic wastewater discharged from starch processing.The study focused on producing bacterial cellulose utilized those wastewater,and optimizing medium component via adopting the Plackett- Burman design method and the Box- Behnken response surface analysis.Further,the structure of bacterial cellulose( BC) obtained from fermentation of corn starch wastewater was described by Fourier transform infrared spectrometer( FTIR) and scanning electron microscopy( SEM). Cellulose dry weight was defined as response value,three significant factors,which were sucrose,monopotassium phosphate and ethanol,were selected through the Plackett- Burman experiment,then the respective optimum concentration of those factors was determined by response surface method( RSM). The improved medium composition was as follows: dilution ratio of corn starch wastewater was 1 ∶ 4,extra sucrose,CaCl_2,KH_2PO_4,MgSO_4,citric acid and ethanol were 3.32 g /100 m L,0.3 g /100 m L,0.12 g /100 m L,0.05 g /100 m L,0.2 g /100 m L,1.50 m L / L,respectively. Eventually,the yield of BC was 1.63 times than that before optimization,and reached1.11 g /100 m L. The results suggested that the postoptimality medium of wastewater could meet the growth and metabolism of Acetobacter xylinum DS398,hence the bacterial cellulose production were improved significantly.The micrographs of FTIR and SEM further illustrated that BC produced in medium of corn starch wastewater possesses high purity,and the product's microstructure may be similar to coconut.
  • [1] 贾士儒,欧竑宇,傅强.新型生物材料—细菌纤维素[J].食品与发酵工业,2001,27(1):54-58.
    [2]

    Wu Jyh-Ming,Liu Ren-Han.Cost-effective production of bacterial cellulose in static cultures using distillery wastewater[J].Journal of Bioscience and Bioengineering,2013,115(3):284-290.

    [3]

    Shah Nasrullah,Ul-Islam Mazhar,Khattak Waleed Ahmad,et al.Overview of bacterial cellulose composites:A multi-purpose advanced material[J].Carbohydrate Polymers,2013,98(2):1585-1598.

    [4]

    Zeng Xiaobo,Small Darcy P,Wan Wankei.Statistical optimization of culture conditions for bacterial cellulose production by Acetobacter xylinum BPR 2001 from maple syrup[J].Carbohydrate Polymers,2011,85(3):506-513.

    [5]

    Keshk Sherif M A S,Razek Taha M.A,Sameshima Kazuhiko.Bacterial cellulose pro-duction from beet molasses[J].African Journal of Biotechnology,2006,5(17):1519-1523.

    [6]

    Cakar Fatih,Ozer Islay,Aytekin A.Ozhan,et al.Improvement production of bacterial cellulose by semi-continuous process in molasses medium[J].Carbohydrate Polymers,2014,106:7-13.

    [7] 徐本梅.以菊粉为原料发酵生产细菌纤维素及细菌纤维素粉末制备[D].上海:东华大学,2011.
    [8]

    Huang Chao,Yang Xiaoyan,Xiong Lian,et al.Utilization of corncob acid hydrolysate for bacterial cellulose poduction by Gluconacetobacter xylinus[J].Apply Biochemical Biotechnology,2015,175(3):1678-1688.

    [9]

    Gomes Fabio P,Silva Nuno H.C.S,Trovatti Eliane,et al.Production of bacterial cellulose by Gluconacetobacter sacchari using dry olive mill residue[J].Biomass and bioenergy,2013,55:205-211.

    [10]

    Carreira Pedro,Mendes Joana A.S,Trovatti Eliane,et al.Utilization of residues from agro-forest industries in the production of high value bacterial cellulose[J].Bioresource Technology,2011,102(15):7354-7360.

    [11]

    Zhang Chunyang,Zhang Congju,Liu Jianguang,et al.Research progress on corn starch wastewater treatment process[A].New Technology of Agricultural Engineering(ICAE)[C],2011.

    [12] 王有乐,鹿玉琼,祁晓霞,等.淀粉废水资源化处理研究进展[J].安徽农业科学,2010,38(12):6471-6473,6514.
    [13] 徐伟,张妍,傅徐阳.淀粉废水发酵产细菌纤维素发酵条件的优化[J].食品工业科技,2012,20:184-186.
    [14]

    Hestrin S,Schramm M.Synthesis of cellulose by Acetobacter xylinum[J].Biochemical Journal,1954,58(2):345-352.

    [15] 欧竑宇,贾仕儒,马霞.细菌纤维素发酵培养基的优化[J].食品与发酵工业,2002,29(1):18-22.
    [16] 张俊娜,甘峰,李志西,等.果汁发酵生产细菌纤维素[J].食品科学,2012,33(13):240-243.
计量
  • 文章访问数: 
  • HTML全文浏览量: 
  • PDF下载量: 
  • 被引次数: 0
出版历程
  • 收稿日期:  2016-01-26

目录

    /

    返回文章
    返回