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生物基细菌纤维素/膨润土无机凝胶复合材料的制备 被引量:1

Preparation of bio-based bacterial cellulose/inorganic gel of bentonite composite
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摘要 通过向以水稀释3倍体积的玉米芯水解液中加入膨润土无机凝胶,利用木醋杆菌原位发酵技术制得细菌纤维素/膨润土无机凝胶复合材料,并对其微观形貌进行表征,对发酵液的pH、产量、糖转化率和持水量进行了测试。结果表明:扫描电子显微镜照片显示膨润土无机凝胶吸附于细菌纤维素的表面和孔内;发酵液的pH随膨润土无机凝胶添加量的增大而上升并最终保持在8左右;产量随膨润土无机凝胶添加量的增大而增大;糖转化率随膨润土无机凝胶添加量的增大而减小;复合材料的持水量随着膨润土无机凝胶添加量的增大而减小。 Bio-based bacterial cellulose( BC) / inorganic gel of bentonite( IGB) composite was prepared by adding IGB into corncob hydrolysate,which was pre-diluted three multiples with water,and then in situ fermented by Acetobacter xylinum. Micro-morphological characteristics of the product were characterized.Yield and water holding capacity of the product,inversion of the saccharides as well as p H value of the fermentation broth were examined. The SEM images showed that the IGB is adsorbed on the surface of the BC as well as in the pores of the BC. Moreover,with the increase of addition amount of IGB,the p H value of the fermentation broth raises and finally maintains around 8,yield of the product increases,while inversion of the saccharides and water holding capacity of the product decreases.
出处 《日用化学工业》 CAS CSCD 北大核心 2016年第1期39-43,共5页 China Surfactant Detergent & Cosmetics
基金 国家自然科学基金资助项目(51303181 51508547) "十二五"国家科技支撑计划资助项目(2012BAD32B07)
关键词 细菌纤维素 膨润土无机凝胶 改性 复合材料 bacterial cellulose inorganic gel of bentonite modification composite
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  • 1JOHNSON D C, WINSLOW A R. Bacterial cellulose has potential application as new paper coating [ J]. Pulp & Paper, 1990,64 ( 5 ) . 105 - 107.
  • 2VANDAMME E J, DE BAETS S, VANBAELEN A, et al. Improved production of baeterial cellulose and its applieation potential [ J ]. Polymer Degradation and Stability, 1998,59 ( 1 ) :93 -99.
  • 3DUBEY V, SAXENA C, SINGH L, et al. Pervaporation of binary water- ethanol mixtures through bacterial cellulose membrane [ J ]. Separation and Purifieation Technology ,2002,27 ( 2 ) : 163 - 171.
  • 4CHAO H, YANG XY, LIAN X, et al. Utilization of corncob acid hydroly- sate for bacterial cellulose production by Gluconacetobacter xylinus [ J]. Applied Biochemistry & Bioteehnology, 2015,175 (3) : 1678 - 1688.
  • 5YANG X Y, HUANG C, GUO H J, et al. Bioconversion of elephant grass (Pennisetum purpureum) acid hydrolysate to bacterial cellulose by Gluconacetobacter xylinus [ J ]. Journal of Applied Microbiology, 2013,115(4) :995 -1002.
  • 6ISIZAWA S, ARARAGI M. Chromogenicity of actinomycetes [ M ]. Tokyo : Toppan Co, 1976:43 - 65.
  • 7HESTRIN S, ASCHNER M, MAGER J. Synthesis of cellulose by resting cells of Acetobacter xylinum [ J]. Nature, 1947,159:64.
  • 8KRYSTYNOWICZ A, CZAJA W, WIKTOROWSKA - JEZIERSKA A, et al. Factors affecting the yield and properties of bacterial cellulose [J ]. Journal of Industrial Microbiology and Bioteehnology, 2002,29 (4) :189 -195.
  • 9余华荣,周灿芳,万忠,谭俊,陈厚彬.2011年广东荔枝产业发展现状分析[J].广东农业科学,2012,39(4):16-17. 被引量:19
  • 10SERAFICA G, MORMINO R, BUNGAY H. Inclusion of solid particles in bacterial cellulose [ J ]. Applied Microbiology and Biotechnology, 2002,58 (6) :756 - 760.

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