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黄原胶降解菌BIT-BJ001培养条件的优化
引用本文:刘建勋,周理志,相建民,常泽亮,谢英,刘滢,杨平,王平,赵静,梅晓丹.黄原胶降解菌BIT-BJ001培养条件的优化[J].微生物学杂志,2010,30(4):96-100.
作者姓名:刘建勋  周理志  相建民  常泽亮  谢英  刘滢  杨平  王平  赵静  梅晓丹
作者单位:1. 中石油塔里木油田分公司,新疆库尔勒塔里木指挥部油气工程研究院,新疆,库尔勒,841000
2. 大连百奥泰科技有限公司研发中心,辽宁,大连,116025
基金项目:中国石油天然气股份有限公司塔里木油田分公司科技项目 
摘    要:黄原胶在采油工程中有重要的应用,但其难降解性质给采油工程带来很多问题。从塔里木油田胡杨木根部样品中分离得到1株黄原胶降解菌BIT-BJ001,对其发酵条件的研究表明,此黄原胶降解菌最适培养条件为:黄原胶0.3%,酵母粉0.5%,Na+浓度0.8%,Mg2+浓度0.8%,初始pH值为10,温度60℃。菌种BIT-BJ001降解黄原胶的能力与发酵时间、发酵液中还原糖浓度有关,发酵96 h,黄原胶降粘率达到最高,发酵液中还原糖浓度过高,将抑制菌株对黄原胶的降解。

关 键 词:黄原胶  降解菌  降粘率

Optimization of Fermentation Conditions for Xanthan Gum-degrading Strain BIT-BJ001
LIU Jian-xun,ZHOU Li-zhi,XIANG Jian-min,CHANG Ze-liang,XIE Ying,LIU Ying,YANG Ping,WANG Ping,ZHAO Jing,MEI Xiao-dan.Optimization of Fermentation Conditions for Xanthan Gum-degrading Strain BIT-BJ001[J].Journal of Microbiology,2010,30(4):96-100.
Authors:LIU Jian-xun  ZHOU Li-zhi  XIANG Jian-min  CHANG Ze-liang  XIE Ying  LIU Ying  YANG Ping  WANG Ping  ZHAO Jing  MEI Xiao-dan
Institution:1. Petrochlna Tarim Oilfield Co. , Inst. of Oil and Gas Engln. , Kolar, Xinjiang 841000 ; 2. Dalian B ITeomics , Inc. Dalian High- Tech Zone, Dalian , 116025 )
Abstract:Xanthan gum plays important roles in oil production engineering, however, its features of difficuh-to-de- grade has created a lot of problems for more application in oil production engineering. A xanthan-degrading bacteria was isolated from the root of diverslform-leaved poplar (Populus euphratica ) of Tarim, and named BIT-BJ001. The optimal medium composition in shake scale for xanthan-degrading strain BIT-BJ001 were determined as follows: xanthan gum O. 3% , yeast extract 0.5% , Na + 0.6% , and Mg2 + 0.8% at the initial pH 10, the optimum culture temperature was 60℃ as well. The degradation ability was related to culture time and concentration of reducing sugar. The highest rate of viscosity decrease was appeared after 96 h fermentation, in addition, over-high concentration of reducing sugar would inhibit the strain to degrade xanthan gum in the medium.
Keywords:xanthan gum  degrading strain  viscosity reduction rate
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