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金属离子对嗜热菌BF80生长及苯酚降解的影响研究
引用本文:杨峰晓,唐 赟.金属离子对嗜热菌BF80生长及苯酚降解的影响研究[J].微生物学通报,2008,35(6):0876-0881.
作者姓名:杨峰晓  唐 赟
作者单位:西华师范大学生命科学学院,南充,637002
基金项目:四川省应用基础研究计划
摘    要:探测了17种金属离子对嗜热菌BF80菌生长和降解苯酚的影响.结果表明:与对照相比,0.01%的Cu2 、Zn2 、CO2 、Ba2 、Hg2 、Ni2 、Al 0和Al3 对嗜热菌BF80有强抑制作用;Cr2 对嗜热菌BF80的苯酚降解特性有强抑制作用,而其生长量只受到一定的抑制作用;Sn2 、Fe2 、Fe3 和Pn2 对嗜热菌BF80的生长和苯酚降解有一定抑制作用,该作用随金属粒子浓度的增加而增大;低浓度Mn2 和Mo2 可以使其生长量增大且促进苯酚降解,但超过0.1%的浓度则抑制其生长;Ca2 和Mg2 可以加速嗜热菌BF80的生长和降解苯酚的速率,但对苯酚的最大降解率却几乎没有影响;Mo2 和Mn2 的复合作用使嗜热菌BF80的生长量更大,但是苯酚降解率却比分别单独添加Mo2 和Mn2 时低.

关 键 词:金属离子  嗜热菌BF80  苯酚  生物降解  金属  离子对  嗜热菌  生长量  苯酚降解率  影响  研究  Strain  Phenol  Degradation  Cell  Growth  Metal  Ions  添加  复合作用  速率  粒子浓度  降解特性  抑制作用  照相  结果  降解苯酚
修稿时间:2007年10月16

Effect of Metal Ions on Cell Growth and Phenol Degradation of a Thermophilic Strain BF80
YANG Feng-Xiao and TANG Yun.Effect of Metal Ions on Cell Growth and Phenol Degradation of a Thermophilic Strain BF80[J].Microbiology,2008,35(6):0876-0881.
Authors:YANG Feng-Xiao and TANG Yun
Institution:College of Biological Sciences, China West Normal University, Nanchong 637002;College of Biological Sciences, China West Normal University, Nanchong 637002
Abstract:The effect on the growth and phenol degradation of the thermophilic strain BF80 by seventeen different metal ions were studied. The results showed that the metal ions certainly affected the growth and phenol degradation of the strain BF80. At the concentration of 0.01%, contrasting to the comparison, the growth and phenol degradation of the strain BF80 were restrained intensively by the metal ions of Cu2+, Zn2+, Co2+, Ba2+, Hg2+, Ni2+, Ag+, Al3+. The metal ions of Cr2+ restrained the phenol degradation of BF80 strongly while Cr2+ restrained the growth of BF80 faintly. The metal ions of Sn2+, Fe2+, Fe3+, Pn2+ restrained the growth and phenol degradation of the strain BF80 at a certain concentration, and the effect of inhibition increased with the increase of the concentrations of the metal ions. At the low concentration of Mn2+ or Mo2+, the growth and phenol degradation of the strain BF80 were increased, but if the concentration beyond the 0.1%, the growth and phenol degradation of the strain BF80 were inhibited. At the different concentration of Ca2+ or Mg2+, the growth of the strain BF80 were increased and the phenol degradation were accelerated, but the max rate of phenol degradation by BF80 was not influenced obviously. When the medium was added the mixture of metal ions of Mo2+ and Mn2+, the strain BF80 grew better, but the rate of the phenol degradation was lower than that of single Mo2+ and Mn2+.
Keywords:Metal ions  Thermophilic strain BF80  Phenol  Degradation
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