吉林大学学报(理学版) ›› 2024, Vol. 62 ›› Issue (4): 1008-1016.

• • 上一篇    

地下水土著微生物菌群吸收维生素强化微生物降解烷烃效率分析

徐威庆1, 刘婷1, 王吉利1, 石宇佳1,2, 迟崇哲2, 张玉玲1   

  1. 1. 吉林大学 新能源与环境学院, 长春 130021;  2. 长春黄金研究院有限公司, 长春 130012
  • 收稿日期:2023-11-13 出版日期:2024-07-26 发布日期:2024-07-26
  • 通讯作者: 张玉玲 E-mail:lingling29@126.com

Analysis of Efficiency of  Vitamin on Enhancing Microbial Degradation of Alkanes by Indigenous Microbial Flora in Groundwater

XU Weiqing1,  LIU Ting1,  WANG Jili1, SHI Yujia1,2, CHI Chongzhe2, ZHANG Yuling1   

  1. 1. College of New Energy and Environment,  Jilin University,  Changchun 130021, China; 
    2. Changchun Gold Research Institute Co., Ltd., Changchun 130012, China
  • Received:2023-11-13 Online:2024-07-26 Published:2024-07-26

摘要: 针对我国东北某石油污染地下水低温、 低氧和寡营养的环境特点, 开展微生物降解烷烃实验. 通过批序静态实验确定刺激土著微生物发挥降解作用的营养基质成分, 考察维生素B(VB)、维生素C(VC)和维生素H(VH)对土著功能降解菌生长及微生物降解烷烃的影响. 实验结果表明: VB1,VB3,VC和VH对土著微生物的生长有抑制作用, VB6和VB12促进土著微生物生长; 维生素对微生物降解烷烃影响主要表现为VB6,VB12和VH对烷烃降解在一定程度上有促进作用, 维生素组分优化后烷烃降解率为73.91%~89.60%, 其中VB12促进作用最明显, 5 μg/L 的VB12促进微生物的生长效果最好; 当地下水中烷烃质量浓度为10 mg/L时, 在 10 ℃、 低氧条件下, 加入高效维生素的最佳营养基质7 d时烷烃降解率可达91.17%; 烷烃的降解规律符合二级降解动力学方程, R2均大于0.900; 相比于未受营养基质刺激作用, 当优化后的维生素高效刺激土著菌降解烷烃时, 烷烃优势菌属的相对丰度显著提高. 

关键词: 烷烃, 地下水, 生物刺激, 土著微生物, 维生素

Abstract: In view of the environmental characteristics of low temperature,  low oxygen and oligotrophic groundwater polluted by oil in a certain area of Northeast China,  an experiment on microbial degradation of alkanes was carried out. We determined the nutrient matrix components that stimulated the degradation of indigenous microorganisms through batch static experiments, and investigated the effects of vitamin B (VB),vitamin C  (VC) and vitamin H (VH) on the growth of indigenous functional degrading bacteria and microbial degradation of alkanes.  The experimental results show that VB1,VB3,VC and VH have inhibitory effects on the growth of indigenous microorganisms,  VB6 and VB12 promote the growth of indigenous microorganisms.  The main effects ofvitamins on microbial degradation of alkanes are that VB6,  VB12 and VH have a promoting effect on the degradation of alkanes to a certain extent,  the degradation rate of alkanes is 73.91%—89.60% after the optimization ofvitamin components, among them,  VB12 has the most obvious promoting effect, and 5 μg/L VB12 has the best  promoting effect on the growth of microorganisms. When the mass   concentration of alkane in  groundwater is 10 mg/L,   the degradation rate of alkanes can reach 91.17% after 7 d of adding  the optimal nutrient matrix of high-efficiencyvitamins under 10 ℃ and low oxygen conditions. The degradation law of alkanes conforms to the second-order degradation kinetic equation, R2 is above 0.900. Compared to the non nutrient matrix stimulation,  the relative abundance of alkane-dominant bacteria is significantly increased when the optimizedvitamins effectively stimulate the degradation of alkanes by indigenous bacteria.

Key words: alkane,  , groundwater,  , biological stimulation,  , indigenous microorganisms, vitamin

中图分类号: 

  • X523