吉林大学学报(理学版) ›› 2019, Vol. 57 ›› Issue (3): 722-727.

• 环境科学 • 上一篇    

拉恩氏菌LRP3诱导形成碱式磷酸锌沉淀及其在Zn污染土壤修复中的作用

周野, 金香一,  张秀芳, 吴迪, 冷粟, 李明堂   

  1. 吉林农业大学 资源与环境学院, 长春 130118
  • 收稿日期:2018-06-15 出版日期:2019-05-26 发布日期:2019-05-20
  • 通讯作者: 李明堂 E-mail:limtdoc2008@163.com

Rahnella sp.LRP3 Induces Basic Zinc Phosphate Precipitation and Its Role in Zinc Contaminated Soil Remediation#br#

ZHOU Ye, JIN Xiangyi, ZHANG Xiufang, WU Di, LENG Su, LI Mingtang   

  1. College of Resource and Environmental Science, Jilin Agricultural University, Changchun 130118, China
  • Received:2018-06-15 Online:2019-05-26 Published:2019-05-20
  • Contact: LI Mingtang E-mail:limtdoc2008@163.com

摘要: 采用批式和土壤培养实验考察拉恩氏菌LRP3对Zn的磷酸盐矿物诱导及其在Zn污染土壤修复中的作用, 并进行X射线衍射、 扫描电子显微镜、 能谱及Fourier变换红外光谱分析. 结果表明, 菌株LRP3对Zn2+的最大耐受质量浓度为120 mg/L; 对溶液中Zn2+的去除率为菌体细胞(97.4%)>发酵液(88.2%)>无菌发酵液(81.6%); 菌株LRP3的发酵液可通过生物矿化作用诱导形成结晶良好的立方体状Zn2(OH)PO3矿物晶体; 菌株LRP3的发酵液加入土壤后可快速降低DTPA-Zn的质量比, 培养5 d后DTPA-Zn的质量比平均下降784%, 培养6 d后土壤中Zn的弱酸提取态和可氧化态的质量比分别下降72.5%和562%, 可还原态和残渣态的质量比分别增加85.1%和14.8%. 因此, 菌株LRP3对Zn2+具有较强的抗性和吸附能力, 可通过降解植酸释放磷酸根, 进一步诱导形成碱式磷酸锌矿物晶体, 从而降低土壤中Zn的生物有效性, 可用于Zn污染土壤的绿色可持续修复.

关键词: 磷酸盐矿化, 锌, 拉恩氏菌, 土壤重金属污染, 微生物修复

Abstract: The induction of zinc (Ⅱ)phosphate precipitation by Rahnella sp.LRP3 and its role in Zn contaminated soil were investigated by batch and soil culture experiments. Xray diffraction, scanning electron microscope, energy spectrum and Fourier transform infrared spectroscopy were analyzed. The results show that the maximum tolerable mass  concentration of strain LRP3 to Zn2+ is 120 mg/L. The removal rate of Zn2+ in solution by strain LRP3 is bacterial cell (974%)>the fermentation broth (882%)>bacteria free fermentation broth (816%). The fermentation broth of strain LRP3 can be induced to form cubic mineral crystal Zn2(OH)PO3 with good crystallization by biomineralization. The fermentation broth of
 strain LRP3 can rapidly reduce the mass ratio of DTPAZn after adding to soil. After 5 d of incubation, the mass ratio of DTPAZn decreases by 784% on average. After 6 d of incubation, the mass ratios of weak acid extractable state and oxidizable state of Zn in soil decrease by 72.5% and 56.2% , respectively, and the mass ratios of reductive state and residual state increase by 851% and 148%, respectively. Therefore, strain LRP3 has strong  resistance and adsorption capacity Zn2+. It can release phosphate by degrading phytic acid and further induce the Zn (Ⅱ)phosphate mineral crystal, which reduce the bioavailability of Zn in soil. So strain LRP3 can be applied in the green and sustainable remediation of Zn contaminated soil.

Key words: phosphate mineralization, zinc, Rahnella sp., heavy , metal pollution in soil, microbial remediation

中图分类号: 

  • X53