期刊文献+

城市污泥中重金属镉对苏云金杆菌发酵的影响机制 被引量:3

Effects of heavy metal cadmium on Bacillus thuringiensis fermentation in sewage sludge
在线阅读 下载PDF
导出
摘要 为揭示苏云金杆菌(Bacillus thuringiensis,简称Bt)富集重金属的可行性,考察重金属对Bt发酵的影响,以生物毒性较大的重金属镉(Cd)为研究对象,以城市污泥为培养基,研究了添加Cd(II)对Bt生长和晶体蛋白合成的影响,分析了Bt发酵过程中Cd有效态质量浓度的变化,利用傅立叶红外光谱(FTIR)和X线光电子能谱(XPS)初步探讨了Cd(II)在Bt表面吸附的作用机制。结果表明:培养基中外加Cd(II)对Bt生长的影响主要取决于Cd有效态质量浓度,污泥培养基在支持Bt生长和降低重金属有效态质量浓度上均明显优于常规培养基;Bt对Cd(II)有较好的耐受性,当Cd有效态质量浓度在20 mg.L-1以下时,Bt能较好地完成生长代谢过程;光谱学分析表明Bt对Cd(II)有少量吸附,吸附位点主要为羟基,少量C=O基团也可与吸附反应,可有效降低重金属的生物有效性。 In order to reveal the potential of heavy metals bioaccumulation by Bacillus thuringiensis(Bt)and investigate the effect of heavy metals on Bt fermentation,cadmium(Cd)was chosen as research object in this paper for its high biological toxicity to human beings.The effect of cadmium ions on the growth curves variation and the crystal proteins synthesis of Bt were investigated with sewage sludge as medium.The variations of available cadmium were measured during Bt fermentation.The adsorption mechanism of cadmium ions on Bt cells was also discussed by means of Fourier transform infrared spectroscopy(FTIR)and X-ray photoelectron spectroscopy(XPS).The results show that the effect of heavy metals on Bt growth depends on the available concentration of heavy metals,and sewage sludge is superior to commercial medium on supporting Bt growth metabolism and reducing the available heavy metals.Bt can resist efficiently with available cadmium concentration as high as 20 mg.L-1 Spectroscopy analysis indicates that Bt cells can reduce the bioavailability of cadmium by adsorbing the cadmium ions on their surfaces.The main adsorption sites are hydroxyl groups,and some carbonyl groups can also participate in the adsorption reaction.
作者 常明 周顺桂 孙启宏 摆亚军 陈晨 倪晋仁 CHANG Ming;ZHOU Shungui;SUN Qihong;BAI Yajun;CHEN Chen;NI Jinren(State Key Laboratory of Environmental Criteria and Risk Assessment,Chinese Research Academy of Environmental Sciences,Beijing 100012,China;The Key Laboratory of Water and Sediment Sciences,Ministry of Education,Department of Environmental Engineering,Peking University,Beijing 100871,China;Guangdong Key Laboratory of Agricultural Environment Pollution Integrated Control,Guangdong Institute of Eco-Environment and Soil Sciences,Guangzhou 510650,China)
出处 《生态环境学报》 CSCD 北大核心 2012年第3期524-530,共7页 Ecology and Environmental Sciences
基金 公益性行业科研专项(200809067) 广东省教育部产学研结合项目(2011A090200038) 广东省科技计划项目(2010B010900045)
关键词 苏云金杆菌 城市污泥 生物有效性 吸附 Bacillus thuringiensis cadmium sewage sludge bioavailability adsorption
  • 相关文献

参考文献18

  • 1INOUE S,SAWAYAMA S,OGI T,et al.Organic composition ofliquidized sewage sludge[J].Biomass&Bioenergy,1996,10(1):37-40.
  • 2TIRADO-MONTIEL M L,TYAGI R D,VALéRO J R.Wastewatertreatment sludge as raw material for Bacillus thuringiensis production[J].Water Research,2001,35(16):3807-3816.
  • 3VIDYARTHI A S,TYAGI R D,VALéRO J R,et al.Studies on theproduction of B.thuringiensis based biopesticides using wastewatersludge as a raw material[J].Water Research,2002,36:4850-4860.
  • 4CALVET R,BOURGEOIS S,MSAKY J J.Some experiments onextraction of heavy metals present in soil[J].International Journal ofEnvironmental Analytical Chemistry,1990,39:31-45.
  • 5TESSIER A,CAMPBELL P G,BLSSON M.Sequential extractionprocedure for the speciation of particulatetrace metals[J].AnalyticalChemistry,1979,51(7):844-2851.
  • 6黄雅曦,李季,李国学,黄妍.污泥资源化处理与利用中控制重金属污染的研究进展[J].中国生态农业学报,2006,14(1):156-158. 被引量:32
  • 7TARVAINEN T,KALLIO E.Baselines of certain bioavailable andtotal heavy metal concentrations in Finland[J].Applied Geochemistry,2002,17:975-980.
  • 8常明,周顺桂,卢娜,倪晋仁.微生物转化污泥制备苏云金杆菌生物杀虫剂[J].环境科学,2006,27(7):1450-1454. 被引量:19
  • 9PRASAD M N V.Cadmium toxicity and tolerance in vascular plants[J].Environmental and Experimental Botany,1995,35(4):525-545.
  • 10CLESCERI L S,GREENBERG A E,TRUSSELL R R.StandardMethods for the Examination of Water and Wastewater[M].AmericanPublic Health Association(APHA).Washington D C:Nabu Press,1989.

二级参考文献44

共引文献49

同被引文献50

  • 1文雅,冷艳,李师翁.微生物重金属耐受性及其机制的研究进展[J].环境科学与技术,2020(9):79-86. 被引量:11
  • 2杜良,李烨,王萍,张东.铀污染土壤生物修复研究进展[J].环境工程,2013,31(S1):543-546. 被引量:13
  • 3林毅,方光伟,蔡丽希,彭锟.耐受重金属微生物资源的筛选与分子鉴定[J].泉州师范学院学报,2005,23(2):73-76. 被引量:7
  • 4刘爱民,黄为一.应用红外方法探讨耐镉菌株高积累Cd^(2+)的机理[J].环境科学学报,2005,25(11):1502-1506. 被引量:18
  • 5Carvalho F P, Oliveira J M, Malta M. Analyses of radionuclides in soil, water, and agriculture products near the Urgeiric, a uranium mine in Portugal [ J ]. Journal of Radioanalytical and Nuclear Chemistry, 2009, 281 (3) : 479-484.
  • 6Choiniere A M, Payne R F, Knaack C M. Distribution of uranium, plutonium, and 241Am in soil samples from Idaho national laboratory [ J ]. Journal of Radioanalytical and Nuclear Chemistry, 2009, 282(3): 1013-1017.
  • 7Gomez C, Bosecker K. Leaching heavy metals from contaminated soil by using Thiobacillus ferrooxidans or Thiobacillus thiooxidans [ Jl. Geomicrobiology Journal, 1999, 16 (3) : 233-243.
  • 8Agate A D. Recent advances in microbial mining [ J ]. World Journal of Microbial Biotechnology, 1996,12 (5) : 487-495.
  • 9Rawlings D E, Silver S. Mining with microbes [ J ]. Biotechnology, 1995, 13(4) : 773-778.
  • 10Strandberg G W, Shumate S E, Parrott J R. Microbial cells as biosorbents for heavy metals: Accumulation of uranium by Saecharomyces Cerevisiae and Pseudomonas aeruginosa [ J ]. Applied and Environmental Microbiology, 1981, 41 ( 1 ) : 237- 245.

引证文献3

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部