期刊文献+

青霉素钠在土壤中的吸附和淋溶特性 被引量:1

Adsorption and Leaching of Sodium Penicillin in Soils
下载PDF
导出
摘要 分别采用振荡平衡法和土柱淋溶法分析了青霉素钠在不同土壤中的吸附和淋溶特性及其影响因素。结果表明,25℃以下,3种供试土壤对青霉素钠的吸附特性能用Freundlic模型进行较好的拟合,江西红壤、太湖水稻土和东北黑土的吸附常数KF分别为30.73、39.26和64.58 m L·g-1。偏最小二乘法(PLS)分析表明土壤黏粒含量和有机质含量是影响土壤吸附青霉素钠的主要因素。供试土壤对青霉素钠的吸附自由能变化值均<40 k J·mol-1,该吸附过程主要属于物理吸附,吸附能力由大到小依次为东北黑土、太湖水稻土和江西红壤。土柱淋溶试验结果显示,土壤有机质含量和黏粒含量亦是影响淋溶过程的主要因素,青霉素钠在土壤剖面中的迁移能力较弱,3种土壤淋溶性能由大到小依次为江西红壤、太湖水稻土和东北黑土。 Adsorption and leaching of sodium penicillin in soils and their affecting factors were studied with the vibrating equilibrium method and the column leaching method. Results show that adsorptions of the substance in red soil from Jian gxi, paddy soil from Taihu and black soil from Northeast China at 25℃ or below,were fairly well fitted with the Freundlic model with adsorption constant being 30.73, 39.26 and 64?58 mL·g-1 , respectively. PLS ( partial least squares) analysis reveals that soil clay and organic matter were the key factors affecting soil adsorption of sodium penicillin in the soils. Free energies of sodium penicillin adsorption in all the three soils were less than 40 kJ·mol-1 , suggesting that the adsorp?tion belonged to the type of physical adsorption. The soils followed an order of Northeast China black soil 〉 Taihu region paddy soil〉 Jiangxi red soil in terms of sodium penicillin adsorption capacity. The leaching experiment indicates that the content of soil clay and the content of organic matter are also the two factors affecting leaching of sodium penicillin in soils, and that the three soils followed an order of Jiangxi red soil〉Taihu region paddy soil〉Northeast China black soil in terms of sodium penicillin movability in the soil profiles.
出处 《生态与农村环境学报》 CAS CSCD 北大核心 2014年第6期749-753,共5页 Journal of Ecology and Rural Environment
基金 环保公益性行业科研专项(201209024) 江苏省自然科学基金青年基金(BK20130102)
关键词 青霉素钠 吸附 淋溶 土壤 sodium penicillin adsorption leaching soil
  • 相关文献

参考文献20

二级参考文献146

共引文献403

同被引文献21

  • 1刁晓平,孙英健,孙振钧,沈建忠.安普霉素对不同土壤中微生物活动的影响[J].生态环境,2004,13(4):565-568. 被引量:15
  • 2谢显传,张少华,王冬生,皇甫伟国,杨挺,赵健.阿维菌素对蔬菜地土壤微生物及土壤酶的生态毒理效应[J].土壤学报,2007,44(4):740-743. 被引量:25
  • 3LiZaixing(李再兴),TianBaokuo(田宝阔),ZuoJian’e(左剑恶),et al. Progress in treatment and disposaltechnology of antibiotic bacterial residues [J]. Environmental Engineering , 2012, 30 (2): 72-75.
  • 4THIELE.BRUHN S, BECK I. Effects of Sulfonamide andTetracycline Antibiotics on Soil Microbial Activity and MicrobialBiomass[J].Chemosphere,2005,59(4):457-465.
  • 5ZIELEZNY Y,GROENEWEG J,VEREECKEN H,et al.Impact ofSulfadiazine and Chlorotetracycline on Soil Bacterial CommunityStructure and Respiratory Activity[J].Soil Biology & Biochemisty,2006,38(8):2372-2380.
  • 6BOLEAS S,ALONSO C,PRO J,et al.Toxicity of the AntimicrobialOxytetracycline to Soil Organisms in a Multi.Species.Soil System(MS Center Dot 3) and Influence of Manure Co.Addition[J].Journal of Hazardous Materials,2005,122(3):233-241.
  • 7MUYZER G,DEWAAL E C,UITTERLINDEN A G.Profiling ofComplex Microbial Populations by Denaturing Gradient Gel Elec.trophoresis Analysis of Polymerase Chain Reaction.AmplifiedGenes Coding for 16S rRNA[J].Applied Environmental Microbiol.ogy,1993,59(3):695-700.
  • 8WESTERGAARD K, MüLLER A K, CHRISTENSEN S, et al.Effects of Tylosin as a Disturbance on the Soil MicrobialCommunity[J]. Soil Biology and Biochemistry,2001,33 (15):2061-2071.
  • 9WATANABE T, ASAKAWA S, NAKAMURA A, et al. DGGEMethod for Analyzing 16S rDNA of Methanogenic Archaeal Com.munity in Paddy Field Soil[J].FEMS Microbiology Letters,2004,232(2):153-163.
  • 10YU Z,MORRISON M.Comparisons of Different Hypervariable Re.gions of Genes for Use in Fingerprinting of Microbial Communitiesby PCR.Denaturing Gradient Gel Electrophoresis[J].Applied andEnvironmental Microbiology,2004,70(8):4800-4806.

引证文献1

二级引证文献5

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