期刊文献+

吸附法去除低温水体中的磺胺类抗生素 被引量:9

Removal of Sulfa Antibiotics in Low Temperature Water by Adsorption Method
在线阅读 下载PDF
导出
摘要 针对畜禽养殖过程中使用磺胺类抗生素产生的水环境污染问题,考察天然矿物材料(火山渣)与资源转化材料(骨炭和菌糠)对4种磺胺类抗生素磺胺噻唑(ST)、磺胺甲基嘧啶(SM)、磺胺二甲嘧啶(SM2)和磺胺甲恶唑(SMX)的去除效果及影响因素.结果表明:3种材料对磺胺类抗生素的吸附效果为:菌糠>火山渣>骨炭;当水体中4种抗生素的质量浓度均为5mg/L时,菌糠对其吸附率>80%,吸附量为1.60 mg/g;采用质量分数为10%的Al_2(SO_4)_3改性火山渣和骨炭后,二者对4种抗生素的吸附率>60%,吸附量>0.24 mg/g;最佳吸附pH值为4~6;Fe^(3+),Mn^(2+),NH^+_4,Cl^-,硬度和碱度等对菌糠吸附磺胺类抗生素的吸附效果影响较大. In view of the water environment pollution caused by the use of the antibiotics in livestock and poultry breeding,we studied the removal effects and influencing factors of natural mineral materials(volcanic cinder)and resources transformation materials(bone black and fungus chaff)to the adsorption of four kinds of sulfa antibiotics:sulfathiazole(ST),sulfamethyldiazine(SM),sulfamethazine(SM2)and sulfamethoxazole(SMX).The results show that the adsorption effect of three kinds of materials is in the order of fungus chaff〉volcanic cinder〉bone black.When the mass concentration of four kinds of antibiotics is 5mg/L in the water,the adsorption rate of fungus chaff is more than 80%,and the adsorption capacity is 1.60mg/g.The adsorption rates of volcanic cinder and bone black which modified by the mass fraction of 10% Al2(SO4)3 are more than 60%,and the adsorption capacity is more than 0.24 mg/g.The best adsorption pH value is 4—6,Fe3+,Mn2+,NH4+,Cl-,solidity and alkalinity have a great influence on the adsorption of sulfa antibiotics by fungus chaff.
出处 《吉林大学学报(理学版)》 CAS CSCD 北大核心 2016年第3期663-669,共7页 Journal of Jilin University:Science Edition
基金 中央高校基本科研业务费专项基金(批准号:JCKY-QKJC32) 吉林省自然科学基金(批准号:20130101019JC)
关键词 吸附 低温水体 磺胺类抗生素 材料 adsorption low temperature water sulfonamides antibiotics material
作者简介 王佳丽(1991-),女,汉族,硕士研究生,从事地下水污染与修复的研究,E-mail:wjlraee@sina.com. 通信作者:张玉玲(1973-),女,蒙古族,博士,教授,从事地下水、土污染化学生物控制与修复的研究,E-mail:lingling29@126.com.
  • 相关文献

参考文献20

  • 1周启星,罗义,王美娥.抗生素的环境残留、生态毒性及抗性基因污染[J].生态毒理学报,2007,2(3):243-251. 被引量:264
  • 2郭欣妍,王娜,许静,单正军,叶波平,汤卫国.5种磺胺类抗生素在土壤中的吸附和淋溶特性[J].环境科学学报,2013,33(11):3083-3091. 被引量:54
  • 3吕颖,张玉玲,党江艳,王志忠,由民.抗生素在地下环境中的淋溶迁移能力分析[J].环境科学与技术,2013,36(6):21-25. 被引量:10
  • 4Boxall A B A, Blackwell P, Cavallo R, et al. The Sorption and Transport of a Sulphonamide Antibiotic in Soil Systems [J]. Toxicology Letters, 2002, 131(1/2): 19-28.
  • 5张从良,王岩,王福安.磺胺类药物在土壤中的微生物降解[J].农业环境科学学报,2007,26(5):1658-1662. 被引量:25
  • 6Huber M M, Canonica S, Park G Y, et al. Oxidation of Pharmaceuticals during Ozonation and Advanced Oxidation Processes [J]. Environ Sci Technol, 2003, 37: 1016-1024.
  • 7Radjenovic J, Petrovic M, Ventura F, et al. Rejection of Pharmaceuticals in Nanofiltration and Reverse Osmosis Membrane Drinking Water Treatment [J]. Water Res, 2008, 42(14): 3601-3610.
  • 8Sharma V K. Oxidative Transformations of Environmental Pharmaceuticals by Cl2, ClO2 , O3, and Fe ( VI ) : Kinetics Assessment [J]. Chemosphere, 2008, 73(9): 1379-1386.
  • 9Deborde M, Gunten U, yon. Reactions of Chlorine with Inorganic and Organic Compounds during Water Treatment : Kinetics and Mechanisms: A Critical Review [J]. Water Res, 2008, 42 (1/2) : 13-51.
  • 10Britto J M, Rangel M C. Advanced Oxidation Process of Phenolic Compounds in Industrial Wasterwater [J]. Quim Nova, 2008, 31: 114-122.

二级参考文献109

共引文献456

同被引文献102

引证文献9

二级引证文献82

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