期刊文献+

兽药金霉素在畜禽粪便上的吸附特征研究 被引量:8

Sorption Characteristics of Veterinary Antibiotics Chlortetracycline on Manure
下载PDF
导出
摘要 通过振荡平衡吸附试验,研究了兽药金霉素在鸡粪和猪粪上的吸持特征并对其吸附机制和影响因素进行探讨.结果表明,金霉素能被畜禽粪便强烈吸附,吸附过程属于快速吸附,吸附等温线呈非线性,能用Freundlich模型很好地描述;雨水很难解吸被粪便吸附的金霉素,存在解吸迟滞现象,用甲醇、3 mol/L NaCl和3 mol/L MgCl23种溶液仅分别解吸出了18.3%-20.4%、18.7%-19.4%和55.7%-57.6%被粪便吸附的金霉素.金霉素在畜禽粪便上的吸附受pH和离子强度影响,随pH值和离子强度增大吸附量减少,二价钙离子体系比一价钠离子体系对吸附的影响大.表明有机质吸附和阳离子交换可能是金霉素在畜禽粪便上主要的吸附机制. The sorption characteristics of high-use tetracycline veterinary antibiotics-chlortetracycline(CTC) on pig manure and chicken manure were investigated in laboratory according to the OECD guideline 106. The results showed that CTC was strongly and rapidly adsorbed to the two manures and Freundlich model could describe preferably the CTC nonlinear sorption isotherms. The adsorbed CTC was difficult to be desorbed by rain with desorption H of 1.522 for pig manure and 1.329 for chicken manure, respectively. Only 18.3%-20.4% , 18.7%-19.4% and 55.7%-57.6% adsorbed CTC were desorbed by methanol, 3 mol/L NaCl and 3 mol/L MgCl2 . The sorption of CTC on manure were affected by solution pH and ionic strength, the amount of adsorbed CTC on manure decreased with an increase of pH value and ionic strength, and greater sorption effect in the Ca systems than the Na systems was observed. These results suggest that organic matter and cation exchange mainly contribute to the sorption of CTC on manure.
出处 《环境科学》 CAS CSCD 北大核心 2008年第5期1363-1368,共6页 Environmental Science
基金 江苏省自然科学基金项目(BK2006163) 江苏省农业科学院后备人才基金项目(028046110608)
关键词 兽药金霉素 吸附 解吸 猪粪 鸡粪 影响因素 chlortetracycline (CTC) sorption desorption pig manure chicken manure affected factors
  • 相关文献

参考文献22

  • 1Kolpin D W, Furlong E T, Meryer M T, et al. Parmaceuticals hormones, other organic wastewater contaminants in U. S. streams 1999-2000: a national reconnaissance [ J ]. Environ Sci Technol 2002,36(6) : 1202-1221.
  • 2Campagnolo E R, Johnson K R, Karpati A, et al. Antimicrobial residues in animal waste and water resources proximal to large-scale swine and poultry feeding operations [J]. Science of the Total Environment, 2002, 299( 1): 89-95.
  • 3Ingham E R, Coleman D C, Crossley D A Jr. Use of sulfamethoxazole-penicillin, oxytetracycline, carbofuran, carbaryl, naphthalene and temik to remove key organism groups in soil in a corn agro ecosystem[J]. J Sustain Agric, 1994, 4(3):7-30.
  • 4Halling-Surensen B, Sengelov G, Tjomelund J. Toxicity of tetracyclines and tetracycline degradation products to environmentally relevant bacteria, including selected tetracycline-resistant bacteria [ J ]. Archives of Environmental Contamination and Toxicology, 2002,42(2) : 263-271.
  • 5Allare S E, Castillo J D, Juneau V. Sorption kinetics of chlortetracycline and tylosin on sandy loam and heavy clay soils [ J]. Journal of Environmental Quality, 2006,35 (7-8) : 969-972.
  • 6Gu C, Karthikeyan K G. Interaction of tetracycline with aluminum and iron hydrous oxides[ J ]. Environmental Science & Technology, 2005,39(8) : 2660-2667.
  • 7Pouliquen H, Bris H L. Sorption of oxolinic acid and oxytetracycline to marine sediments [J]. Chemosphere, 1996,33(3):801-815.
  • 8Sithole B B, Guy R D. Models for tetracycline in aquatic environments. I. Interaction with bentonite clay sytems [ J ]. Water, Air, Soil Pollution, 1987, 32(3-4) : 303-314.
  • 9Porubcan L S, Serna C J, White J L, et al. Mechanism of adsorption of clindamycin and tetracycline by montmorillonite [ J]. Journal of Pharmaceutical Sciences,1978,67(8) : 1081-1087.
  • 10Kolz A C, Ong S K, Moorman T B. Sorption of tylosin onto swine manure[J]. Chemosphere,2005,60(2) : 284-289.

二级参考文献17

  • 1姚毅.活性污泥的表面特性与其沉降脱水性能的关系[J].中国给水排水,1996,12(1):22-26. 被引量:34
  • 2M J Swenson(美).家畜生理学[M].北京:科学出版社,1978.372.
  • 3M J.Swenson(美).家畜生理学[M].北京:科学出版社,1978.380.
  • 4Vogt K A, et al. Production, turnover, and nutrient dynamics of aboveand belowground ditriros of workj forests [J]. Advances in Ecological Research, 1983, 15: 303-373.
  • 5鲁索芸,等.植物根际生态学与根病生物防治进展[M].中国人民大学出版社,1990.
  • 6Duu Jong Lee, Sun F Lee. Measurement of bound water content insludge: The use of differential scanning calorimetry (DSC) [J]. J Chem Tech Biotechnol, 1995, 62:359-365.
  • 7Nicolas Katsiris, Alexandra Kouzell-Katsiri. Bound water content of biological sludges in relation to filtration and dewatering[J]. War Res, 1987, 21(11):1319-1327.
  • 8John T Novak, et al. Conditioning, Filtering, and expressing waste activated sludge[J]. J Environ Eag, 1999, 125(9):816-824.
  • 9Erdincler A, Vesilind P A. Effect of sludge ceell disruption on compactibility of biological sludges[J]. War Sci Tech, 2000,42(9): 119-126.
  • 10J Kopp, N Dichtl. Prediction of full-scale dewatering results of sewage sludges by the physical water distribution [J]. War Sci Tech, 2001, 43 (11):135-143.

共引文献17

同被引文献139

引证文献8

二级引证文献30

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