期刊文献+

不同预处理方法对剩余污泥性质的影响研究 被引量:71

Impacts of Different Pretreatments on Characteristics of Excess Sludge
在线阅读 下载PDF
导出
摘要 研究了3种污泥预处理方法(酸、碱和热处理)对污泥性质的影响.结果表明,3种处理方法对污泥均有一定破碎作用,其中碱处理的破碎效果最好,污泥的破碎率最大(约达58.46%),释放的SCOD最高(2 934.9 mg/L).处理后污泥的溶解性有机物的主要成分为蛋白质、碳水化合物和挥发性脂肪酸(三者之和约占总量的80%~90%),碱处理污泥的溶解性蛋白质增加最多(2 058.6 mg/L),而溶解性碳水化合物则是热处理污泥的增加值最大(353.2 mg/L).3种污泥预处理方法均会降低污泥的SS和VSS,其中碱处理效果最好,两者的减少量分别达到25.32%和38.84%,而酸处理效果最差,仅9.05%和1.80%.粒径分析表明,酸、碱处理会减小污泥的粒径、增加污泥的比表面积和提高污泥粒径的均匀性.本研究还对3种预处理方法对污泥的融胞机理进行了分析. The impacts of three pretreatments (acid, alkaline and thermal treatments) on the characteristics of sludge were discussed. The results showed that the three pretreatments could disintegrate the sludge and the effectiveness of alkaline treatment was the maximum (about 58.46%) and its SCOD release was also the maximum (2934.9 mg/L). The main compositions of soluble organics were proteins, carbohydrates and volatile fatty acids (about 80% ~ 90%, together). The increase of soluble proteins in the alkaline treated sludge was the maximum (2 058.6 mg/L), while the increase of soluble carbohydrates in the thermal treated sludge was the maximal (353.2 mg/L). The SS and VSS of sludge were decreased by the treatments and the effectiveness of alkaline treatment was the best and that of acid treatment was the worst. The particle size distribution of sludge showed acid and alkaline treatments could decrease the particle size and increase the consistency of sludge. The solublized mechanism of the three pretreatments was also discussed.
出处 《环境科学》 EI CAS CSCD 北大核心 2008年第2期327-331,共5页 Environmental Science
基金 国家自然科学基金项目(50621804)
关键词 酸处理 碱处理 热处理 剩余污泥 acid treatment alkaline treatment thermal treatment excess sludge
  • 相关文献

参考文献12

  • 1马娜,陈玲,熊飞.我国城市污泥的处置与利用[J].生态环境,2003,12(1):92-95. 被引量:94
  • 2Weemaes M P J, Verstraete W H. Evaluation of current wet sludge disintegration techniques [J]. J Chem Technol Biot, 1998, 73: 83- 92.
  • 3Parkin B G F, Owen W. Fundamentals of anaerobic digestion of wastewater sludges [J]. J Environ Eng ASCE, 1986, 112(5) : 867- 920.
  • 4Mullar J. Disintegration as a key-step in sewage sludge treatment [J]. Wat Sci Technol, 2000, 41(8) : 123-130.
  • 5王治军,王伟.剩余污泥的热水解试验[J].中国环境科学,2005,25(B06):56-60. 被引量:62
  • 6Inagaki N, Suzuki S, Takemura K, et al. Enhancement of anaerobic sludge digestion by thermal alkaline pre-treatment [ A]. Proc of the 8^th International Conference on Anaerobic Digestion, May 25-29, Sendai, Japan: 1997. 252-255.
  • 7APHA. Standard methods for the examination of wastewater [ M]. 18^th ed, Washington, D C, USA: 1992.
  • 8Lowry O H, Rowebrough N J, Farr A L, et al. Protein measurement with the folin phenol reagent [J]. J Biological Chemistry, 1951, 193: 265-275.
  • 9Dubois M, Gilles K A, Hamilton J K, et al. Colorimetric method for determination of sugars and related substances [J]. Analytical Chemistry, 1956, 28: 350-356.
  • 10Tiehm A, Nickel K, Zellhorn M, et al. Ultrasonic waste activated sludge disintegration for improving anaerobic stabilization [J]. Wat Res, 2001, 35(8): 2003-2009.

二级参考文献23

共引文献153

同被引文献763

引证文献71

二级引证文献382

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