期刊文献+

废水可生物降解COD组分2种表征方法的比较 被引量:2

Comparison of two methods for characterising biodegradable COD of wastewater
在线阅读 下载PDF
导出
摘要 利用自行开发的混合呼吸速率测量仪在接种污泥的条件下对重庆某城市污水处理厂污水进行了呼吸速率测试(短期BOD测试,以呼吸速率测量重新进入内源呼吸阶段为结束);同时应用美国产BI-2000电解质呼吸仪在不接种污泥的条件下对该污水进行了BOD测试(长期BOD测试,理论上以污水中所有有机物矿化为结束)。对2种测试方法及其结果进行了比较,结果表明,2种方法得到的BCOD存在很大差异,短期BOD测试方法得到的结果仅为长期BOD测试方法得到的结果的40%~60%。通过批式呼吸测量方法测定了原废水中的活性异养微生物浓度XH(0),结果表明,XH(0)与BCODst之和与BCODlt比较接近,两者之比在0.88~1.02之间,平均值为0.94。 For the wastewater in a certain wastewater treatment plant in Chongqing,its respiration rate under seeded sludge condition was measured by the self-developed respirometer and the end of this short-term BOD test was defined as the time when endogenous respiration restarted;besiedes,BI-2000 electrolytic respirometer was utilized to test BOD under un-seeded sludge condition and this long-term BOD test is theoretically ended with organism mineralized.The comparation between the results of the two experiment methods show that,the BCOD obtained by the two methods is quite different and the short-term BOD measurement result was only 40%-60% of the long-term BOD measurement result.The concentration of heterotrophic microorganisms,XH(0),of the raw wastewater was tested through the batch respirometry.The result showed that the ratio of the sum of XH(0) and BCODst to BCODlt was between 0.881.02 with an average of 0.94,indicating that the sum was closed to BCODlt.
出处 《环境工程学报》 CAS CSCD 北大核心 2009年第11期1969-1972,共4页 Chinese Journal of Environmental Engineering
基金 国家自然科学基金资助项目(50578166)
关键词 生化需氧量 短期BOD测试 长期BOD测试 BOD short-term BOD measurement long-term BOD measurement
  • 相关文献

参考文献13

  • 1张亚雷 李咏梅.活性污泥数学模型[M].上海:同济大学出版社,2002..
  • 2Mamais D. , Jenkins D. , Pitt P. A rapid physical chemical method for the determination of readily biodegadable soluble COD in municipal wastewater. Wat. Res. , 1993,27 ( 1 ) : 195 - 197.
  • 3Cokgor E. U. ,Sozen S. ,Orhon D. ,et al. Respirometric analysis of activated sludge behaviour-1 Assement of readily biodegradable substrate. Wat. Sci. Tech. , 1998,32 (2) : 461 - 475.
  • 4Spanjers H. , Olsson G. , Vanrolleghem P. A. , et al. Determining influent short-term biochemical oxygen demand by combined respirometry and estimation. Wat. Sci. Tech. , 1993,28(11 - 12) :401 -404.
  • 5Weijers S. R. On BOD tests for the determination of biodegradable COD for calibrating activated sludge model No. 1. Wat. Sci. Tech. , 1993,39 (4) :177 - 184.
  • 6Cronje G. L. ,Beeharry A. O. ,Wentzel M. C. ,et al. Activated biomass in actvated sludge mixed liquor. Wat. Res. , 2002,36(2) :439 -444.
  • 7卢培利,张代钧,张欣,龙腾锐.自动混合呼吸测量仪的开发与验证[J].环境工程学报,2007,1(5):118-123. 被引量:12
  • 8Roeleveld P. J. ,van Loosdrecht M. C. M. Experience with guidelines for wastewater characterization in the Netherlands. Wat. Sci. Tech. ,1995,31 (2) :105 - 114.
  • 9Trosok S. P. , Driscoll B. T. , Luong J. H. T. Mediated microbial biosensor using a novel yeast strain for wastewater BOD measurement. Appl. Micro-biol. Biotechnol. ,2001, 56(3 -4) :550 -554.
  • 10Liu J., Mattiasson B. Microbial BOD sensors for wastewater analysis. Wat. Res. , 2002,36 ( 15 ) : 3786 3802.

二级参考文献24

  • 1叶裕才,王建龙,普利锋.生物传感器快速测定生化需氧量的研究[J].分析化学,2005,33(3):405-410. 被引量:15
  • 2卢培利,张代钧,张欣,龙腾锐.自动混合呼吸测量仪的开发与验证[J].环境工程学报,2007,1(5):118-123. 被引量:12
  • 3[1]Witteborg A.,Van Der Last A.,Hamming R.,et al.Respirometry for determination of the influent SS-concentration.Wat.Sci.Tech.,1996,33:311~323
  • 4[2]Spanjera H.,Vanrolleghem P.A.Respirometry as a tool for rapid characterization of wastewater and activated sludge.Wat.Sci.Tech.,1995,31(2):105~114
  • 5[3]Kong Z.,Vanrolleghem P.A.,Willems P.,et al.Simultaneous determination of inhibition kinetics of carbon oxidation and nitrification with a respirometer.Wat.Res.,1996,30(4):825~836
  • 6[4]Marsili-Libelli S.,Tabani F.Accuracy analysis of a respirometer for activated sludge dynamic modeling.Wat.Res.,2002,36:1181~1192
  • 7[5]Ricco G.,Tomei M.C.,Ramadori R.,et al.Toxicity assessment of common xenobiotic compounds on municipal activated sludge:Comparison between respirometry and Microtox.Wat.Res.,2004,38:2103~2110
  • 8[6]Tzoris A.,Fernandez-Peterz V.,Hall E.A.H.Direct toxicity assessment with a mini portable respirometer.Sensors and Actuators B,2005,105:39~49
  • 9[7]Brouwer H.,Klapwijk A.,Keesman K.J.Modelling and control of activated sludge plants on the basis of respirometry.Wat.Sci.Tech.,1994,30(4):265~274
  • 10[8]Yoong E.T.,Lant P.A.,Greenfield P.F.In situ respirometry in an SBR treating wastewater with high phenol concentrations.Wat.Res.,2000,34(1):239~245

共引文献36

同被引文献29

  • 1卢培利,张代钧,张欣,龙腾锐.自动混合呼吸测量仪的开发与验证[J].环境工程学报,2007,1(5):118-123. 被引量:12
  • 2Henze M., Gujer W., Mino T.,et al. Activated Sludge Models ASM1, ASM2, ASM2D and ASM3. London, UK: IWA Publishing, 2000.
  • 3Lindblom E. , Press-kristensen K. , Avanrolleghem P. , et al. Dynamic experiments with high bisphenol--A concen- trations modeled with an ASM model extended to include a separate XOC degrading microorganism. Water Research, 2009, 43(13) : 3169-3176.
  • 4Baek S. H. , Jeon S. K. , Pagilla K. Mathematical model- ing of aerobic membrane bioreactor (MBR) using activated sludge model No. 1 ( ASM ). Journal of Industrial and Engi- neering Chemistry, 2009, 15 (6) :835-840.
  • 5Ni B. J. , Yu H. Q. , Sun Y. J. Modeling simultaneous autotrophic and heterotrophic growth in aerobic granules. Water Research, 2008, 42 ( 6-7 ) : 1583-1594.
  • 6Janus T. , Ulanicki B. Modeling SMP and EPS formation and degradation kinetics with an extended ASM3 model. Desalination, 2010, 261 (1-2) : 117-125.
  • 7PaiT. Y. , ChangH. Y. , WanT. J. , etal. Using an ex- tended activated sludge model to simulate nitrite and nitrate variation in TNCU2 process. Applied Mathematical Model- ing, 2009,33 ( 11 ) :4259-4268.
  • 8Lubello C. , Caffaz S. , Gori R. , et al. A modified activa- ted sludge model to estimate solids production at low and high solids retention time. Water Research, 2009, 43 (18) :4539-4548.
  • 9Fenu A., Guglielmi G., Jimenez J., et al. Activated sludge model (ASM) based modelIing of membrane biore- actor (MBR) processes: A critical review with special re- gard to MBR specificities. Water Research, 2010, 44 ( 15 ) :4272-4294.
  • 10Nopens I. , Batstone D. J. , Copp J. B. , et al. An ASM1 ADM model interface for dynamic plant-wide simulation Water Research, 2009, 43 ( 7 ) : 1913-1923.

引证文献2

二级引证文献2

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