期刊文献+

不同丙酸/乙酸对聚糖菌长/短期代谢的影响 被引量:8

Long-Term and Short-Term Effects of Propionic/Acetic Acid Ratios on Metabolism of Glycogen-Accumulating Organisms
在线阅读 下载PDF
导出
摘要 在3个SBR反应器(即SBR-A,SBR-C和SBR-E)中,以3种不同比例的丙酸/乙酸中长期驯化活性污泥使之富集聚糖菌,对丙酸/乙酸对聚糖菌的长期和短期代谢的影响进行了研究.结果表明,长期高丙酸/乙酸驯化导致聚糖菌厌氧消耗的糖原量和合成的聚β羟基烷酸酯(poly--βhydroxyalkanoates,PHA)的量都较少,在好氧段积累的糖原量和降解的PHA的量也较小,并且对聚糖菌的脱氢酶活性、生长速率及对有机酸的利用能力等都有抑制作用.当进水中的丙酸与乙酸的碳摩尔数相同时,单位生物量利用乙酸的速率较丙酸快.不同丙酸/乙酸对聚糖菌代谢的短期影响的研究表明,当进水中乙酸浓度突然提高时,长期以高丙酸/乙酸驯化的聚糖菌可以直接利用乙酸参与代谢,但长期以低丙酸/乙酸驯化的聚糖菌则无法快速利用丙酸.提高进水中丙酸/乙酸有可能成为有效抑制聚糖菌生长并提高增强生物除磷系统稳定性的一种策略. Three activated sludges enriched with glycogen accumulating organisms (GAO) were acclimatized respectively with different ratios of propionic to acetic acid(i.e.biomass SBR-A,C and E).The effect of different ratios of propionic/acetic acid on the metabolism of long-term cultivated GAO was investigated. Cultivated with high propionic/acetic acid ratio,GAO consumed less glycogen and synthesized less poly-β-hydroxyalkanoates(PHA) in the anaerobic phase,and in the aerobic phase accumulated less glycogen and degraded less PHA,and at the same time the microbial growth was lower.When the carbon mole of acetic acid equaled that of propionic acid in the influent,GAO utilized acetic acid faster than propionic acid.Batch tests were carried out with biomass SBR-A and SBR-E to study the transient response of long-term cultivated GAO to short-term change of propionic/acetic acid ratio.The GAO cultivated with a high propionic/acetic acid ratio was able to utilize acetic acid immediately when the concentration of aceticacid in the feed suddenly increased.But when the biomass cultivated with a low propionic/acetic acid ratio was feed with high ratio propionic/acetic acid wastewater,the propionic acid uptake rate was only 41.1% of the rate of the GAO long-term cultivated with high propionic/acetic acid.The sudden increase of propionic/acetic acid ratio could effectively inhibit the metabolism of GAO.
出处 《环境科学》 EI CAS CSCD 北大核心 2007年第9期1970-1974,共5页 Environmental Science
基金 国家自然科学基金项目(50408039) 国家高技术研究发展计划(863)项目(2004AA649330) 霍英东教育基金会资助项目(101080)
关键词 聚糖菌 乙酸 丙酸 增强生物除磷 glycogen accumulating organisms(GAO) acetic acid propionic acid enhanced biological phosphate removal(EBPR)
  • 相关文献

参考文献19

  • 1Cech J S, Hartman P. Competition between polyphosphate and polysaccharide accumulating bacterial in biological phosphorus removal systems[J]. Water Res, 1993. 27:1219 - 1225.
  • 2Saunders A M, Oehmen A, Blackall L L, et al. The effect of GAOs (glycogen accumulating nrganisms) on anaerobic carlton requirements in full-scale Australian EBPR (enhanced biological phosphorus removal) plants[J]. Water Sci Tech, 2003, 47( 11 ) : 37 - 43.
  • 3Cokgor E U, Yagci N O, Randall C W, et al. Effects of pH and substrate on the competition between glycogen and phosphorus accumulating organisms[J]. J Environ Sci Health, 2004, 39 (7) : 1695- 1704.
  • 4Oehmen A, Vives M T, Eu H. et al. The effect of pH on the competition between polypbosphate accumulating organisms and glycogen-accumulating organisms[J]. Waler Res, 2005, 39:3727 - 3737.
  • 5Pijuan M, Saunders A M, Guisasola A, et al. Enhanced Biological Phosphorus Removal in a Sequencing Batch Reactor Using Propionate as the Sole Carbon Source[J].Biotech Bioeng, 2004, 85( 1 ) : 56 - 67.
  • 6Chen Y, Liu Y, Zhou Q, et al. Enhanced phosphorus biological removal from wastewater-effect of microorganism acclimatization with different ratios of short-chain fatty acids mixture[ J]. Biochem Eng J, 2005. 27: 24-32.
  • 7Chen Y, Randall A A, McCue T. The efficient of enhanced biological phosphorus removal from real wastewater affected by different rations of acetic to propionic acid[J]. Water Res, 2004, 38(1): 27-36.
  • 8刘燕,行智强,陈银广,周琪.聚烃基烷酸转化对强化生物除磷影响研究[J].环境科学,2006,27(6):1103-1106. 被引量:20
  • 9Smolders G J F, Meij J V d, Lossdrecht M C M v, et al. Stoichiometric model of the aerobic metabolism of the biological phosphon s re noval process[J].Biotech Bioeng. 1994, 44(7) : 837 - 848.
  • 10Andrew J S, David J. Enhanced biological phosphorus removal from wastewater by biomass with different phosphorus contents, Part Ⅰ : Experimental Results and comparison with metabolic models [ J]. Wat Environ Res, 2003, 75(6) : 485 - 498.

二级参考文献13

  • 1国家环保局.水和废水监测分析方法[M].北京:中国环境科学出版社,1989.260-263.
  • 2Von Mueneh E. DSP prefermenter technology book [ M ].Bresbane Old, Australia: Science Traveller International CRC WMPC Ltd,1998.
  • 3Naik R V. Enhancement of denitrification using prefermenters in biological nutrient removal systems [ D]. Orlando, FL:University of Central Florida, 1999.
  • 4Shah R R. Study of the performance of biological nutrient removal systems with and without prefermenters[ D]. Orlando,FL: University of Central Florida, 2001.
  • 5Lemos P C, Viama C, Salgueiro E N, et al. Effect of carbonsource on the formation of polyhydroxyalkanotes (PHA) by a phosphate-accumulating mixed culture [ J ]. Enz. Microb. Technol, 1998, 22:662-671.
  • 6Pijuan M, Saunders A M, Guisasola A, et al. Enhanced Biological Phosphorus Using Propionate as the Sole Carbon Source[J]. Biotech. Bioeng, 2004, 85(1) : 56-67.
  • 7Randall A A, Liu Y. Polyhydroxyalkanoates form potentially a key aspect of aerobic phosphorus uptake in enhanced biological phosphorus removal[ J ]. Water Res, 2002, 36:3474- 3478.
  • 8Hood C R, Randall A A. A biochemical hypothesis explaining the response of enhanced biological phosphorus removal biomassto organic substrates[ J ]. Water Res, 2001, 35 : 2758- 2766.
  • 9Chen Y, Chen Y S, Xu Q, et al. Comparison between acclimated and unacclimated biomass affecting anaerobic-aerobic transformations in the biological removal of phosphorus [ J ].Process Biochemistry, 2005, 40 : 723- 732.
  • 10Abu-ghararah Z H, Randall C W. The effect of organic compounds on biological phosphorus removal [ J ]. Water Sci.Technol, 1991, 23 : 585 - 594.

共引文献19

同被引文献114

引证文献8

二级引证文献37

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