期刊文献+

未来污水处理工艺发展的若干方向、规律及应用 被引量:10

The sirections,principles and application of future wastewater treatment process development
下载PDF
导出
摘要 现代污水处理技术在经历了100年的发展之后迎来了新的挑战与机遇,未来污水处理发展的方向将朝着紧凑性、可持续性的方向发展,其中好氧颗粒污泥将向着连续流的方向发展,在实际应用中将会更加注重絮体与颗粒污泥之间的平衡;碳转向是今后污水处理发展的一个重要方向;主流短程脱氮技术的发展愈加深入,未来的突破可能在微生物方面的认识进展;生物膜技术的认识和应用将会更加深入,MABR技术独特的特点使得供氧效率得到极大提高。在上述工艺发展过程中,ICA的应用将更加普及,基于数据调谐的模型应用将显现出强大的力量。 Modern wastewater treatment technology is experiencing new challenges and opportunities after 100 years of development. Future wastewater treatment will develop toward compact- ness and sustainability. The development of aerobic granular sludge will direct to continuous flow, and in practical applications, it will more focus on the balance between floe and granular sludge. Carbon redirection is an important direction for the development of wastewater treatment in the fu- ture. The development of mainstream short-cut nitrogen removal technology is increasingly ad- vanced, and the future breakthrough may depend on the progress in understanding the microbial aspects. The understanding and application of biofilrn technology will be increasingly advanced. The unique characteristics of MABR technology make oxygen efficiency greatly improved. In the devel- opment of the above processes, the application of ICA will be more popular, and model application will show great power based on data reconcilation.
作者 陈珺
出处 《给水排水》 CSCD 北大核心 2018年第2期129-141,共13页 Water & Wastewater Engineering
关键词 好氧颗粒污泥 碳转向 主流厌氧氨氧化 泥龄分离 MABR Aerobic granular sludge Carbon redirection Mainstream deammonification SRT decoupling MABR
  • 相关文献

参考文献1

二级参考文献9

  • 1Broda E. Two kinds of lithotrophs missing in nature. Z. Allg. Mikrobiologie, 1997,17 : 491-493.
  • 2Mulder A, van de Graaf A A, Robertson L A, et al. Anaerobic ammonium oxidation discovered in a denitrifying fluidized bed reactor. FEMS Microb Ecol, 1995,16 = 1774184.
  • 3Siegrist H, Reithaar S, Lais P. Nitrogen loss in a nitrifying ro tating contactor treating ammonium rich leachate without organ ic carbon. Wat Sci Tech, 1998,38:241-248.
  • 4Strous M, Heijnen J J, Kuenen J G, et al. The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms, Appl Microbiol Bioteehnol, 1998,50(5) : 589-596.
  • 5Lackner S, Gilbert E M, Vlaeminck S E, et al. Full-scale par tial nitritation/anammox experiences--an application survey. Water Res, 2014,55 : 292-303.
  • 6Coskuner G, Curtis T P. In situ characterization of nitrifiers in an activated sludge plant: detection of Nitrobacter Spp. Journalof Applied Microbiology,2002,93(3):431-437.
  • 7Blackburne R, Vadivelu V M, Yuan Z, et al. Determination of growth rate and yield of nitrifying bacteria by measuring carbon dioxide uptake rate. Water Environ Res,2007,79, 2437-2445.
  • 8Chandran K, Smets B F. Single-step nitrification models erro- neously describe batch ammonia oxidation pro['il.es when nitrite oxidation becomes rate limiting. Biotechnol Bioeng, 2000, 68: 3964406.
  • 9Winkler M K H, Kleerebezem R, van Loosdrecht M C M. Inte gration of anammox into the aerobic granular sludge process for main stream wastewater treatment at ambient temperatures. Water Res,2012,46:136-144.

共引文献23

同被引文献88

引证文献10

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