工业水处理 ›› 2011, Vol. 31 ›› Issue (1): 33-36. doi: 10.11894/1005-829x.2011.31(1).33

• 试验研究 • 上一篇    下一篇

内循环好氧生物流化床处理糖业废水试验研究

田雪莲, 胡堃, 郭勇, 黄卫星   

  1. 四川大学化工学院, 四川成都 610065
  • 收稿日期:2010-09-25 出版日期:2011-01-20 发布日期:2011-02-24
  • 通讯作者: 黄卫星, 教授, E-mail:hwx@szu.edu.cn E-mail:txlbest@163.com
  • 作者简介:田雪莲(1985-), 2008级四川大学在读硕士研究生.Tel:13088054970.

Experimental research on the treatment of wastewater from cane-sugar production with internal-circulation aerobic bio-fluidized bed

Tian Xuelian, Hu Kun, Guo Yong, Huang Weixing   

  1. School of Chemical Engineering,Sichuan University, Chengdu 610065, China
  • Received:2010-09-25 Online:2011-01-20 Published:2011-02-24

摘要:

应用内循环好氧生物流化床对CODCr和NH3-N质量浓度分别为350~580 mg/L和7~12 mg/L的甘蔗制糖废水进行处理。以人工合成的高分子颗粒作生物膜载体,通过改变空气流量和水力停留时间,考察不同操作条件下对不同浓度废水的CODCr和NH3-N去除效果。试验表明,在进气量为40 L/h、水力停留时间为3~4 h的条件下,CODCr和NH3-N的平均去除率分别为90.7%和86.5%,出水CODCr和NH3-N稳定在60 mg/L和2 mg/L以下,表明采用内循环好氧生物流化床处理糖业废水具有良好的效果,为糖业废水的高效处理提供了一种新方法。

关键词: 内循环好氧生物流化床, 糖业废水, 生物膜

Abstract:

The internal-circulation aerobic bio-fluidized bed has been used for treating the wastewater from a canesugar refinery. The concentrations of COD Cr and NH 3-N applied are 350-580 mg/L and 7-12 mg/L, respectively. Biological carriers are synthetic polymer particles. By means of changing the air flow rate and hydraulic residence time, the average removal rate of COD Cr and NH 3-N of the wastewater with different concentrations under differential operation conditions are investigated. The results show that when the inlet air flow rate is 40 L/h and hydraulic residence time 3-4 h, the CODCr and NH3-N average removal rates are 90.7% and 86.5%, respectively. The effluent COD and NH 3-N stay lower than 60 mg/L and 2 mg/L. It indicates that the internal-circulation aerobic bio-fluidized bed is effective for treating sugar refinery wastewater with moderate concentrations of COD Cr and NH 3-N. It provides a new and highly efficient method for sugar refinery wastewater treatment.

Key words: internal-circulation aerobic bio-fluidized bed, wastewater from sugar production, bio-film

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