期刊文献+

Study on Immobilized Algal Cells for Treatment and Recycle of Refinery Wastewater

Study on Immobilized Algal Cells for Treatment and Recycle of Refinery Wastewater
下载PDF
导出
摘要 Compared to the algal oxidation pond, treatment of wastewater using the immobilized algal cell technology has excellent effect, which not only can effectively avoid the disadvantage of oxidation pond,but can also remarkably improve the efficiency of treating system and the effluent quality. When the treating system operates under an optimal control conditions, such as a 55% loading rate, an illumination intensity of 2500-3500 lux and a hydraulic residence time of 4 hours, the COD and ammonia nitrogen removal can reach 90%. Water after deep treatment can comply with the requirement of the refinery for the quality of recycled water. Compared to the algal oxidation pond, treatment of wastewater using the immobilized algal cell technology has excellent effect, which not only can effectively avoid the disadvantage of oxidation pond, but can also remarkably improve the efficiency of treating system and the effluent quality. When the treating system operates umder an optimal control conditions, such as a 55% loading rate, an illumination intensity of 2500-3500 lux and a hydraulic residence time of 4 hours, the COD and ammonia nitrogen removal can reach 90%. Water after deep treatment can comply with the requirement of the refinery for the quality of recycled water.
出处 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2005年第3期39-42,共4页 中国炼油与石油化工(英文版)
关键词 废水处理 海藻 深度处理 回收利用 氧化处理 最优控制 discharged wastewater immobilization of algae deep treatment reuse
  • 相关文献

参考文献5

  • 1[1]Yin Changsong, Sun Yuping. Prospects for application of algae immobilization technology in treating wastewater emanated from aquatic culture, Inland Aquatic Culture, 2002, 7(2): 25- 30
  • 2[2]LI Min, Liu Deqi. Study on application of immobilized algal cells moving bed for treating sanitary wastewater.Soochow University Bulletin (Engineering Section), 2003, 23(6): 123- 126
  • 3[3]Wiessner W. In Photobiology of Microorganisms. Halldal.P. (Ed.) Wiley-Interscience: New York, 1970, 95- 133
  • 4[4]Zipp R G, Skurlatov Y I, Pierce J T. Photochemistry of Environmental Aquatic Systems, Zika R G, Cooper W J,(Eds.). ACS Symposium Series 327; American Chemical Society. Washington D C, 1987
  • 5[5]Li Guanwu, et al. Biological effect of photosensitive reaction initiated by R-phycoerythrin on DNA molecules, Biochemical and Biophysical Progress, 2000, 27(6): 621- 626

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