Study on efficiency of purifying the aquacultural waste water with immobilized alga-bacteria system and immobilization conditions optimization
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Shanghai Ocean University,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences,Fishery Machinery and Instrument Research Institute,Chinese Academy of Fishery Sciences

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    Abstract:

    Chlorella pyrenoidosaChick and Photosynthetic Bacteria were immobilized by sodium alginate and calcium chloride for aquaculture wastewater purification, and the purification capacity was investigated. The conditions of its immobilization were studied by orthogonal experiments.The results showed that algae-bacterium immobilized balls which were embedded by 2% sodium alginate and cross-linked for 24 h by 6% calcium chloride improved orthophosphate and ammonia-nitrogen removal efficiency, which respectively reached 84% and 95% at 24℃. It was higher than immobilization algae and bacterium separately (P<0.05) for orthophosphate during the periods of first-forth days and for ammonia nitrogen during the periods of fifth-eighth days. The studies indicate that the purification capacity of algae and bacterium can be improved significantly for aquaculture waste water by using algae-bacteria combination and to be fixed reasonably. Applying algae-bacterium immobilized balls has better effect than adopting algae and bacterium separately in purification efficiency of aquaculture wastewater.

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刘娥,刘兴国,王小冬,陆诗敏,曾宪磊.固定化藻菌净化水产养殖废水效果及固定化条件优选研究[J].上海海洋大学学报,2017,26(3):422-431.
LIU E, LIU Xingguo, WANG Xiaodong, LU Shimin, ZENG Xianlei. Study on efficiency of purifying the aquacultural waste water with immobilized alga-bacteria system and immobilization conditions optimization[J]. Journal of Shanghai Ocean University,2017,26(3):422-431.

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History
  • Received:July 29,2016
  • Revised:March 13,2017
  • Adopted:March 14,2017
  • Online: May 25,2017
  • Published:
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