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ÒѾÄܼìË÷µ½ÁË Sequencing Analysis of HA-A/A-MCO Process Journal Advanced Materials Research (Volume 548) Volume Material and Manufacturing Technology III Edited by K.M. Gupta Pages 880-884 DOI 10.4028/www.scientific.net/AMR.548.880 Citation Ning Zuo, 2012, Advanced Materials Research, 548, 880 Online since July, 2012 Authors Ning Zuo Keywords PCR-DGGE, Sequencinge, Sludge Reduction Abstract This study applies PCR-DGGE fingerprinting technique to analysis the bacterial community structure of phosphorous removal and denitrification system. Through strains identification, it is found that acinetobacter sp.is the base of keeping favorable phosphorus removal effect, Spirochaeta sp.undertakes the function of organic matters removal, Bacillus sp. and Lampropedia hyalina sp.can propagate largely in the germiculture area(No.1 oxic tank), and can be preyed on by highlevel microbe(such as protozoa and metazoan) in protozoa growing area(No.2oxic tank) and metazoan growimg area(No.3 oxic tank). The predation between highlevel microbe and low grade microbe can promote efficient sludge reduction of HA-A/A-MCO process. Full Paper |
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Accession number: 20124515635413 Title: Sequencing analysis of HA-A/A-MCO process Authors: Zuo, Ning1 Author affiliation: 1 Southwestern Research Institute of Water Transport Engineering, Chongqing Jiaotong University, Chongqing, 400016, China Corresponding author: Zuo, N. (zuoning_2424@126.com) Source title: Advanced Materials Research Abbreviated source title: Adv. Mater. Res. Volume: 548 Monograph title: Material and Manufacturing Technology III Issue date: 2012 Publication year: 2012 Pages: 880-884 Language: English ISSN: 10226680 ISBN-13: 9783037854532 Document type: Conference article (CA) Conference name: 3rd International Conference on Material and Manufacturing Technology, ICMMT 2012 Conference date: May 5, 2012 - May 6, 2012 Conference location: Chengdu, China Conference code: 92652 Sponsor: International Association of Computer Science; and Information Technology(IACSIT); Sichuan Institute of Electronics Publisher: Trans Tech Publications, P.O. Box 1254, Clausthal-Zellerfeld, D-38670, Germany Abstract: This study applies PCR-DGGE fingerprinting technique to analysis the bacterial community structure of phosphorous removal and denitrification system. Through strains identification, it is found that acinetobacter sp. is the base of keeping favorable phosphorus removal effect, Spirochaeta sp. undertakes the function of organic matters removal, Bacillus sp. and Lampropedia hyalina sp. can propagate largely in the germiculture area(No.1 oxic tank), and can be preyed on by highlevel microbe(such as protozoa and metazoan) in protozoa growing area(No.2oxic tank) and metazoan growimg area(No.3 oxic tank). The predation between highlevel microbe and low grade microbe can promote efficient sludge reduction of HA-A/A-MCO process. © (2012) Trans Tech Publications, Switzerland. Number of references: 7 Main heading: Bacteria Controlled terms: Bacteriology - Manufacture - Phosphorus - Polymerase chain reaction - Protozoa - Tanks (containers) Uncontrolled terms: Acinetobacter sp - Bacillus sp - Bacterial community structure - Fingerprinting techniques - Low grade - PCR-DGGE - Phosphorous removal - Phosphorus removal - Sequencing analysis - Sequencinge - Sludge reduction Classification code: 537.1 Heat Treatment Processes - 619.2 Tanks - 801.2 Biochemistry - 804 Chemical Products Generally DOI: 10.4028/www.scientific.net/AMR.548.880 Database: Compendex Compilation and indexing terms, © 2012 Elsevier Inc |

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