Enhanced biological phosphorus removal by granular sludge in anaerobic/aerobic/anoxic SBR during start-up period

文献类型: 外文期刊

第一作者: Jiang, Xinxin

作者: Jiang, Xinxin;Yuan, Yixing;Ma, Fang;Tian, Jiayu;Jiang, Xinxin;Wang, Yu

作者机构:

关键词: Enhanced biological phosphorus removal;Granular sludge;Anaerobic;aerobic;anoxic SBR;Start-up period;PCR-DGGE

期刊名称:DESALINATION AND WATER TREATMENT ( 影响因子:1.254; 五年影响因子:1.553 )

ISSN: 1944-3994

年卷期: 2016 年 57 卷 13 期

页码:

收录情况: SCI

摘要: Laboratory experiments were conducted to investigate the granulation process of the activated sludge in an anaerobic/aerobic/anoxic sequencing batch reactor (A/O/A SBR) during the start-up period. Under the condition of aeration intensity (6.5L/min) and settling time (2min), well-formed granular sludge was obtained in the A/O/A SBR, and the COD, phosphorus, and nitrogen removal efficiencies of the reactor for one typical cycle were as high as 90.1, 99.9, and 94.5%, respectively. Dynamics of microbial community in the reactor were monitored by polymerase chain reaction and denaturing gradient gel electrophoresis techniques. The results showed that microbial diversity of the granular sludge decreased compared with the initial sludge. However, strains which could assimilate excessive phosphorus became dominant in granular sludge, leading to the increase in the phosphorus removal efficiency of the reactor. Batch tests were conducted with three different electron acceptors, that is, oxygen, nitrate, and nitrite. It was observed that phosphorus removal efficiency of the reactor supplied with nitrite was only 43.4%, indicating that nitrite could be used as electron acceptor for phosphorus removal, but was less efficient than nitrate and oxygen.

分类号:

  • 相关文献

[1]Draft genome sequence of Halomonas lutea strain YIM 91125(T) (DSM 23508(T)) isolated from the alkaline Lake Ebinur in Northwest China. Gao, Xiao-Yang,Li, Wen-Jun,Zhi, Xiao-Yang,Li, Hong-Wei,Li, Wen-Jun,Zhi, Xiao-Yang,Li, Hong-Wei,Li, Wen-Jun,Lapidus, Alla,Lapidus, Alla,Han, James,Haynes, Matthew,Lobos, Elizabeth,Huntemann, Marcel,Pati, Amrita,Ivanova, Natalia N.,Mavromatis, Konstantinos,Woyke, Tanja,Kyrpides, Nikos C.,Markowitz, Victor,Tindall, Brian J.,Klenk, Hans-Peter,Kyrpides, Nikos C.,Li, Hong-Wei,Zhou, Yu,Gao, Xiao-Yang,Klenk, Hans-Peter. 2015

[2]PlantcellwallpolysaccharidesdeconstructionbyCaldicellulosiruptorbescii. 苏小运. 2015

[3]Removal of COD from piggery wastewater using a lab-scale UASB reactor. Yan, Fei,Zuo, Jinlong,Yan, Fei,Qiu, Tianlei,Wang, Xuming. 2012

[4]Methane Production from Rice Straw Hydrolysate Treated with Dilute Acid by Anaerobic Granular Sludge. Cheng, Jing-Rong,Liu, Xue-Ming,Chen, Zhi-Yi,Cheng, Jing-Rong.

[5]INFLUENCE OF THE Nocardia sp. C-14-1 REMEDIATION ON THE GROWTH OF POTTED PLANTS IN CONTAMINATED SOIL AND ON MICROORGANISM BIO-DIVERSITY. Ma, Hai-Juan,Ma, Hai-Juan,Li, Guang-Ming,Zhang, Ya-Lei,Fang, Ping. 2011

[6]Bacterial diversity of gut content in sea cucumber (Apostichopus japonicus) and its habitat surface sediment. Gao Fei,Tan Jie,Sun Huiling,Yan Jingping. 2014

[7]Application of 16S rDNA-PCR amplification and DGGE fingerprinting for detection of shift in microbial community diversity in Cu-, Zn-, and Cd-contaminated paddy soils. Li, ZJ,Xu, JM,Tang, CX,Wu, JJ,Muhammad, A,Wang, HZ.

[8]Effects of pretreatment on the microbial community and L-lactic acid production in vinasse fermentation. Liu, Jianguo,Wang, Qunhui,Wang, Shuang,Ma, Hongzhi,Liu, Jianguo,Sun, Xiaohong,Tushiro, Yukihiro.

[9]EFFECTS OF INTERCROPPING ON MICROBIAL COMMUNITY FUNCTION AND DIVERSITY IN CONTINUOUS WATERMELON CROPPING SOIL. Zhang, Hanlin,Zheng, Xianqing,Li, Shuangxi,Zhang, Juanqin,Wang, Jinqing,He, Qiyong,Lv, Weiguang,Jiang, Zhongting,Liu, Linde.

[10]Buried straw layer and plastic mulching increase microflora diversity in salinized soil. Li Yu-yi,Pang Huan-cheng,Zhao Yong-gan,Wang Jing,Zhai Zhen,Han Xiu-fang,Yan Shou-wei,Zhang Jian-li. 2016

[11]Molecular-based environmental risk assessment of three varieties of genetically engineered cows. Xu, Jianxiang,Zhao, Jie,Wang, Jianwu,Zhao, Yaofeng,Zhang, Lei,Li, Ning,Chu, Mingxing. 2011

[12]Gibel carp Carassius auratus gut microbiota after oral administration of trimethoprim/sulfamethoxazole. Liu, Yuchun,Zhou, Zhigang,Xu, Li,Cao, Yanan,Zhang, Yuting,Yao, Bin,Wu, Ning,Tao, Yu. 2012

[13]Identification of the adherent microbiota on the gills and skin of poly-cultured gibel carp (Carassius auratus gibelio) and bluntnose black bream (Megalobrama amblycephala Yih). Wang, Wenwen,Zhou, Zhigang,He, Suxu,Liu, Yuchun,Cao, Yanan,Shi, Pengjun,Yao, Bin,Ringo, Einar.

[14]The biogeography of fungal communities in wetland sediments along the Changjiang River and other sites in China. Tian, Jianqing,Xiang, Meichun,Sun, Jingzu,Liu, Xingzhong,Wu, Bing,Bai, Chunming.

[15]Analyses of the community compositions of root rot pathogenic fungi in the soybean rhizosphere soil. Cui, Jiaqi,Han, Jie,Cai, Baiyan,Wang, Yu. 2016

[16]Rumen fermentation and bacterial communities in weaned Chahaer lambs on diets with different protein levels. Yang Chun-tao,Si Bing-wen,Diao Qi-yu,Zeng Shu-qin,Tu Yan,Jin Hai. 2016

[17]Microbial diversity in the sediment of a crab pond in Nanjing, China. Liu, Yuchun,Zhou, Zhigang,He, Suxu,Yao, Bin,Ringo, Einar. 2013

[18]Dynamics of soil bacterial communities in Jerusalem artichoke monocropping system. Zhou, X. G.,Gao, D. M.,Zhao, M. L.,Zhang, J. H.,Li, L.,Wu, F. Z.,Zhou, X. G.,Zhao, M. L.,Li, L.. 2016

[19]The intestinal microbial diversity in Chinese shrimp (Fenneropenaeus chinensis) as determined by PCR-DGGE and clone library analyses. Liu, Huaide,Ma, Shaosai,Li, Qiufen,Wang, Lei,Liu, Mei,Wang, Baojie,Jiang, Keyong. 2011

[20]Effect of intercropping on crop yield and chemical and microbiological properties in rhizosphere of wheat (Triticum aestivum L.), maize (Zea mays L.), and faba bean (Vicia faba L.). Song, Y. N.,Zhang, F. S.,Marschner, P.,Fan, F. L.,Gao, H. M.,Bao, X. G.,Sun, J. H.,Li, L.. 2007

作者其他论文 更多>>