3种载体固定化菌藻共生系统脱氮除磷效果的对比

傅海燕, 许鹏成, 柴天, 高攀峰, 黄国和, 陈蕃武. 3种载体固定化菌藻共生系统脱氮除磷效果的对比[J]. 环境工程学报, 2013, 7(9): 3256-3262.
引用本文: 傅海燕, 许鹏成, 柴天, 高攀峰, 黄国和, 陈蕃武. 3种载体固定化菌藻共生系统脱氮除磷效果的对比[J]. 环境工程学报, 2013, 7(9): 3256-3262.
Fu Haiyan, Xu Pengcheng, Chai Tian, Gao Panfeng, Huang Guohe, Chen Fanwu. Comparation of nitrogen and phosphorus removal by coimmobilized bacteria-algae system with three kinds of carriers[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3256-3262.
Citation: Fu Haiyan, Xu Pengcheng, Chai Tian, Gao Panfeng, Huang Guohe, Chen Fanwu. Comparation of nitrogen and phosphorus removal by coimmobilized bacteria-algae system with three kinds of carriers[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3256-3262.

3种载体固定化菌藻共生系统脱氮除磷效果的对比

  • 基金项目:

    国家自然科学基金资助项目(51109181)

    福建省教育厅科技项目(JA11236)

    福建省高校杰出青年人才项目(JA12243)

  • 中图分类号: X703

Comparation of nitrogen and phosphorus removal by coimmobilized bacteria-algae system with three kinds of carriers

  • Fund Project:
  • 摘要: 采用3种不同载体(海藻酸钠、聚乙烯醇、复合载体),分别将小球藻和栅藻与活性污泥固定成菌藻共生系统,制成菌藻凝胶小球,单独菌、单独藻的凝胶小球,用于处理人工污水。结果表明,(1)复合载体固定的菌藻共生系统氮磷去除效果最好,PVA载体的脱氮除磷效果次于复合载体优于海藻酸钠;(2)固定化菌藻共生系统的脱氮除磷效果明显优于单独固定菌和单独固定藻,固定菌的效果较差;(3)3种载体包埋下的固定化小球藻的脱氮除磷效果均较相同载体固定化的栅藻效果好。
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  • [1] 沈耀良,黄勇,赵丹,等. 固定化微生物污水处理技术. 北京: 化学工业出版社, 2002
    [2] Raul Muñoz, Benoit Guieysse. Algal-bacterial processes for the treatment of hazardous contaminants: A review. Water Research, 2006, 40(15): 2799-2815
    [3] Yan J., Hu Y.Y. Partial nitrification to nitrite for treating ammonium-rich organic wastewater by immobilized biomass system. Bioresource Technology, 2009, 100(8): 2341-2347
    [4] Su Yanyan, Mennerich Artur, Urban Brigitte. Synergistic cooperation between wastewater-born algae and activated sludge for wastewater treatment: Influence of algae and sludge inoculation ratios. Bioresource Technology, 2012, 105: 67-73
    [5] 何少林,黄翔峰,李旭东,等.高效藻类塘藻菌共生系统的培养.中国给水排水,2006,22(5):74-76 He Shaolin, Huang Xiangfeng, Li Xudong, et al. Cultivation of algae-bacteria symbiosis system in high rate algal pond. China Water & Wastewater, 2006, 22(5):74-76 (in Chinese)
    [6] 严清, 孙连鹏. 固定化菌藻系统及对污水中氮磷营养盐的净化效果. 生态环境学报, 2009, 18(6): 2086-2090 Yan Qing, Sun Lianpeng. Removal of nitrogen and phosphorus by coimmobilized Chlorella vulgaris and bacteria system. Ecology and Environment, 2009, 18(6): 2086-2090(in Chinese)
    [7] 李小霞, 解庆林. 菌藻共生系统处理污水的研究及应用前景. 广西民族学院学报(自然科学版), 2006, 12(3): 112-114,117 Li Xiaoxia, Xie Qinglin. The study and application of algal-bacterial symbiotic system for sewage purification. Journal of Guangxi University for Nationalities (Natural Science Edition), 2006, 12(3): 112-114,117 (in Chinese)
    [8] 潘辉, 熊振湖, 孙炜. 共固定化菌藻对市政污水中氮磷去除的研究. 环境科学与技术, 2006, 29(1):14-15,42 Pan Hui,Xiong Zhenhu,Sun Wei. Co-immobilized algal-bacterial to remove nutrient substance of municipal wastewater. Environmental Science & Technology, 2006, 29(1):14-15,42 (in Chinese)
    [9] 王佳. 固定化藻菌的小球浓度对模拟生活污水脱氮除磷效果的影响. 水资源保护, 2005, 21(1): 72-74 Wang Jia. Effect of cell concentration on the removal of nitrogen and phosphorus in synthetic wastewater by the immobilized algal-bacterial system. Water Resources Protection, 2005, 21(1): 72-74 (in Chinese)
    [10] 严清, 孙连鹏. 菌藻混合固定化及其对污水的净化实验. 水资源保护, 2010,26(3): 57-60 Yan Qing, Sun Lianpeng. Purification of wastewater by co-immobilized bacteria-algae system. Water Resources Protection, 2010,26(3):57-60 (in Chinese)
    [11] Jansson M. Phosphate up take and utilization by bacterica and algae. Hydribiologia, 1988,170(l):177-189
    [12] 孟睿.固定化菌-藻体系净化水产养殖废水的研究. 北京: 北京化工大学硕士学位论文, 2009 Meng Rui. Study on purifying the aquacultural waste water with immobiliged bacteria-alga system. Beijing:Master Dissertation of Beijing University of Chemical Technology,2009 (in Chinese)
    [13] Carbery J. B. Model of algal bacterial clay wastewater treat-ment system. Water Science and Technology, 1992,26 (7-8):1697-1706
    [14] 蒋宇红, 黄霞, 俞毓馨. 几种固定化细胞载体的比较. 环境科学,1993,14(2):11-15 Jiang Yuhong, Huang Xia, Yu Yuxin. Study on entrapping agents for immobilizing microbial cell. Environmental Science, 1993, 14(2):11-15 (in Chinese)
    [15] 严青, 冯国忠. 固定化藻球的强化研究. 湖北农业科学,2011,50(11): 2204-2206 Yan Qing, Feng Guozhong. Study on the enhancement of immobilized chlorella balls' performance. Hubei Agricultural Sciences, 2011, 50(11): 2204-2206 (in Chinese)
    [16] 薛嵘,黄国兰,毛宇翔. 改进的PVA-硫酸盐法固定蛋白核小球藻除磷研究.中国环境科学,2002,22(4):351-354 Xue Rong, Huang Guolan, Mao Yuxiang. Studies on phosphorus removal by Chlorella pyrenoidosa with modified PVA-sulfate immobilization method. China Environmental Science, 2002, 22(4):351-354 (in Chinese)
    [17] 薛嵘,黄国兰,郭艳. 改进的硫酸盐-聚乙烯醇法包埋藻菌脱氮除磷研究.环境污染与防治,2005,27(7):556-558 Xue Rong, Huang Guolan, Guo Yan. Nitrogen and phosphorus removals by algae and bacterium immobilized using modified PVA-Sulfate method. Environmental Pollution & Control, 2005, 27(7):556-557 (in Chinese)
    [18] 闵航, 郑耀通, 钱泽淑,等. 聚乙烯醇包埋厌氧活性污泥处置废水的最优化条件研究. 环境科学,1994, 15(5):10-14 Min Hang, Zheng Yaotong, Qian Zeshu, et al. Study on the optimized conditions for entrapping anaerobic activated sludge in PVA. Environmental Science, 1994, 15(5):10-14 (in Chinese)
    [19] 邢丽贞,张向阳,张波,等. 藻菌固定化去除污水中氮磷营养物质的初步研究.环境科学与技术,2006,29(1):33-36 Xing Lizhen, Zhang Xiangyang, Zhang Bo, et al. A preliminary study on eliminating nitrogen and phosphorus from artificial wastewater by immobilized bacteria-algae. Environmental Science & Technology, 2006, 29(1):33-36 (in Chinese)
    [20] 齐素芳,余煜棉,赖子尼, 等. 复合载体固定化硝化细菌去除水体中氨氮的研究. 广东工业大学学报, 2007, 24(2): 15-19 Qi Sufang, Yu Yumian, Lai Zini, et al. Removing ammonia nitrogen from wastewater by immobilization nitrobacteria with chitosan and alginate. Journal of Guangdong University of Technology, 2007, 24(2):15-19 (in Chinese)
    [21] 国家环境保护局.水和废水监测分析方法(第4版). 北京:中国科学出版社,1989
    [22] 华汝成.单细胞藻类的培养与利用. 北京:农业出版社,1986
    [23] 熊振湖, 孙翠珍, 刘青春.不同载体固定化藻菌共生系统的脱氮除磷效果. 环境科学与技术, 2005, 28(1):82-84 Xiong Zhenhu, Sun Cuizhen, Liu Qingchun. Nitrogen and phosphorus removal by immobilized algal-bacterial symbiosis with different carrier. Environmental Science & Technology, 2005, 28(1): 82-84 (in Chinese)
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出版历程
  • 收稿日期:  2012-08-06
  • 刊出日期:  2013-09-15
傅海燕, 许鹏成, 柴天, 高攀峰, 黄国和, 陈蕃武. 3种载体固定化菌藻共生系统脱氮除磷效果的对比[J]. 环境工程学报, 2013, 7(9): 3256-3262.
引用本文: 傅海燕, 许鹏成, 柴天, 高攀峰, 黄国和, 陈蕃武. 3种载体固定化菌藻共生系统脱氮除磷效果的对比[J]. 环境工程学报, 2013, 7(9): 3256-3262.
Fu Haiyan, Xu Pengcheng, Chai Tian, Gao Panfeng, Huang Guohe, Chen Fanwu. Comparation of nitrogen and phosphorus removal by coimmobilized bacteria-algae system with three kinds of carriers[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3256-3262.
Citation: Fu Haiyan, Xu Pengcheng, Chai Tian, Gao Panfeng, Huang Guohe, Chen Fanwu. Comparation of nitrogen and phosphorus removal by coimmobilized bacteria-algae system with three kinds of carriers[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3256-3262.

3种载体固定化菌藻共生系统脱氮除磷效果的对比

  • 1. 厦门理工学院环境科学与工程学院, 厦门 361024
  • 2. 国电南自新能源科技有限公司, 南京 210032
基金项目:

国家自然科学基金资助项目(51109181)

福建省教育厅科技项目(JA11236)

福建省高校杰出青年人才项目(JA12243)

摘要: 采用3种不同载体(海藻酸钠、聚乙烯醇、复合载体),分别将小球藻和栅藻与活性污泥固定成菌藻共生系统,制成菌藻凝胶小球,单独菌、单独藻的凝胶小球,用于处理人工污水。结果表明,(1)复合载体固定的菌藻共生系统氮磷去除效果最好,PVA载体的脱氮除磷效果次于复合载体优于海藻酸钠;(2)固定化菌藻共生系统的脱氮除磷效果明显优于单独固定菌和单独固定藻,固定菌的效果较差;(3)3种载体包埋下的固定化小球藻的脱氮除磷效果均较相同载体固定化的栅藻效果好。

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