Lin Changsong, Xu Longfei, Tan Linyou. Start-up and operation of anaerobic digestion of brewery wastewater at ambient temperature[J]. Chinese Journal of Environmental Engineering, 2013, 7(4): 1389-1393.
Citation: Lin Changsong, Xu Longfei, Tan Linyou. Start-up and operation of anaerobic digestion of brewery wastewater at ambient temperature[J]. Chinese Journal of Environmental Engineering, 2013, 7(4): 1389-1393.

Start-up and operation of anaerobic digestion of brewery wastewater at ambient temperature

  • Received Date: 08/05/2012
    Accepted Date: 03/02/2012
    Available Online: 09/04/2013
    Fund Project:
  • At normal temperature, the experiment of biogas anaerobic fermentation was conducted while a self-designed hybrid anaerobic baffled reactor was adopted to treat brewery wastewater. The inlet COD limit was around 5 000 mg/L, the organic load was improved by gradually shortened HRT (hydraulic retention time). The result indicated that after 41 d started-up and operation, the gas production rate increased rapidly, the reactor started up successfully. During the stable operation process, with the increase of the organic load, gas output was step up gradually while the COD removal rate remained over 90%. Meanwhile, the effluent pH kept around at 7.0, TSS removal rate reached to 60% and good effluent quality. From the above results, it can be concluded that the hybrid anaerobic reactor may play an important role in anaerobic digestion.
  • [1] 李智超, 姜海萍, 郭军, 等. UASB + SBR 工艺处理啤酒废水的研究. 安全与环境工程,2009,16(1):41-43 Li Zhichao, Jiang Haiping, Guo Jun, et al. Engineering practice of UASB+ SBR process to the prewery. Wastewater Treatment Safety and Environmental Engineering, 2009,16(1):41-43(in Chinese)

    Google Scholar Pub Med

    [2] 方中刚,黄晨,王世强. 啤酒废水处理中活性污泥生物相变化研究. 水资源与水工程学报, 2011,22(3):141-143 Fang Zhonggang,Huang Chen,Wang Shiqiang. Research on biofacies change of active sludge in treatment of beer wastewater. Journal of Water Resources & Water Engineering, 2011,22(3):141-143(in Chinese)

    Google Scholar Pub Med

    [3] 沈淞涛, 杨顺生, 方发龙, 等. 啤酒工业废水的来源与水质特点. 工业安全与环保,2003,29(12):3-5 Shen Songtao, Yang Shunsheng, Fang Falong, et al. The source and character of brewery wastewater. Industrial Safety and Environmental Protection, 2003,29(12):3-5(in Chinese)

    Google Scholar Pub Med

    [4] 左永泉. 啤酒废水处理技术的应用. 环境工程, 2000,18(1):34-36 Zuo Yongquan. Treatment technique of oil field produced water and its progress. Environmental Engineering, 2000,18(1):34-36(in Chinese)

    Google Scholar Pub Med

    [5] 王克浩,李东伟,周载江. 两相厌氧-SBR法处理啤酒废水工程实践. 水处理技术,2007,33(4):78-80 Wang Kehao,Li Dongwei, Zhou Zaijiang. Treatment of beer wastewater by two phase anaerobic-SBR process. Technology of Water Treatment, 2007,33(4):78-80(in Chinese)

    Google Scholar Pub Med

    [6] 宋建华. 啤酒废水中生物质能回用的意义.啤酒科技,2011,(1):19-20,23 Song Jianhua. The significance of biomass energy reusing in beer wastewater. Beer Science and Technology, 2011,(1):19-20,23(in Chinese)

    Google Scholar Pub Med

    [7] Yan Yuegen, Tay Joohwa. Brewery wastewater treatment in UASB reactor at amient temperature. Journal of Enviromental Engineering, 1996,122(6):550-553

    Google Scholar Pub Med

    [8] 方春玉,周健,张会展. 啤酒废水厌氧生物处理技术研究进展.四川理工学院学报(自然科学版),2006,19(1):88-92 Fang Chunyu,Zhou Jian,Zhang Huizhan. Research progress of anaerobic biological treatment technology for brewery wastewater. Journal of Sichuan University of Science & Engineering (Natural Science Edition), 2006,19(1):88-92(in Chinese)

    Google Scholar Pub Med

    [9] 石锦慎.啤酒工业废水的处理与利用. 中国资源综合利用,2009,27(4):39-40 Shi Jinshen. The treatment and recycling technology of the beer industry wastewater. China Resources Comprehensive Utilization, 2009,27(4):39-40(in Chinese)

    Google Scholar Pub Med

    [10] 张传兵,李东艳,王慧芳. UASB反应器处理啤酒废水启动运行研究. 水处理技术, 2010,36(7):43-45 Zhang Chuanbing, Li Dongyan, Wang Huifang. Study on the start-up operation of UASB reactor for treatment brewery wastewater. Technology of Water Treatment, 2010,36(7):43-45(in Chinese)

    Google Scholar Pub Med

    [11] Kettunen R. H., Rintala J. A. The effect of low temperature(5~20℃) and adaptation on the methanogenic activity of biomass. Appl. Microbiol. Biotechnol., 1997,48(4):570-576

    Google Scholar Pub Med

    [12] Ahring B. K., Ibrahim A. A., Mladenovska Z. Effect of temperature increase from 55℃ to 65℃ on performance and microbial population dynamics of an anaerobic reactor treating cattle manure. Water Research,2001,35(10):2446-2452

    Google Scholar Pub Med

    [13] 聂洪文.UAMR中温处理高浓度啤酒废水研究. 重庆环境科学,1999,21(5):36-39 Nie Hongwen. Study of the high concentration brewery wastewater UPF low anaerobic multi-bed reactor with recycle. Chongqing Environmental Science,1999,21(5):36-39(in Chinese)

    Google Scholar Pub Med

    [14] 贺延龄. 废水的厌氧生物处理.北京: 中国轻工业出版社,1998

    Google Scholar Pub Med

    [15] Michaud S., Bernet N., Buffiere P.,et al. Methane yield as a monitoring parameter for the start-up of anaerobic fixed film reactors. Water Research, 2002,36(5):1385-1391

    Google Scholar Pub Med

    [16] Karim K., Hoffmann R., Klasson T., et al.Anaerobic digestion of animal waste:Waste strength versus impact of mixing. Bioresource Technology, 2005,96(16):1771-1781

    Google Scholar Pub Med

    [17] 买文宁,邢传宏,徐洪斌. 有机废水生物处理技术及工程设计. 北京: 化学工业出版社,2008

    Google Scholar Pub Med

    [18] 陈学民,王利杰,伏小勇. UASB反应器常温处理生活污水中试的启动研究.给水排水,2002,28(3):15-18 Chen Xuemin, Wang Lijie, Xu Hongbin. Pilot scale study on domestic sewage treated by UASB reactor at normal temperature. Water & Wastewater Engineering,2002,28(3):15-18(in Chinese)

    Google Scholar Pub Med

    [19] Shigeki Uemura,Hideki Harada. Treatinent of sewage by a UASB reactor under moderate to low temperature conditions. Bioresource Technology, 2000,72(3):275-282

    Google Scholar Pub Med

    [20] Ramakrishna C., Desai J.D. High rate anaerobic digestion of a petrochemical wastewater using biomass support particles. World Journal of Microbiology and Biotechnology, 1997,13(3):329-334

    Google Scholar Pub Med

    [21] 白玉华,张代钧,祖波,等.低COD浓度废水启动EGSB反应器. 环境工程学报, 2007,1(4):29-33 Bai Yuhua, Zhang Daijun,Zu Bo,et al. The start-up of expanded granular sludge bed reactor with low strength COD. Chinese Journal of Environmental Engineering, 2007,1(4):29-33(in Chinese)

    Google Scholar Pub Med

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article Metrics

Article views(1764) PDF downloads(1509) Cited by(0)

Access History

Start-up and operation of anaerobic digestion of brewery wastewater at ambient temperature

Fund Project:

Abstract: At normal temperature, the experiment of biogas anaerobic fermentation was conducted while a self-designed hybrid anaerobic baffled reactor was adopted to treat brewery wastewater. The inlet COD limit was around 5 000 mg/L, the organic load was improved by gradually shortened HRT (hydraulic retention time). The result indicated that after 41 d started-up and operation, the gas production rate increased rapidly, the reactor started up successfully. During the stable operation process, with the increase of the organic load, gas output was step up gradually while the COD removal rate remained over 90%. Meanwhile, the effluent pH kept around at 7.0, TSS removal rate reached to 60% and good effluent quality. From the above results, it can be concluded that the hybrid anaerobic reactor may play an important role in anaerobic digestion.

Reference (21)

Catalog

/

DownLoad:  Full-Size Img  PowerPoint