稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响

梅翔, 陈娟, 毕良绣, 吴芳芳, 夏红艳, 张朋, 李晨, 任丽丽. 稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响[J]. 环境工程学报, 2013, 7(9): 3548-3554.
引用本文: 梅翔, 陈娟, 毕良绣, 吴芳芳, 夏红艳, 张朋, 李晨, 任丽丽. 稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响[J]. 环境工程学报, 2013, 7(9): 3548-3554.
Mei Xiang, Chen Juan, Bi Liangxiu, Wu Fangfang, Xia Hongyan, Zhang Peng, Li Chen, Ren Lili. Effect of rice straw loading rate and pH on startup of anaerobic fermentation system for production of acids[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3548-3554.
Citation: Mei Xiang, Chen Juan, Bi Liangxiu, Wu Fangfang, Xia Hongyan, Zhang Peng, Li Chen, Ren Lili. Effect of rice straw loading rate and pH on startup of anaerobic fermentation system for production of acids[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3548-3554.

稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响

  • 基金项目:

    国家"水体污染控制与治理"科技重大专项(2009ZX07101-15)

    江苏省"六大人才高峰"项目(164030104)

    江苏高校优势学科建设工程资助项目(PAPD)

  • 中图分类号: X705

Effect of rice straw loading rate and pH on startup of anaerobic fermentation system for production of acids

  • Fund Project:
  • 摘要: 为探讨稻秆负荷(即稻秆VS/污泥VSS)与发酵pH对稻秆厌氧发酵产酸系统启动过程产挥发性脂肪酸(VFAs)效果的影响,利用厌氧搅拌罐反应系统考察在不同的稻秆负荷(0.556、0.945、1.334和1.724 g/g)和不同的发酵pH(8.0、9.0和10.0)启动运行条件下的产酸性能,并分析了系统启动过程产酸与稻秆主要成分降解之间的关系。实验结果表明,VFAs浓度随稻秆负荷提高而增大,随发酵pH的升高而降低;发酵18 d时,发酵pH为9.0时,稻秆负荷1.334 g/g的产酸效果最好,VFAs浓度与稻秆产酸量分别为4 385.10 mg/L和2.19 gVFAs/g稻秆,此时半纤维素、纤维素和酸性洗涤木质素降解率分别为32.69%、22.53%和6.40%;稻秆负荷为0.945 g/g条件下,VFAs浓度在pH为8.0时达到最高值4 409.51 mg/L,此时稻秆降解量也最多,半纤维素、纤维素和酸性洗涤木质素降解率分别为28.60%、47.32%和22.69%。研究表明,稻秆负荷与发酵pH通过影响稻秆半纤维素、纤维素和木质素的降解影响稻秆厌氧发酵产酸的进程和效果。
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  • [1] 董宇, 马晶, 张涛, 等. 秸秆利用途径的分析比较. 中国农学通报, 2010, 26(19): 327-332 Dong Yu, Ma Jing, Zhang Tao, et al. Analysis and comparison of straw utilization. Chinese Agricultural Science Bulletin, 2010, 26(19): 327-332 (in Chinese)
    [2] Tawfik A., Salem A. The effect of organic loading rate on bio-hydrogen production from pre-treated rice straw waste via mesophilic up-flow anaerobic reactor. Bioresource Technology, 2012, 107: 186-190
    [3] 康佳丽. 稻草中温高效厌氧消化生产生物气的实验研究. 北京:北京化工大学硕士学位论文, 2007 Kang Jiali. High-efficiency mesophilic biogasification of rice straw by anaerobic digestion. Beijing: Master Dissertation of Beijing University of Chemical Technology, 2007 (in Chinese)
    [4] Kim M., Yang Y., Marikawa-Sakura M. S., et al. Hydrogen production by anaerobic co-digestion of rice straw and sewage sludge. International Journal of Hydrogen Energy, 2012, 37(4): 3142-3149
    [5] 杜静, 常志州, 叶小梅, 等. 底物浓度和接种率对稻秸沼气启动的影响. 农业环境科学学报, 2011, 30(7): 1456-1459 Du Jing, Chang Zhizhou, Ye Xiaomei, et al. Effect of substrate concentration and inoculums ratio on the start-up of anaerobic digestion of rice straw. Journal of Agro-Environment Science, 2011, 30(7): 1456-1459 (in Chinese)
    [6] 李伟. 粪便与玉米秸秆混合发酵产气效果研究. 咸阳: 西北农林科技大学硕士学位论文, 2011 Li Wei. Effect on mixed anaerobic fermentation of dung and corn straw. Xianyang: Master Dissertation of Northwest Agriculture and Forestry University, 2011 (in Chinese)
    [7] Al-Masri M. R. Changes in biogas production due to different ratios of some animal and agricultural wastes. Bioresource Technology, 2001, 77(1): 97-100
    [8] Li L., Li D., Sun Y., et al. Effect of temperature and solid concentration on anaerobic digestion of rice straw in South China. International Journal of Hydrogen Energy, 2010, 35(13): 7261-7266
    [9] Menardo S., Airoldi G., Balsari P. The effect of particle size and thermal pre-treatment on the methane yield of four agricultural by-products. Bioresource Technology, 2012, 104: 708-714
    [10] Tong J., Chen Y. Enhanced biological phosphorus removal driven by short-chain fatty acids produced from waste activated sludge alkaline fermentation. Environmental Science & Technology, 2007, 41(20):7126-7130
    [11] Zhang C., Chen Y. Simultaneous nitrogen and phosphorus recovery from sludge-fermentation liquid mixture and application of the fermentation liquid to enhance municipal wastewater biological nutrient removal. Environmental Science & Technology, 2009, 43(16): 6164-6170
    [12] 任南琪, 王爱杰. 厌氧生物技术原理与应用. 北京: 化学工业出版社, 2004
    [13] 陈一, 周君薇, 闻岳, 等. pH对生物质同步水解产酸的影响. 环境污染与防治, 2011, 33(6): 11-14 Chen Yi, Zhou Junwei, Wen Yue, et al. Effects of pH on litter hydrolysis and short-chain fatty acids accumulation. Environmental Pollution & Control, 2011, 33(6): 11-14 (in Chinese)
    [14] 李玉祥, 刘和, 堵国成, 等. 碱性条件促进太湖蓝藻厌氧发酵产挥发性脂肪酸. 环境工程学报, 2010, 4(1): 209-213 Li Yuxiang, Liu He, Du Guocheng, et al. Enhanced production of volatile fatty acids from waste algae in Taihu Lake under alkaline condition. Chinese Journal of Environmental Engineering, 2010, 4(1): 209-213 (in Chinese)
    [15] Horiuchi J.I., Shimizu T., Tada K., et al. Selective production of organic acids in anaerobic acid reactor by pH control. Bioresource Technology, 2002, 82(3): 209-213
    [16] 苑宏英. 基于酸碱调节的剩余污泥水解酸化及其机理研究. 上海: 同济大学博士学位论文, 2006 Yuan Hongying. Hydrolysis and acidification of excess activated sludge by acidity and alkaline controlling strategy and the mechanism. Shanghai: Doctor Dissertation of Tongji University, 2006 (in Chinese)
    [17] 刘科, 邢广忠, 杨以亭. 秸秆饲料加工与应用技术. 北京:金盾出版社, 2001
    [18] 国家环境保护总局. 水和废水监测分析方法(第4版). 北京: 中国环境科学出版社, 2002
    [19] 张丽英. 饲料分析及饲料质量检测技术(第2版). 北京: 中国农业大学出版社, 2003
    [20] 孙庆瑶, 梅翔, 蔡威, 等. 剩余污泥超声预处理后水解酸化特性. 环境工程学报, 2010, 4(10): 2359-2366 Sun Qingyao, Mei Xiang, Cai Wei, et al. Hydrolysis and acidification characteristics of excess sludge after ultrasonic pretreatment. Chinese Journal of Environmental Engineering, 2010, 4(10): 2359-2366 (in Chinese)
    [21] 陈晓浪, 胡书春, 周祚万. 改性处理对水稻秸秆纤维结构和性能的影响. 功能材料, 2010, 41(S2): 275-277 Chen Xiaolang, Hu Shuchun,Zhou Zuowan. Effect of pretreatments on the structure and properties of rice straw. Journal of Functional Materials, 2010, 41(S2): 275-277 (in Chinese)
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出版历程
  • 收稿日期:  2012-07-30
  • 刊出日期:  2013-09-15
梅翔, 陈娟, 毕良绣, 吴芳芳, 夏红艳, 张朋, 李晨, 任丽丽. 稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响[J]. 环境工程学报, 2013, 7(9): 3548-3554.
引用本文: 梅翔, 陈娟, 毕良绣, 吴芳芳, 夏红艳, 张朋, 李晨, 任丽丽. 稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响[J]. 环境工程学报, 2013, 7(9): 3548-3554.
Mei Xiang, Chen Juan, Bi Liangxiu, Wu Fangfang, Xia Hongyan, Zhang Peng, Li Chen, Ren Lili. Effect of rice straw loading rate and pH on startup of anaerobic fermentation system for production of acids[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3548-3554.
Citation: Mei Xiang, Chen Juan, Bi Liangxiu, Wu Fangfang, Xia Hongyan, Zhang Peng, Li Chen, Ren Lili. Effect of rice straw loading rate and pH on startup of anaerobic fermentation system for production of acids[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3548-3554.

稻秆负荷与pH对稻秆厌氧发酵产酸系统启动过程的影响

  • 1. 南京林业大学化学工程学院环境工程系, 南京 210037
基金项目:

国家"水体污染控制与治理"科技重大专项(2009ZX07101-15)

江苏省"六大人才高峰"项目(164030104)

江苏高校优势学科建设工程资助项目(PAPD)

摘要: 为探讨稻秆负荷(即稻秆VS/污泥VSS)与发酵pH对稻秆厌氧发酵产酸系统启动过程产挥发性脂肪酸(VFAs)效果的影响,利用厌氧搅拌罐反应系统考察在不同的稻秆负荷(0.556、0.945、1.334和1.724 g/g)和不同的发酵pH(8.0、9.0和10.0)启动运行条件下的产酸性能,并分析了系统启动过程产酸与稻秆主要成分降解之间的关系。实验结果表明,VFAs浓度随稻秆负荷提高而增大,随发酵pH的升高而降低;发酵18 d时,发酵pH为9.0时,稻秆负荷1.334 g/g的产酸效果最好,VFAs浓度与稻秆产酸量分别为4 385.10 mg/L和2.19 gVFAs/g稻秆,此时半纤维素、纤维素和酸性洗涤木质素降解率分别为32.69%、22.53%和6.40%;稻秆负荷为0.945 g/g条件下,VFAs浓度在pH为8.0时达到最高值4 409.51 mg/L,此时稻秆降解量也最多,半纤维素、纤维素和酸性洗涤木质素降解率分别为28.60%、47.32%和22.69%。研究表明,稻秆负荷与发酵pH通过影响稻秆半纤维素、纤维素和木质素的降解影响稻秆厌氧发酵产酸的进程和效果。

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