城市污水厂污泥内循环自热高温微好氧消化的处理

李文浩, 金宁奔, 楼紫阳, 朱南文, 袁海平. 城市污水厂污泥内循环自热高温微好氧消化的处理[J]. 环境工程学报, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
引用本文: 李文浩, 金宁奔, 楼紫阳, 朱南文, 袁海平. 城市污水厂污泥内循环自热高温微好氧消化的处理[J]. 环境工程学报, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
LI Wenhao, JIN Ningben, LOU Ziyang, ZHU Nanwen, YUAN Haiping. Internal circulation autothermal thermophilic aerobic digestion for sewage sludge treatment[J]. Chinese Journal of Environmental Engineering, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
Citation: LI Wenhao, JIN Ningben, LOU Ziyang, ZHU Nanwen, YUAN Haiping. Internal circulation autothermal thermophilic aerobic digestion for sewage sludge treatment[J]. Chinese Journal of Environmental Engineering, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048

城市污水厂污泥内循环自热高温微好氧消化的处理

  • 基金项目:

    国家高技术研究发展计划(2011AA060906)

    上海市科委重点项目(14DZ1207306,14DZ1207307)

  • 中图分类号: X703

Internal circulation autothermal thermophilic aerobic digestion for sewage sludge treatment

  • Fund Project:
  • 摘要: 利用一种新型的内循环自热式污泥高温微好氧消化装置对城市污泥进行消化处理。通过在反应器中增加内筒的方法,使得内筒中污泥通过搅拌器的提升作用在内外筒之间循环以提高消化速率。结果表明,增加内筒之后,消化系统的污泥VS去除率在第16天达到了41.52%,而未添加内筒的反应器污泥到第20天时仍未到达稳定化水平。因此,加了内筒的单段式ATAD消化反应器与不加内筒的单段式ATAD消化反应器相比可以使得污泥更快地达到稳定状态。另外,与没有内筒相比,增加内筒后反应器顶部和底部的ORP和pH值均维持较高水平,消除了曝气死角。增加内筒后,顶部和底部污泥上清液中SCOD、VFA、TN、NH4+-N和TP浓度基本保持一致,而没有内筒则相差较大,表明增加内筒后,反应器内污泥混合更加均匀。
  • [1] 梁鹏, 黄霞, 钱易, 等. 污泥减量化技术的研究进展[J]. 环境污染治理技术与设备, 2003, 4(1):44-52
    [2] 丁瑾, 朱南文, 宋立杰. 电化学预处理提高剩余污泥好氧消化性能研究[J]. 环境污染与防治, 2010,32(5):52-56
    [3] 程洁红, 戴雅, 张春勇, 等. 污泥的高温微好氧消化-厌氧消化工艺研究[J]. 环境工程学报, 2015, 9(12):6059-6064
    [4] LIU S, ZHU N, LI L Y. The one-stage autothermal thermophilic aerobic digestion for sewage sludge treatment[J]. Chemical Engineering Journal, 2011, 174(2):564-570
    [5] JIN N, JIN B, ZHU N, et al. Disinhibition of excessive volatile fatty acids to improve the efficiency of autothermal thermophilic aerobic sludge digestion by chemical approach[J]. Bioresource Technology, 2015, 175:120-127
    [6] LLORET E, PASTOR L, MARTÍNEZ-MEDINA A, et al. Evaluation of the removal of pathogens included in the proposal for a European directive on spreading of sludge on land during autothermal thermophilic aerobic digestion (ATAD)[J]. Chemical Engineering Journal, 2012, 198:171-179
    [7] LAYDEN N M, MAVINIC D S, KELLY H G, et al. Autothermal thermophilic aerobic digestion (ATAD).Part I:Review of origins, design, and process operation[J]. Journal of Environmental Engineering and Science, 2007, 6(6):665-678
    [8] KELLY H G, MAVINIC D S, TRUEBLOOD B, et al. Autothermal thermophilic aerobic digestion research application and operational experience[C].Proceedings of the WEFTEC 2003 Workshop W104 Thermophilic Digestion:Hot Update. 2003
    [9] LIU S, ZHU N, NING P, et al. The one-stage autothermal thermophilic aerobic digestion for sewage sludge treatment:Effects of temperature on stabilization process and sludge properties[J]. Chemical Engineering Journal, 2012, 197:223-230
    [10] LIU S, ZHU N, LI L Y. The one-stage autothermal thermophilic aerobic digestion for sewage sludge treatment:Stabilization process and mechanism[J]. Bioresource Technology, 2012, 104:266-273
    [11] 程洁红, 张善发, 陈华, 等. 自热式高温好氧消化污泥稳定化系统[J]. 中国给水排水, 2005, 21(7):9-13
    [12] 程洁红, 张善发, 陈华, 等. 自热式高温好氧消化的污泥稳定化中试[J]. 中国给水排水, 2005, 21(11):18-22
    [13] LIU S, NING P, ZHU N, et al. Semicontinuous operation of one-stage autothermal thermophilic aerobic digestion of sewage sludge:Effects of retention time[J]. Journal of Environmental Engineering, 2013, 139(3):422-427
    [14] 程洁红, 张善发, 陈华, 等. 曝气量对自热式高温好氧消化(ATAD)中试工艺运行的影响[J]. 水处理技术, 2006, 32(5):39-41
    [15] HARTMAN R B, SMITH D G, BENNETT E R, et al. Sludge stabilization through aerobic digestion[J]. Journal (Water Pollution Control Federation), 1979,51(10):2353-2365
    [16] STATON K L, ALLEMAN J E, PRESSLET R L, et al. 2nd generation autothermal thermophilic aerobic digestion:Conceptual issues and process advancements[J]. Proceedings of the Water Environment Federation, 2001,12:1484-1495
    [17] LI X, MA H, WANG Q, et al. Isolation, identification of sludge-lysing strain and its utilization in thermophilic aerobic digestion for waste activated sludge[J]. Bioresource Technology, 2009, 100(9):2475-2481
    [18] LEE J W, LEE H W, KIM S W, et al. Nitrogen removal characteristics analyzed with gas and microbial community in thermophilic aerobic digestion for piggery waste treatment[J]. Water Science and Technology, 2004, 49(5/6):349-357
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出版历程
  • 收稿日期:  2016-11-24
  • 刊出日期:  2017-08-26
李文浩, 金宁奔, 楼紫阳, 朱南文, 袁海平. 城市污水厂污泥内循环自热高温微好氧消化的处理[J]. 环境工程学报, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
引用本文: 李文浩, 金宁奔, 楼紫阳, 朱南文, 袁海平. 城市污水厂污泥内循环自热高温微好氧消化的处理[J]. 环境工程学报, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
LI Wenhao, JIN Ningben, LOU Ziyang, ZHU Nanwen, YUAN Haiping. Internal circulation autothermal thermophilic aerobic digestion for sewage sludge treatment[J]. Chinese Journal of Environmental Engineering, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048
Citation: LI Wenhao, JIN Ningben, LOU Ziyang, ZHU Nanwen, YUAN Haiping. Internal circulation autothermal thermophilic aerobic digestion for sewage sludge treatment[J]. Chinese Journal of Environmental Engineering, 2017, 11(9): 5182-5187. doi: 10.12030/j.cjee.201610048

城市污水厂污泥内循环自热高温微好氧消化的处理

  • 1. 上海交通大学环境科学与工程学院, 上海 200240
基金项目:

国家高技术研究发展计划(2011AA060906)

上海市科委重点项目(14DZ1207306,14DZ1207307)

摘要: 利用一种新型的内循环自热式污泥高温微好氧消化装置对城市污泥进行消化处理。通过在反应器中增加内筒的方法,使得内筒中污泥通过搅拌器的提升作用在内外筒之间循环以提高消化速率。结果表明,增加内筒之后,消化系统的污泥VS去除率在第16天达到了41.52%,而未添加内筒的反应器污泥到第20天时仍未到达稳定化水平。因此,加了内筒的单段式ATAD消化反应器与不加内筒的单段式ATAD消化反应器相比可以使得污泥更快地达到稳定状态。另外,与没有内筒相比,增加内筒后反应器顶部和底部的ORP和pH值均维持较高水平,消除了曝气死角。增加内筒后,顶部和底部污泥上清液中SCOD、VFA、TN、NH4+-N和TP浓度基本保持一致,而没有内筒则相差较大,表明增加内筒后,反应器内污泥混合更加均匀。

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