蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估

李因梁, 杨沫, 聂耳, 史沫, 杨晓英. 蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估[J]. 环境工程学报, 2014, 8(6): 2443-2450.
引用本文: 李因梁, 杨沫, 聂耳, 史沫, 杨晓英. 蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估[J]. 环境工程学报, 2014, 8(6): 2443-2450.
Li Yinliang, Yang Mo, Nie Er, Shi Mo, Yang Xiaoying. Evaluation of effects of earthworms and plants in pollutant removal in earthworm ecofilter[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2443-2450.
Citation: Li Yinliang, Yang Mo, Nie Er, Shi Mo, Yang Xiaoying. Evaluation of effects of earthworms and plants in pollutant removal in earthworm ecofilter[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2443-2450.

蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估

  • 基金项目:

    上海自然科学基金资助项目(11ZR1402900)

    复旦大学“985”三期项目(2012SHKXQN009)

    复旦大学新教师基金

  • 中图分类号: X703

Evaluation of effects of earthworms and plants in pollutant removal in earthworm ecofilter

  • Fund Project:
  • 摘要: 构建具有不同蚯蚓和植物配置的4个单级蚯蚓生态滤池,依次编号为A(无蚯蚓无植物)、B(有蚯蚓无植物)、C(有蚯蚓栽种芦苇)和D(有蚯蚓栽种水生鸢尾)。通过比较4个滤池在6个月实验期间对化学需氧量(COD)和总氮(TN)的去除效率,系统分析蚯蚓和植物对滤池去除污染物的影响。实验分2个阶段进行:5月上旬至9月上旬,滤池进水碳氮比恒定为6;9月中旬至11月中旬,滤池每周进水碳氮比交替为3、6、9。研究结果表明,蚯蚓对滤池去除COD有一定的促进作用,且作用强度显著受到进水碳氮比的影响。植物的存在与种类对滤池去除COD效率没有显著影响。蚯蚓和植物对滤池的TN去除效率都没有显著影响。滤池进水的碳氮比是显著影响滤池去除TN效率的主要因素。
  • 加载中
  • [1] Yang X., Jiang G., Luo X., et al. Preliminary mapping of high-resolution rural population distribution based on imagery from Google Earth: A case study in the Lake Tai basin, eastern China. Applied Geography, 2012, 32(2): 221-227
    [2] 张利民,刘伟京,尤本胜,等. 太湖流域漕桥河污染物来源特征. 环境科学研究, 2009, 22(10): 1150-1155 Zhang L.M., Liu W.J.,You B.S., et al. Characteristics of pollutant sources of caoqiao river in Taihu Lake Basin. Research of Environmental Sciences, 2009, 22(10): 1150-1155(in Chinese)
    [3] Wang L., Zheng Z., Luo X., et al. The current pollution status and control technology of the Taihu Lake Basin, Jiangsu Province, China. International Journal of Environmental Studies, 2010, 67(2): 195-205
    [4] 杨晓英, 罗兴章, 隋国栋,等. 基于清流水网的流域水污染控制战略和技术体系. 自然杂志, 2012, 34(2): 102-107 Yang X.Y., Luo X.Z., Sui G.D., et al. Strategy and technology systems for watershed pollution control built on the concept of clean river network. Chinese Journal of Nature, 2012, 34(2): 102-107(in Chinese)
    [5] Verbyla M., Oakley S., Mihelcic J. Wastewater infrastructure for small cities in an urbanizing world: Integrating the protection of human health and the environment with resource recovery and food security. Environmental Science & Technology, 2013,47(8):3598-3605
    [6] Sinha R.K., Bharambe B., Chaudhari U. Sewage treatment by vermifiltration with synchronous treatment of sludge by earthworms: A low-cost sustainable technology over conventional systems with potential for decentralization. Environmentalist, 2008, 28(4): 409-420
    [7] 李军状, 罗兴章, 郑正, 等. 塔式蚯蚓生态滤池处理集中型农村生活污水工程设计. 中国给水排水, 2009, 25(4): 35-38 Li J.Z., Luo X.Z., Zheng Z., et al. Design of tower earthworm ecofilter system for treatment of centralized rural domestic sewage. China Water & Wastewater, 2009, 25(4): 35-38(in Chinese)
    [8] Fang C., Zheng Z., Luo X., et al. Effect of hydraulic load on domestic wastewater treatment and removal mechanism of phosphorus in earthworm ecofilter. Fresenius Environmental Bulletin, 2010, 19(6): 1099-1108
    [9] 郭飞宏, 郑正, 张继彪. PCR-DGGE 技术分析塔式蚯蚓生态滤池微生物群落结构. 中国环境科学, 2011, 31(4): 597-602 Guo F.H., Zheng Z., Zhang J.B. Research on microbe community in tower earthworm ecology-filter by PCR-DGGE. China Environmental Science, 2011, 31(4): 597-602(in Chinese)
    [10] Zhao L.M., Wang Y.Y., Yang J., et al. Earthworm-microorganism interactions: A strategy to stabilize domestic wastewater sludge. Water Research, 2010, 44(8): 2572-2582
    [11] Wang L., Zheng Z., Luo X., et al. Performance and mechanisms of a microbial-earthworm ecofilter for removing organic matter and nitrogen from synthetic domestic wastewater. Journal of Hazardous Materials, 2011, 195(11): 245-253
    [12] Gagnon V., Chazarenc F., Koiv M., et al. Effect of plant species on water quality at the outlet of a sludge treatment wetland. Water Research, 2012, 46(16):5305-5315
    [13] 尧水红, 刘艳青, 王庆海,等. 河滨缓冲带植物根系和根际微生物特征及其对农业面源污染物去除效果. 中国生态农业学报, 2010, 18(2): 365-370 Yao S.H., Liu Y.Q., Wang Q.H., et al. Characteristics of aquatic plant roots, soil microbes and agricultural non-point source pollutant mitigation in riparian buffer zones. Chinese Journal of Eco-Agriculture, 2010, 18(2): 365-370 (in Chinese)
    [14] Liu X., Huang S., Tang T., et al. Growth characteristics and nutrient removal capability of plants in subsurface vertical flow constructed wetlands. Ecological Engineering, 2012, 44(7): 189-198
    [15] Mesquita M.C., Albuquerque A., Amaral L., et al. Effect of vegetation on the performance of horizontal subsurface flow constructed wetlands with lightweight expanded clay aggregates. International Journal of Environmental Science and Technology, 2013, 10(3): 433-442
    [16] 邢美燕, 杨健, 马小杰,等. 蚯蚓生物滤池的硝化性能及其影响因素研究. 中国给水排水, 2008, 24(3): 9-12 Xing M.Y.,Yang J., Ma X.J., et al. Study on nitrification performance of vermibiofilter and its influencing factors. China Water & Wastewater, 2008, 24(3): 9-12 (in Chinese)
    [17] 杨健, 杨键, 杨居川,等. 水力负荷对蚯蚓生物滤池污水处理效果的影响. 环境科学, 2008, 29(7): 1890-1896 Yang J., Yang J., Yang J.C., et al. Effect of hydraulic load distribution on sewage treatment efficiency of earthworm bio-filter. Environmental Science, 2008, 29(7): 1890-1896 (in Chinese)
    [18] 杨健, 邓德汉, 陈巧燕, 等. 蚯蚓生物滤池启动驯化阶段蚯蚓生理生态适应性研究. 环境科学, 2009, 30(8): 2358-2365 Yang J., Deng D.H.,Chen Q.Y., et al. Ecological and physiological adaptabilities of earthworm in biofilter under domestication stage. Environmental Science, 2009, 30(8): 2358-2365(in Chinese)
    [19] 杨健, 赵丽敏, 陈巧燕, 等. 水力负荷对生物滤池中蚯蚓抗氧化酶和消化酶活性的影响. 环境科学, 2009, 30(4): 1029-1035 Yang J., Zhao L.M., Chen Q.Y., et al. Effect of hydraulic loading on antioxidant enzyme and digestive enzyme activities of earthworm in biofilter. Environmental Science, 2009, 30(4): 1029-1035 (in Chinese)
    [20] Wang L., Guo F.H., Zheng Z., et al. Enhancement of rural domestic sewage treatment performance and assessment of microbial community diversity and structure using tower vermifiltration. Bioresource Technology, 2011, 102(20): 9462-9470
    [21] 王永谦, 杨林章, 冯彦房, 等. 蚯蚓活动对生态滤池微生物群落功能多样性的影响. 中国农学通报, 2011, 27(32): 162-167 Wang Y.Q., Yang L.Z., Feng Y.F., et al. Effects of earthworm activities on the functional diversity of soil microbial community in the eco-filter. Chinese Agricultural Science Bulletin, 2011, 27(32): 162-167(in Chinese)
    [22] Taylor M., Clarke W., Greenfield P. The treatment of domestic wastewater using small-scale vermicompost filter beds. Ecological Engineering, 2003, 21(2-3): 197-203
    [23] Billore S.K., Prashant, Sharma J.K. Treatment performance of artificial floating reed beds in an experimental mesocosm to improve the water quality of river Kshipra. Water Science and Technology, 2009, 60(11): 2851-2859
    [24] Bialowiec A., Janczukowicz W., Randerson P.F. Nitrogen removal from wastewater in vertical flow constructed wetlands containing LWA/gravel layers and reed vegetation. Ecological Engineering, 2011, 37(6): 897-902
    [25] Merlin G., Gaillot A. Treatment of dairy farm effluents using a settling tank and reed beds: Performance analysis of a farm-scale system. Transactions of the Asabe, 2010, 53(5):1681-1688
    [26] Chen X., Pauly U., Rehfus S., et al. Personal care compounds in a reed bed sludge treatment system. Chemosphere, 2009, 76(8): 1094-1101
    [27] OECD. Guidelines for testing of chemicals simulation test: Aerobic sewage treatment. Paris:Organisation for Economic Co-operation and Development, 1996
    [28] Fang C., Guo F., Luo X., et al. Performance of a three-stage tower earthworm ecofilter for simultaneous removal of carbon and nutrients from domestic wastewater. Fresenius Environmental Bulletin, 2011, 20(1A): 235-243
    [29] 郭飞宏, 方彩霞, 罗兴章, 等. 多级蚯蚓生态滤池处理生活污水研究. 环境化学, 2010, 29(6): 1096-1100 Guo F.H., Fang C.X., Luo X.Z., et al. Study on multistage earthworm ecofilter for sewage treatment. Environmental Chemistry, 2010, 29(6): 1096-1100(in Chinese)
    [30] Xia S., Li J., Wang R. Nitrogen removal performance and microbial community structure dynamics response to carbon nitrogen ratio in a compact suspended carrier biofilm reactor. Ecological Engineering, 2008, 32(3): 256-262
    [31] 方彩霞, 罗兴章, 郭飞宏, 等. 蚯蚓生态滤池对生活污水中氮的去除作用. 环境科学, 2010, 31(2): 352-356 Fang C.X., Luo X.Z., Guo F.H., et al. Nitrogen removal in earthworm ecofilter treating domestic wastewater. Environmental Science, 2010, 31(2): 352-356(in Chinese)
  • 加载中
计量
  • 文章访问数:  1664
  • HTML全文浏览数:  1033
  • PDF下载数:  661
  • 施引文献:  0
出版历程
  • 收稿日期:  2013-05-28
  • 刊出日期:  2014-05-29
李因梁, 杨沫, 聂耳, 史沫, 杨晓英. 蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估[J]. 环境工程学报, 2014, 8(6): 2443-2450.
引用本文: 李因梁, 杨沫, 聂耳, 史沫, 杨晓英. 蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估[J]. 环境工程学报, 2014, 8(6): 2443-2450.
Li Yinliang, Yang Mo, Nie Er, Shi Mo, Yang Xiaoying. Evaluation of effects of earthworms and plants in pollutant removal in earthworm ecofilter[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2443-2450.
Citation: Li Yinliang, Yang Mo, Nie Er, Shi Mo, Yang Xiaoying. Evaluation of effects of earthworms and plants in pollutant removal in earthworm ecofilter[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2443-2450.

蚯蚓生态滤池中蚯蚓与植物对污水净化的作用评估

  • 1. 复旦大学环境科学与工程系, 上海 200433
基金项目:

上海自然科学基金资助项目(11ZR1402900)

复旦大学“985”三期项目(2012SHKXQN009)

复旦大学新教师基金

摘要: 构建具有不同蚯蚓和植物配置的4个单级蚯蚓生态滤池,依次编号为A(无蚯蚓无植物)、B(有蚯蚓无植物)、C(有蚯蚓栽种芦苇)和D(有蚯蚓栽种水生鸢尾)。通过比较4个滤池在6个月实验期间对化学需氧量(COD)和总氮(TN)的去除效率,系统分析蚯蚓和植物对滤池去除污染物的影响。实验分2个阶段进行:5月上旬至9月上旬,滤池进水碳氮比恒定为6;9月中旬至11月中旬,滤池每周进水碳氮比交替为3、6、9。研究结果表明,蚯蚓对滤池去除COD有一定的促进作用,且作用强度显著受到进水碳氮比的影响。植物的存在与种类对滤池去除COD效率没有显著影响。蚯蚓和植物对滤池的TN去除效率都没有显著影响。滤池进水的碳氮比是显著影响滤池去除TN效率的主要因素。

English Abstract

参考文献 (31)

返回顶部

目录

/

返回文章
返回