影响无砾石微孔管地下渗滤系统的几个主要因素

王成端, 党振华. 影响无砾石微孔管地下渗滤系统的几个主要因素[J]. 环境工程学报, 2012, 6(12): 4497-4503.
引用本文: 王成端, 党振华. 影响无砾石微孔管地下渗滤系统的几个主要因素[J]. 环境工程学报, 2012, 6(12): 4497-4503.
Wang Chengduan, Dang Zhenhua. Main factors affecting gravel-less perforated pipe leach fields[J]. Chinese Journal of Environmental Engineering, 2012, 6(12): 4497-4503.
Citation: Wang Chengduan, Dang Zhenhua. Main factors affecting gravel-less perforated pipe leach fields[J]. Chinese Journal of Environmental Engineering, 2012, 6(12): 4497-4503.

影响无砾石微孔管地下渗滤系统的几个主要因素

  • 基金项目:

    四川省科技支撑计划(2009SZ0244)

  • 中图分类号: X703

Main factors affecting gravel-less perforated pipe leach fields

  • Fund Project:
  • 摘要: 为了进一步明确植物、土壤、管道对无砾石微孔管地下渗滤系统中污染物去除的贡献能力大小,采用2种植物、2种管道、2种土壤组合形成8个平行系统,采用对比实验方法研究了植物、管道、土壤对地下渗滤系统中污染物去除效果的改变。结果表明,植物、土壤、管道任一因素的单独影响效应显著,但是组合后的交互效应不存在显著差异。而且,在土壤、植物、管道3因素中限定其中2个因素,对比研究另外一种因素的条件下,得到在COD、TP、NH4+-N、TN的去除效果上,变化趋势相同,均是渗滤管外径200 mm>渗滤管外径160 mm,吉祥草>灯芯草,砂壤土>粘土,且部分存在显著性差异(P<0.05)。
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  • [1] 高拯民,李宪法.城市污水土地处理利用设计手册.北京:中国标准出版社,1991
    [2] 雷明,李凌云.人工湿地土壤堵塞现象及机理探讨.工业水处理,2004,24(10):9-12 Lei Ming,Li Lingyun.Soil clogging phenomena and mechanisms discussion in constructed wetlands.Industrial Water Treatment,2004,24(10):9-12(in Chinese)
    [3] Nichlos J. M.,May R. C.Leaching system conduit.United States Patent:4759661,1988-07-26
    [4] 冯华军.分散式生活污水处理工艺开发及机理研究.杭州:浙江大学博士学位论文,2008 Feng Huajun.Research on mechanisms of decentralized treatment process for domestic sewage.Hangzhon: Doctoral Dissertation of Zhejiang University,2008
    [5] Siegrist R. L.,Boyle W. C.Wastewater-induced soil clogging development.Journal of Environmental Engineering,1987,113(3):550-566
    [6] Thomas R. E.,Schwartz W. A.,Bendixen T. W.Soil chemical changes and infiltration rate reduction under sewage spreading.Soil Sci.,1996,30(11):641-646
    [7] Palmeira E. M., Remigio A. F. N., Ramos M. L. G., et al.A study on biological clogging of nonwoven geotextiles under leachate flow.Geotextiles and Geomembranes,2008,26(3):205-219
    [8] 林大仪.土壤学.北京:中国林业出版社,2002
    [9] Scholz M.Wetland Systems to Control Urban Runoff.Amsterdam:Elesevier,2006
    [10] Sakadevan K.,Bavor H. J.Phosphate adsorption characteristics of soils,slags and zeolite to be used as substrates in constructed wetland systems.Water Research,1998,32(2):393-399
    [11] 刘超翔,胡洪营,张建,等.不同深度人工复合生态床处理农村生活污水的比较.环境科学,2003,24(5):92-96 Liu Chaoxiang,Hu Hongying,Zhang Jian,et al.Rural sewage treatment performance of constructed wetlands with different depths.Environmental Science, 2003,24(5):92-96(in Chinese)
    [12] 鲍士旦.土壤农化分析.北京:中国农业出版社, 2005
    [13] Sun G. Z.,Zhao Y. Q.,Allen S.Enhanced removal of organic matterand ammoniacal-nitrogen in a column experiment of tidal flow constructed wetland system.J. Biotechn.,2005,115(2):189-197
    [14] Vymazal J.The use of sub-surface constructed wetlands for wastewater treatment in the Czech Republic:10 years experience.Ecol. Eng.,2002,18(5):633-646
    [15] Brix H.Do macrophytes play a role in constructed treatment wetlands.Wat. Sci. Tech.,1997,35(5):11-17
    [16] 肖海文,邓荣森,翟俊,等.溶解氧对人工湿地处理受污染城市河流水体效果的影响.环境科学,2006,27(12):2426-2431 Xiao Haiwen,Deng Rongsen,Zhai Jun,et al.Effect of DO distribution on contaminated urban stream water treatment performance in constructed wetland.Environmental Scie nce,2006,27(12):2426-2431(in Chinese)
    [17] Metcalf and Eddy Inc.Wastewater Engineering:Treatment,Disposal and Reuse.New Delhi:McGraw-Hill Companies.Inc.,2003
    [18] 吴建强,阮晓红,王雪.人工湿地中水生植物的作用和选择.水资源保护,2005,21(1):1-6 Wu Jianqiang,Ruan Xiaohong,Wang Xue.Selection and function of aquatic plants in constructed wetlands.Water Resources Protection,2005,21(1):1-6(in Chinese)
    [19] 徐德福,李映雪,方华,等.4种湿地植物的生理性状对人工湿地床设计的影响.农业环境科学学报,2009,28(3):587-591 Xu Defu,Li Yingxue,Fang Hua,et al.Effects of physiological character of four wetland plants on design of the constructed wetland bed.Journal of Agro-Environment Science,2009,28(3):587-591(in Chinese)
    [20] 赵官成,梁健,淡静雅,等.土壤微生物与植物关系研究进展.西南林业大学学报,2011,31(1):83-88 Zhao Guancheng,Liang Jian,Dan Jingya,et al.Review of studies on relationship between soil microbes and plants.Journal of Southwest Forestry University,2011,31(1):83-88(in Chinese)
    [21] 陈波,林建国,陈清,等.根系分泌物及其对土壤污染物的作用.湖北农业科学,2010,49(3):718-721 Chen Bo,Lin Jianguo,Chen Qing,et al. Root exudates and its effect on soil pollutants. Hubei Agricultural Sciences,2010,49(3):718-721(in Chinese)
    [22] 周宁.利用植物修复污染土壤的研究综述.安徽农业科学,2011,39(6):3390-3391,3404 Zhou Ning.Review on the phytoremediation of contam inated soil.Journal of Anhui Agri. Sci.,2011,39(6):3390-3391,3404(in Chinese)
    [23] 王延平,王华田.植物根分泌的化感物质及其在土壤中的环境行为.土壤通报,2010,41(2):501-507 Wang Yanping,Wang Huatian.Allelochemicals from roots exudation and its environment behavior in soil.Chinese Journal of Soil Science,2010,41(2):501-507(in Chinese)
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出版历程
  • 收稿日期:  2011-11-07
  • 刊出日期:  2012-12-07
王成端, 党振华. 影响无砾石微孔管地下渗滤系统的几个主要因素[J]. 环境工程学报, 2012, 6(12): 4497-4503.
引用本文: 王成端, 党振华. 影响无砾石微孔管地下渗滤系统的几个主要因素[J]. 环境工程学报, 2012, 6(12): 4497-4503.
Wang Chengduan, Dang Zhenhua. Main factors affecting gravel-less perforated pipe leach fields[J]. Chinese Journal of Environmental Engineering, 2012, 6(12): 4497-4503.
Citation: Wang Chengduan, Dang Zhenhua. Main factors affecting gravel-less perforated pipe leach fields[J]. Chinese Journal of Environmental Engineering, 2012, 6(12): 4497-4503.

影响无砾石微孔管地下渗滤系统的几个主要因素

  • 1. 四川理工学院,自贡 643000
  • 2. 西南科技大学环境与资源学院,绵阳 621010
基金项目:

四川省科技支撑计划(2009SZ0244)

摘要: 为了进一步明确植物、土壤、管道对无砾石微孔管地下渗滤系统中污染物去除的贡献能力大小,采用2种植物、2种管道、2种土壤组合形成8个平行系统,采用对比实验方法研究了植物、管道、土壤对地下渗滤系统中污染物去除效果的改变。结果表明,植物、土壤、管道任一因素的单独影响效应显著,但是组合后的交互效应不存在显著差异。而且,在土壤、植物、管道3因素中限定其中2个因素,对比研究另外一种因素的条件下,得到在COD、TP、NH4+-N、TN的去除效果上,变化趋势相同,均是渗滤管外径200 mm>渗滤管外径160 mm,吉祥草>灯芯草,砂壤土>粘土,且部分存在显著性差异(P<0.05)。

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