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生物炭对去除生物滞留池氨氮及雨水持留的影响

田婧 刘丹

田婧, 刘丹. 生物炭对去除生物滞留池氨氮及雨水持留的影响[J]. 西南交通大学学报, 2017, 30(6): 1201-1207. doi: 10.3969/j.issn.0258-2724.2017.06.022
引用本文: 田婧, 刘丹. 生物炭对去除生物滞留池氨氮及雨水持留的影响[J]. 西南交通大学学报, 2017, 30(6): 1201-1207. doi: 10.3969/j.issn.0258-2724.2017.06.022
TIAN Jing, LIU Dan. Biochar Incorporation into Bioretention for Enhanced Ammonium Removal and Runoff Retention[J]. Journal of Southwest Jiaotong University, 2017, 30(6): 1201-1207. doi: 10.3969/j.issn.0258-2724.2017.06.022
Citation: TIAN Jing, LIU Dan. Biochar Incorporation into Bioretention for Enhanced Ammonium Removal and Runoff Retention[J]. Journal of Southwest Jiaotong University, 2017, 30(6): 1201-1207. doi: 10.3969/j.issn.0258-2724.2017.06.022

生物炭对去除生物滞留池氨氮及雨水持留的影响

doi: 10.3969/j.issn.0258-2724.2017.06.022
基金项目: 

美国特拉华州交通部科研基金资助项目(1739-1)

详细信息
    作者简介:

    田婧(1987-),女,博士,研究方向为城市雨水及循环水处理,E-mail:tian_wenling@126.com

Biochar Incorporation into Bioretention for Enhanced Ammonium Removal and Runoff Retention

  • 摘要: 为了加强对城市雨水的处理,提出了将生物炭添加于生物滞留池填料土,以黄松木为原料,在550℃条件下制备生物炭,分析生物炭对生物滞留池填料土的理化性质和雨水中氨氮吸附能力的影响;测量了对照填料土和添加了4%生物炭的改良填料土在-15 300~0 cm H2O土壤水吸力范围的水分特征曲线;采用圆盘入渗仪和DISC软件测算了田间生物滞留池对照和改良填料土的导水率.研究结果表明,生物炭的施用提高了酸性填料土的pH值,降低填料土容重达7%,增加总孔隙率约28%,增大阳离子交换量达33%;施用生物炭后,填料土对氨氮的去除率从-26%~28%提高到50%~90%;生物炭的施用使填料土有效水含量从0.016 cm3/m-3提高到0.063 cm3/m-3,饱和导水率增大了1.5倍;生物炭可从水质和水量两方面提高生物滞留池对城市雨水中氨氮的去除,并有助于城市雨洪控制.

     

  • 荆红卫,华蕾,陈圆圆,等. 城市雨水管网降雨径流污染特征及对受纳水体水质的影响[J]. 环境化学,2012,31(2):208-215. JING Hongwei, HUA Lei, CHEN Yuanyuan, et al. Pollution characteristics of runoff in urban storm sewer and its impaction to receiving water[J]. Environmental Chemistry, 2012, 31(2):208-215.
    HUNT W F, DAVIS A P, TRAVER R G. Meeting hydrologic and water quality goals through targeted bioretention design[J]. J. Environ. Eng., 2012, 138(6):698-707.
    AHIABLAME L M, ENGEL B A, CHAUBEY I. Effectiveness of low impact development practices:literature review and suggestions for future research[J]. Water, Air, Soil Pollut., 2012, 223(7):4253-4273.
    LEHMANN J, JOSEPH S. Biochar for environmental management:science, technology and implemetation[M]. 2nd. New York:Routledge, 2015:1-12.
    NCDWQ. Stormwater best management practices manual[R]. Raleigh:N. C. Department of Environment and Natural Resources, Divison of Water Quality, 2007.
    HSIEH C H, DAVIS A P. Evaluation and optimization of bioretention media for treatment of urban storm water runoff[J]. Journal of Environmental Engineering-Asce, 2005, 131(11):1521-1531.
    CLEMENT C R. A simple and reliable tension table[J]. Journal of Soil Science, 1966, 17(1):133-135.
    WANG Y, HU Y, ZHAO X, et al. Comparisons of biochar properties from wood material and crop residues at different temperatures and residence times[J]. Energy & Fuels, 2013, 27(10):5890-5899.
    BROWN R A, KERCHER A K, NGUYEN T H, et al. Production and characterization of synthetic wood chars for use as surrogates for natural sorbents[J]. Organic Geochemistry, 2006, 37(3):321-333.
    MUKOME F N, ZHANG X, SILVA L C, et al. Use of chemical and physical characteristics to investigate trends in biochar feedstocks[J]. J. Agric. Food Chem., 2013, 61(9):2196-2204.
    ROUQUEROL F, ROUQUEROL I, SING K. Adsorption by powders and porous solids[M]. London:Academic Press, 1999:8.
    KNOWLES R. Denitrification[J]. Microbiol. Rev., 1982, 46(1):43-70.
    TIAN J, MILLER V, CHIU P C, et al. Nutrient release and ammonium sorption by poultry litter and wood biochars in stormwater treatment[J]. Sci. Total Environ., 2016, 553:596-606.
    SPRYNSKYY M, LEBEDYNETS M, TERZYK A P, et al. Ammonium sorption from aqueous solutions by the natural zeolite transcarpathian clinoptilolite studied under dynamic conditions[J]. J. Colloid Interface Sci., 2005, 284(2):408-415.
    HALE S E, ALLING V, MARTINSEN V, et al. The sorption and desorption of phosphate-P, ammonium-N and nitrate-N in cacao shell and corn cob biochars[J]. Chemosphere, 2013, 91(11):1612-1619.
    GOBEL P, DIERKES C, COLDEWEY W G. Storm water runoff concentration matrix for urban areas[J]. J. Contam Hydrol, 2007, 91(1-2):26-42.
    LEFEVRE G H, PAUS K H, NATARAJAN P, et al. Review of dissolved pollutants in urban storm water and their removal and fate in bioretention cells[J]. Journal of Environmental Engineering, 2015, 141(1):6609-6624.
    OUYANG L, WANG F, TANG J, et al. Effects of biochar amendment on soil aggregates and hydraulic properties[J]. Journal of Soil Science and Plant Nutrition, 2013, 13(4):991-1002.
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出版历程
  • 收稿日期:  2016-03-30
  • 刊出日期:  2017-12-25

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