Welcome Pratacultural Science,Today is 2025-5-4 Sunday!
Hong-bing Yu, Yang He, Hong-fang Li, Feng Liu, Shu-nan Zhang, Di Wang, Run-lin Xiao. Purification effects of indoor Myriophyllum elatinoides wetland system on ammonium nitrogen wastewater[J]. Pratacultural Science, 2016, 10(11): 2189-2195. DOI: 10.11829/j.issn.1001-0629.2016-0272
Citation: Hong-bing Yu, Yang He, Hong-fang Li, Feng Liu, Shu-nan Zhang, Di Wang, Run-lin Xiao. Purification effects of indoor Myriophyllum elatinoides wetland system on ammonium nitrogen wastewater[J]. Pratacultural Science, 2016, 10(11): 2189-2195. DOI: 10.11829/j.issn.1001-0629.2016-0272

Purification effects of indoor Myriophyllum elatinoides wetland system on ammonium nitrogen wastewater

More Information
  • Received Date: May 22, 2016
  • Published Date: November 19, 2016
  • In the present study, the ammonium nitrogen removal characteristics and nitrogen mass balance in indoor Myriophyllum elatinoides wetland system were analysis. The results showed after 28 days treatment with 200 and 400 mg·L-1 NH4+-N, the removal rates of total nitrogen (TN) and N H4+-N in artificial wastewater were 77.7% and 86.1% , 89.8% and 78.8%, respectively. According to the nitrogen mass balance, 14.7% and 30.2% of the exogenous N H4+-N were transformed into sediment N H4+-N and 25.3% and 11% of exogenous N H4+-N were transformed into sediment NO3-N by 200 mg·L-1 N H4+-N and 400 mg·L-1 N H4+-N treatments; 29.7% and 12.7% of exogenous N H4+-N was absorbed by M. elatinoides; 14.0% and 23.3% of exogenous N H4+-N became residual nitrogen in the water and 16.3% and 22.8% of exogenous N H4+-N eventually to nitrification and denitrification removal. The results suggested that M. elatinoides can effectively purify ammonium nitrogen which provides scientific basis for its application in artificial wetland.
  • [1]
    翁伯琦,雷锦桂,江枝和,林代炎.集约化畜牧业污染现状分析及资源化循环利用对策思考.农业环境科学学报,2010,29(B03):294-299.
    [1]
    Weng B Q,Lei J G,Jiang Z H,Lin D Y.Present situation analysis of intensive livestock pollution and countermeasures consideration of resource recycling.Journal of Agro-Environment Science,2010,29(B03):294-299.(in Chinese)
    [2]
    Ding X,Reddy G B.Nutrient removal and bacterial communities in swine wastewater lagoon and constructed wetlands.Journal of Environmental Science & Health Part A Toxic/hazardous Substances & Environmental Engineering,2010,45(12):1526-1535.
    [2]
    Xu H D,Xi B D,Wang J G,Cai Y.Study on the interception of nitrogen and phosphorus by macrophyte in agriculture drainage ditch.Research of Environmental Sciences,2007,20(2):84-88.(in Chinese)
    [3]
    Zhang H,Kang Y R,Xu C H.Photosynthetic characteristics of 4 wild plants in Yintan wetland in Lanzhou section of Yellow River.Pratacultural Sciences,2016,33(4):622-634.(in Chinese)
    [3]
    Osada T,Kuroda K,Yonaga M.Reducing nitrous oxide gas emissions from fill-and-draw type activated sludge process.Water Research,1995,29(6):1607-1608.
    [4]
    Zhang L,Peng Z H,Wang Y X,Lu S W.Heavy metal distribution,bioaccumulation and translocation characteristics of fourteen plants.Pratacultural Sciences,2014,31(5):833-838.(in Chinese)
    [4]
    Kishida N,Kim J H,Kimochi Y,Nishimura O,Sasaki H,Sudo R.Effect of C/N ratio on nitrous oxide emission from swine wastewater treatment process.Water Science & Technology,2004,49(5-6):359-365.
    [5]
    Li H F,Liu F,Li H J,Xiao R L,He Y,Wang D,Wu J S.Combined process of biofilter,constructed wetland and stabilization pond for treatment of rural decentralized sewage.China Water and Wastewater,2015(2):84-87.(in Chinese)
    [5]
    Karathanasis A D,Thompson Y L.Mineralogy of Iron precipitates in a constructed acid mine drainage wetland.Soil Sicence Society of America Journal,1995,59(6):1773-1781.
    [6]
    Vrhovšek D,Kukanja V,Bulc T.Constructed wetland (CW) for industrial waste water treatment.Water Research,1996,30(10):2287-2292.
    [6]
    Wang W G,Su X H,Tang X Y,Hou Y Q,Hu Q C.Environmental risk assessment and management of exotic wetland plants used for treatment of rural domestic sewage.Journal of Ecology and Rural Environment,2013,29(2):191-196.(in Chinese)
    [7]
    Vymazal J.The use constructed wetlands with horizontal sub-surface flow for various types of wastewater.Ecological Engineering,2009,35(1):1-17.
    [7]
    Lu S Y,Jin X C,Yu G.Nitrogen removal mechanism of constructed wetland.Acta Ecologica Sinica,2006,26(8):2670-2677.(in Chinese)
    [8]
    Li Y J,Yang Y J,Zhang Y R,Teng Y B,Fang P,Lin X Y.Effects of water condition and nitrogen level on soild issolved nitrogen compounds.Plant Nutrition and Fertilizer Science,2010,16(5):1153-1160.(in Chinese)
    [8]
    Lu S L,Hu H Y,Sun Y X,Yang J.Effect of carbon source on the denitrification in constructed wetlands.Journal of Environmental Sciences,2009,21(8):1036-1043.
    [9]
    Mitsch W J,Gosselink J G.The value of wetlands:Importance of scale and landscape setting.Ecological Economics,2000,35(1):25-33.
    [9]
    Tong C H,Yang X E,Pu P M.Effects and mechanism of hydrophytes on control of release of nutrient salts in lake sediment.Journal of Agro-Environment Science,2003,22(6):673-676.(in Chinese)
    [10]
    Gao Y,Ma T,Zhang Z H,Zhang L,Wang Y,Yan S H.Nutrient removals from eutrophic water by Eichhornia crassipes at different growth stages.Journal of Agro-Environment Science,2014(12):2427-2435.(in Chinese)
    [10]
    徐红灯,席北斗,王京刚,蔡洋.水生植物对农田排水沟渠中氮、磷的截留效应.环境科学研究,2007,20(2):84-88.
    [11]
    Bouldin J L,Farris J L,Moore M T,Cooper C M.Vegetative and structural characteristics of agricultural drainages in the Mississippi Delta landscapes.Environmental Pollution,2004,132(3):403-411.
    [11]
    Dai S G,Zhang M S,Zhuang Y Y.Transportation and translocation of nitrogen in sediment.Acta Scientiae Circumstantiae,1990(1):1-9.(in Chinese)
    [12]
    Sun Z G,Liu J S.Nitrification-denitrification and its affecting factors in wetland soil——A review.Chinese Journal of Soil Science,2008,39(6):1462-1467.(in Chinese)
    [12]
    张华,康雅茸,徐春华.兰州银滩黄河湿地4种植物的光合特性.草业科学,2016,33(4):622-634.
    [13]
    Jiao L X,Wang S R,Jin X C.Physiological responses of Myriophyllum spicatum to ammonium nitrogen.Chinese Journal of Applied Ecology,2009,20(9):2283-2288.(in Chinese)
    [13]
    张丽,彭重华,王莹雪,卢思维.14种植物对土壤重金属的分布、富集及转运特性.草业科学,2014,31(5):833-838.
    [14]
    Pan Q,Zou G Y,Song X F.Effects of nitrate-nitrogen stress on the growth and physiological indices of two submerged macrophytes.Shanghai Environmental Sciences,2010(1):16-20.(in Chinese)
    [14]
    Chen G,Guo S,Kronzucker H,Shi W.Nitrogen use efficiency (NUE) in rice links to N H 4 + toxicity and futile N H 4 + cycling in roots.Plant & Soil,2013,369(1-2):351-363.
    [15]
    李红芳,刘锋,黎慧娟,肖润林,何洋,王迪,吴金水.生物滤池/人工湿地/稳定塘工艺处理农村分散污水.中国给水排水,2015(2):84-87.
    [16]
    王文国,苏小红,汤晓玉,侯远青,胡启春.用于农村生活污水处理的常见外来湿地植物的环境风险评估与管理.生态与农村环境学报,2013,29(2):191-196.
    [17]
    Li X,Zhang M M,Liu F,Li Y,He Y,Zhang S N,Wu J S.The significance of Myriophyllum elatinoides for swine wastewater treatment:Abundance and community structure of ammonia-oxidizing microorganisms in sediments.PLoS One,2015,10(10):1-14.
    [18]
    Li X,Zhang M M,Liu F,Li Y,He Y,Zhang S N,Wu J S.Abundance and distribution of microorganisms involved in denitrification in sediments of a Myriophyllum elatinoides purification system for treating swine wastewater.Environmental Science and Pollution Research,2015,22(22):17906-17916.
    [19]
    鲍士旦.土壤农化分析.3版.北京:中国农业出版社,2000.
    [20]
    Chung A K C,Wu Y,Tam N F Y.Nitrogen and phosphate mass balance in a sub-surface flow constructed wetland for treating municipal wastewater.Ecological Engineering,2008,32(1):81-89.
    [21]
    卢少勇,金相灿,余刚.人工湿地的氮去除机理.生态学报,2006,26(8):2670-2677.
    [22]
    李亚娟,杨俞娟,张友润,滕一波,方萍,林咸永.水分状况与供氮水平对土壤可溶性氮素形态变化的影响.植物营养与肥料学报,2010,16(5):1153-1160.
    [23]
    Serna M D,Borras R,Legaz F,Primo-Millo E.The influence of nitrogen concentration and ammonium/nitrate ratio on N-uptake,mineral composition and yield of citrus.Plant & Soil,1992,147(1):13-23.
    [24]
    童昌华,杨肖娥,濮培民.水生植物控制湖泊底泥营养盐释放的效果与机理.农业环境科学学报,2003,22(6):673-676.
    [25]
    高岩,马涛,张振华,张力,王岩,严少华.不同生长阶段凤眼莲净化不同程度富营养化水体的效果研究.农业环境科学学报,2014(12):2427-2435.
    [26]
    戴树桂,张明顺,庄源益.底泥中氮的主要迁移转化过程及其转化模型的研究.环境科学学报,1990(1):1-9.
    [27]
    孙志高,刘景双.湿地土壤的硝化-反硝化作用及影响因素.土壤通报,2008,39(6):1462-1467.
    [28]
    焦立新,王圣瑞,金相灿.穗花狐尾藻对铵态氮的生理响应.应用生态学报,2009,20(9):2283-2288.
    [29]
    潘琦,邹国燕,宋祥甫.硝氮胁迫对不同沉水植物生理生长的影响.上海环境科学,2010(1):16-20.

Catalog

    Article views (1104) PDF downloads (391) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return