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低动力复合净水系统净化生态农庄景观池水质

Keywords: 低动力复合净水系统,生态农庄景观池,水质净化

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Abstract:

采用生物填料、阿科蔓生态基和生态浮盆等材料构建低动力复合净水系统(LCWPS)进行生态农庄人工景观池水质净化技术示范研究。系统稳定运行后的周年监测结果表明,整体系统使人工景观池的CODMn、TN、NH4+-N、TP和浊度分别下降61.1%~62.8%、36.0%~39.9%、14.3%~35.7%、66.7%~79.5%和76.8%~79.8%,水质溶解氧浓度(DO)上升72.7%~126.0%,景观池水质达到《地表水环境质量标准》(GB3838-2002)中景观水域需要的V类水质标准,并能长期保持稳定。从管理维护成本角度考虑,利用LCWPS净化生态农庄人工景观池水质能达到节能节水的目的。

References

[1]  曹蓉,邢海,金文标. 生物膜处理城市河道污染水体的挂膜试验研究. 环境工程学报,2008,2(3):374-377 Cao R., Xing H., Jin W.B. Study on biofilm colonization in treatment of urban polluted river water.Chinese Journal of Environmental Engineering, 2008,2(3):374-377(in Chinese)
[2]  罗思亭,张饮江,李娟英,等.沉水植物与生态浮床组合对水产养殖污染控制的研究. 生态与农村环境学报,2011,27(2):87-94 Luo S. T., Zhang Y.J., Li J. Y., et al.Effect of combination of submerged macrophyte with ecological floating bed on aquacultural pollution controlling. Rural Eco-Environment, 2011,27(2):87-94(in Chinese)
[3]  国家环境保护总局.水和废水监测分析方法(第4版).北京:中国环境科学出版社,2002
[4]  汤显强,李金中,李学菊,等. 间歇曝气对生物填料人工湿地氮磷去除性能的影响. 农业环境科学学报,2008,27(1):318-322 Tang X.Q., Li J.X., Li X. J., et al. Effect of intermittent aeration on nitrogen and phosphorus removal in constructed wetlands with bilofilm carrier as substrate. Journal of Agro-Environment Science, 2008,27(1):318-322(in Chinese)
[5]  程庆霖,张勇,黄民生,等. 新型生物填料槽预处理黑臭河水的研究. 华东师范大学学报(自然科学版),2011,2011(1):135-140 Chen Q. S., Zhang Y., Huang M.S., et al. Study of a new bio-packing tank for the pretreatment of malodorous river water. Journal of East China Normal University (Natural Science), 2011,2011(1):135-140(in Chinese)
[6]  Lin Y. F., Jing S. R. Effects of macrophytes and external carbon sources on nitrate removal from ground water in constructed wetland. Environmental Pollution, 2002, 119(3):413-420
[7]  周小平, 王建国, 薛利红, 等. 浮床植物系统对富营养化水体中氮、磷净化特征的初步研究. 应用生态学报, 2005, 16(11): 2199-2203 Zhou X. P., Wang J. G., Xue L. H., et al. N and P removal characters of eutrophic water body under planted float. China Journal of Applied Ecology, 2005, 16(11): 2199-2203(in Chinese)
[8]  彭常福. 浅析人工水池生态景观设计及水体净化. 安徽林业科技,2011,37(3):40-43 Peng C.F. Analysis on ecological landscape design and water purification of artifical pool. Anhui Forestry Science and Technology, 2011,37(3):40-43 (in Chinese)
[9]  王诚信,凌晖,史可红.污染河流的纯氧曝气复氧. 上海环境科学,1999,18(9):411-413 Wang C. X., Ling H., Shi K. H. Oxygen resoration of polluted water with pure oxygen aeration. Shanghai Environmental Science, 1999,18(9):411-413 (in Chinese)
[10]  薛朝霞,阮晓红,蒋小欣,等. 引水冲污治理苏州的水环境. 中国给水排水,2002,18(10):33-35 Xue C. X., Yuan X. H., Jiang X. X., et al. Water environment of Suzhou treated by water filling. China Water & Wastewater, 2002,18(10):33-35 (in Chinese)
[11]  和晓荣,孙珮石,王洁,等. 新型除藻剂在滇池富营养化水体治理中的应用. 昆明理工大学学报(理工版),2007,32(3):87-91 He X. R., Sun P. S., Wang J., et al. Application of a new type of algaecide to eutrophic waterbody control of Dianchi lake. Journal of Kunming University of Science and Technology (Natural Science), 2007,32(3):87-91(in Chinese)
[12]  罗固源, 郑剑锋, 许晓毅, 等. 4种浮床栽培植物生长特征及吸收氮、磷能力的比较. 环境科学学报, 2009, 29(2): 285-290 Luo G. Y., Sun P. S., Xu X. Y., et al. Comparison of the growth characteristics and nutrient uptake of four kinds of plants cultivated on a floating-bed. Acta Science Cricumstantiae, 2009, 29(2): 285-290 (in Chinese)
[13]  胡一珍,张永明. 用生物膜方法修复受污染河道水. 上海师范大学学报(自然科学版),2007,36(6):91-98 Hu Y. Z., Zhang Y. M. The bioremediation of polluted river water based on biofilm technique. Journal of Shanghai Normal University (Natural Sciences), 2007,36(6):91-98 (in Chinese)
[14]  Sun G., Austin D. A mass balance study on nitrification and deammonification in vertical flow constructed wetlands treating landfill leachate. Water Science and Technology, 2007, 56(3):117-123

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