Effect of Aquatics Combination System in Purifying Eutrophic Scenic Waters

XU Ming-yu, LIU Wen, TAN Guang-wen, HUANG Shao-bin, WU Jin-hua, LU Yi-fei, CHEN Ping

Journal of Changjiang River Scientific Research Institute ›› 2019, Vol. 36 ›› Issue (4) : 27-31.

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Journal of Changjiang River Scientific Research Institute ›› 2019, Vol. 36 ›› Issue (4) : 27-31. DOI: 10.11988/ckyyb.20170878
WATER RESOURCES AND ENVIRONMENT

Effect of Aquatics Combination System in Purifying Eutrophic Scenic Waters

  • XU Ming-yu1,2,3, LIU Wen2, TAN Guang-wen1, HUANG Shao-bin4, WU Jin-hua5, LU Yi-fei1, CHEN Ping2,3
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Abstract

An aquatics combination system composed of Bischofia javanica, Hygrophila salicifolia, Vallisneria natans, Macropodus opercularis, Cipangopaludina Cahayensi and biomass char was applied to the treatment of eutrophic garden scenic waters. The growth status of aquatics in this system and the aquatics’ effect of eliminating larvae and wiggler as well as the purification effect for TN, TP, COD, NH+4-N, and NO-2-N in the water body were examined. Results showed that no larvae or wiggler was found in the aquatics combination system which enjoyed a good growth status and a satisfactory effect of removing pollutants. The removal rate of TN, TP, COD, NH+4-N, and NO-2-N reached 64.4%, 49.5%, 65.7%, 73.8% and 82.6%, respectively. The content of TN, COD and DO met the standard of surface water quality IV-level specified in national standard GB 3838—2002, and NH+4-N measured up to level Ⅱ. In conclusion, each component in the aquatics combination system performs its duty, and the technology is pollution-free, hence is conducive to the sustainable water ecological restoration.

Key words

aquatics / biomass char / aquatics combination system / eutrophic scenic waters / purification effect

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XU Ming-yu, LIU Wen, TAN Guang-wen, HUANG Shao-bin, WU Jin-hua, LU Yi-fei, CHEN Ping. Effect of Aquatics Combination System in Purifying Eutrophic Scenic Waters[J]. Journal of Changjiang River Scientific Research Institute. 2019, 36(4): 27-31 https://doi.org/10.11988/ckyyb.20170878

References

[1] 朱亮,蔡金榜,陈 艳.城市缓流水体污染成因分析及维护对策.水科学进展,2002,(3):383-388.
[2] 王建华,潘伟斌.城区富营养化景观水体的生物修复技术.四川环境,2005,(5):34-36.
[3] HILTON J,O’HARE M,BOWES M J,et al.How Green is My River? A New Paradigm of Eutrophication in Rivers.Science of the Total Environment,2006,365(1/2/3): 66-83.
[4] 白丽荣,郑博颖,芦站根.不同动植物组合对衡水湖水体净化作用研究.安徽农业科学,2015,12:236-237,252.
[5] 肖小雨,尹 丽,龙婉婉,等.水生动植物联合作用净化不同富营养化景观水体研究.环境科学与管理,2014,(6):18-23.
[6] 王晓菲.水生动植物对富营养化水体的联合修复研究.重庆:重庆大学,2012.
[7] 黄翔峰,王 珅,陈国鑫,等.水生动植物组合对水产养殖废水的净化能力.水处理技术,2015,(2):62-66.
[8] 邹俊良,杨京平,杨 虎.水生植物-滤食性动物用于水产养殖废水净化的研究.浙江大学学报(农业与生命科学版),2013,(4):444-451.
[9] 中国国家环境保护总局.水和废水监测分析方法.4版.北京:中国环境出版社,2002.
[10] GB 3838—2002,地表水环境质量标准.北京:中国环境科学出版社,2002.
[11] 马鸿媚. 氮磷营养盐对养殖水体的影响. 福建环境,2001,(5):21-22.
[12] 陈 静,宋光同,汪 翔,等. 不同密度铜锈环棱螺和梨形环棱螺对水体环境的影响效果. 安徽农业科学,2012,40(23):11708-11709,11842.
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