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Pilot-scale study on preserving eutrophic landscape pond water with a combined recycling purification system

  • Xuechu Chen*
  • , Xiaochen Huang
  • , Shengbing He
  • , Xiaojuan Yu
  • , Mengjie Sun
  • , Xiaodong Wang
  • , Hainan Kong
  • *此作品的通讯作者
  • Shanghai Jiao Tong University
  • Shanghai East Sea Marine Engineering Survey and Design Institute
  • Whenzhou Water Supply Company

科研成果: 期刊稿件文章同行评审

摘要

Landscape ponds are vulnerable to eutrophication due to continuous pollutant load from surface run-off and excessive fish feeding. A combined recycling purification system consisting of an aquatic plant filter, bio-zeolite filter, bio-ceramic filter, gravel bed filter, and in situ algal control facility was built to solve this problem. The advantage of this system is its ability to preserve landscape pond water quality and control algal biomass without periodically refreshing water. A pilot-scale experiment was conducted within an artificial landscape pond. The results suggested that the system performed well in pollutant removal; the removal efficiencies for SS, TN, NH4+-N, NO3--N, NO2--N, and PO43--P were all above 50% at hydraulic loading rate of 1.2m/d. The aquatic plant filter performed the best for SS, NH4+-N and phosphorus removal. The bio-ceramic filter accounted for the primary COD removal. The gravel bed filter built for denitrophication eliminated 60.6% of TN load and 62.0% of NO3--N load. When the purification system was stopped, the pond water quality deteriorated rapidly in six days. When the system resumed operation, COD, TP, TN immediately declined in the landscape area. Additionally, the purification system showed high efficiency in algal removal. To further understand the algal reduction mechanism, floating plants and the aerator were removed. In response, an increase of Chl-a was observed, suggesting that in situ treatment was an important supplement to the purification system.

源语言英语
页(从-至)383-389
页数7
期刊Ecological Engineering
61
DOI
出版状态已出版 - 12月 2013
已对外发布

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