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应用生态学报 ›› 2009, Vol. 20 ›› Issue (11): 2820-2826.

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周丛藻类及其在水质净化中的应用

陈重军1,2;韩志英1,2**;朱荫湄3,4;吴伟祥3   

  1. 1浙江省水体污染控制与环境安全技术重点试验室, 杭州 310029;2浙江大学环境保护研究所, 杭州 310029;3农业部面源污染控制重点开放试验室, 杭州310029;4浙江大学生态环境研究中心, 杭州 310029
  • 出版日期:2009-11-20 发布日期:2009-11-20

Periphyton and its application in water purification

CHEN Chong-jun1,2|HAN Zhi-ying1,2|ZHU Yin-mei3,4|WU Wei-xiang3   

  1. 1Zhejiang Provincical Key Laboratory for Water Pollution Control and Environmental Safety, Hangzhou 310029, China|2Institute of Environmental Scie
    nce and Technology, Zhejiang University, Hangzhou 310029, China;3Ministry of Agriculture Key Laboratory of Nonpoint Source Pollution Control, Hangzhou 310029, China|4Research Center of Eco-environmental Science, Zhejiang University, Hangzhou 310029, China
  • Online:2009-11-20 Published:2009-11-20

摘要: 周丛藻类广泛存在于自然界水体中,具有生物量大、生态功能强、水质响应灵敏等特征.周丛藻类通过吸收代谢利用、吸附和络合等过程去除水体污染物质,用于水质净化,具有耐污能力强,N、P去除效果好,藻类细胞回收利用价值高等优点,推广应用前景广阔.近年开发的藻丛刷系统、周丛藻类生物膜系统和周丛藻类水产养殖系统等已经成功用于畜禽水产养殖废水、生活污水处理.而周丛藻类的生存规律、对污染物浓度的生理响应机理和污染物质吸收利用的分子生物学机制仍有待进一步研究.

关键词: 周丛藻类, 藻类, 生态特征, 水质净化, 植被动态, 群落结构, 生物多样性, 气候变化, 植被响应

Abstract: Periphyton widely exists in natural water bodies, with the characteristics of huge biomass generation, strong ecological function, and sensitive respo
nse to water quality. It removes the pollutants in water bodies mainly through the processes of absorption, metabolism, adsorption, and complexation, etc. Owing to its high tolerance against pollution and high removal efficiency for nitrogen and phosphorus, as well as the feasibility of recycling its cells at low cost, periphyton is a promising candidate for developing the treatment techniques of water purification. The newlydeveloped artificial periphyton systems, e.g., algal turf scrubbers, periphyton biofilm systems, periphyton aquaculture systems, have been successfully applied in treating livestock manure, aquiculture wastewater, and municipal sewage. However, further researches are needed to understand the growth patterns of periphyton, its physiological responses to pollutants concentration, and its molecular biological mechanisms in removing pollutants.

Key words: periphyton, algae, ecological characteristics, water purification, vegetation dynamic, community structure, biodiversity, climate change, vegetaion response.