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几何法测定生物栅中美人蕉根系面积
引用本文:杨清海,李秀艳,凌焕然,徐亚同.几何法测定生物栅中美人蕉根系面积[J].生态与农村环境学报,2007,23(4):95-97.
作者姓名:杨清海  李秀艳  凌焕然  徐亚同
作者单位:1. 华东师范大学,环境科学系,上海,200062;辽东学院,城市环境系,辽宁,丹东,118001
2. 华东师范大学,环境科学系,上海,200062
基金项目:国家高技术研究发展计划(863计划)
摘    要:设计了1种测定生物栅中水生植物根系面积的方法.通过分别测定美人蕉(Canna indica)3级根平均直径和2级根平均直径计算得到植物根系总面积.这种方法比常用的不分级测定植物根系直径及表面积的方法准确度高1个数量级,可以应用于大根系植物的根系测定.研究结果表明,生物栅装置中美人蕉根系总面积39.4 m2,3级根系面积是2级根系的22.2倍,而体积比接近2:1,3级根和2级根平均直径比小于1:10.应用生物栅技术处理富营养化水体时,表面积占绝对优势的3级根系在对氮、磷等元素的吸收,作为微生物附着的重要载体及加强植物与填料的固着能力,改善根系与填料的空间结构等方面起重要作用.

关 键 词:根系面积  美人蕉  生物栅  3级根系  几何法  测定  生物栅  美人蕉  根系  面积  Device  Grid  Biological  Roots  Surface  Area  Method  of  作用  空间结构  改善  能力  固着  填料  加强  重要载体
文章编号:1673-4831(2007)04-0095-03
修稿时间:2006-12-10

A Geometric Method of Determining Surface Area of Canna Roots in the Biological Grid Device
YANG Qing-hai,LI Xiu-yan,LING Huan-ran,XU Ya-tong.A Geometric Method of Determining Surface Area of Canna Roots in the Biological Grid Device[J].Journal of Ecology and Rural Environment,2007,23(4):95-97.
Authors:YANG Qing-hai  LI Xiu-yan  LING Huan-ran  XU Ya-tong
Institution:1. Department of Environment Science, East China Normal University, Shanghai 200062, China; 2. Department of City Environment, Eastern Liaoning University, Dandong 118001, China
Abstract:Canna indica growing in biological grid were analyzed for its growth and surface area distribution characteristics of its root system.A geometric calculation method was designed to calculate surface area of its root system by determining diameters of its second-class and third-class roots,separately.The result of the calculation by this method is 10 times as accurate as those by the common method,in which calculation is done based on root diameters regardless of root classes.The surface area of the canna roots is 39.4 m2,and the surface area of the third-class roots is 22.2 times as big as the second-class roots in the system.In the processes of eutrophication waterbody treatment by biological grid system the third-class roots play an important role in absorbing N and P,carrying microorganisms,enhancing adhering capacity of plant with fillers and improving the spatial structure of root system and fillers.
Keywords:surface area of root systern  Canna indica  biological grid  third-class root
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