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菹草腐解-金鱼藻生长耦合作用对水质及植物生长的影响
摘要点击 1789  全文点击 1146  投稿时间:2014-12-02  修订日期:2015-01-28
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中文关键词  金鱼藻  菹草  季相交替  水质  植物生理
英文关键词  Ceratophyllum demersum  Potamogeton crispus  seasonal changes  water quality  plant physiology
作者单位E-mail
马月 南京师范大学地理科学学院, 南京 210023 my2j2l@sina.com 
王国祥 南京师范大学地理科学学院, 南京 210023 wangguoxiang@njnu.edu.cn 
曹勋 南京师范大学地理科学学院, 南京 210023  
王小云 南京师范大学地理科学学院, 南京 210023  
马杰 南京师范大学地理科学学院, 南京 210023  
中文摘要
      通过室内实验模拟沉水植物季相交替过程,分析菹草腐解-金鱼藻生长耦合作用对水质变化影响,探讨菹草不同残体量腐解对金鱼藻生长的影响. 结果表明,不同残体量条件下,金鱼藻均能将水体营养盐及有机质保持在相对较低水平,且实验第29 d后基本保持稳定,其中DTN<0.514 mg ·L-1,TN<0.559 mg ·L-1,TP<0.080 mg ·L-1,DTP<0.014 mg ·L-1,TOC<13.94 mg ·L-1,Chl-a<26.546 mg ·L-1,菹草腐解-金鱼藻生长耦合作用对水质的改善效果明显,其中在20 g残体条件下处理效果较好,对水体TN、DTN、TP、TOC和Chl-a的去除率分别达到89.67%、52.51%、94.99%、55.59%和98.55%; 不同残体量条件下金鱼藻的叶绿素、可溶性蛋白、丙二醛含量均比初始值增加,残体释放的营养盐促进了金鱼藻生长,在20 g残体条件下其对金鱼藻生长的促进作用最好. 结果表明在水体含有20 g残体条件下,菹草腐解-金鱼藻生长耦合作用对水质的改善及植物生长的促进效果最显著.
英文摘要
      In order to study the coupling effects of decomposed Potamogeton crispus (P. crispus) and growing Ceratophyllum demersum (C. demersum) on water quality and the effects of different decomposed biomass on plant growth, the simulating experiments for seasonal changes of submerged macrophytes were conducted. The results indicated that the nutrient concentrations in water remained at a relatively low level with different decomposed biomass and they remained stable after 29 days of the experiment. The concentrations of total dissolved nitrogen (DTN), total nitrogen (TN), total phosphorous (TP), total dissolved phosphorous (DTP), organic carbon (TOC) and chlorophyll-a (Chl-a) were lower than 0.514, 0.559, 0.080, 0.014, 13.94 and 26.546 mg ·L-1, respectively. The obvious improving effects on water quality were observed under coupling condition of decomposition and growth, especially when the treatment of decomposed P. crispus was 20 g, and the removal efficiency of TN, DTN, TP, DTP, TOC and Chl-a reached 89.67%, 52.51%, 94.99%, 55.59% and 98.55%, respectively. Compared with the physiology of C. demersum in the early stage, the contents of total chlorophyll, soluble protein and malondialdehyde all increased under different decomposed biomass conditions, which suggested that the nutrient released from decomposed P. crispus promoted the growth of C. demersum. The coupling effects between P. crispus decomposition and C. demersum growth showed better improving effect on water quality and growth of C. demersum with treatment of 20 g decomposed P. crispus.

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