期刊文献+

我国若干湖泊磷转化率的区域差异性研究 被引量:8

The regional differences of phosphorus transfer rate in some lakes of China
下载PDF
导出
摘要 湖泊生态分区有利于其富营养化控制,湖泊营养盐流动特征是湖泊生态分区的重要指标之一,通过线性回归和模型分析相结合的方法,对表征我国湖泊营养盐流动特征的磷最大转化率指标开展了研究.结果表明,我国湖泊总磷(TP)向叶绿素a(Chl-a)转化的最大转化率(Rmax)模型为Rmax=k0/(1-η)(k0和η分别代表TP与Chl-a现存量线性回归方程的斜率和生态系统中磷传递效率),不同湖泊磷最大转化率与所在地多年平均积温显著相关,显著影响磷转化率的积温阈值范围为3400~4730oC.d,该积温阈值可判定我国不同区域湖泊生态系统中磷流动速率的快慢,表征我国湖泊磷的流动速率区域差异性. Lake ecological division does benefits to controlling eutrophication,and nutrient flow characteristic is an essential index to lake ecological division.The phosphorus maximum transfer rate,an index that characterizing nutrient flow in lake ecosystem,was calculated in China by linear regression and model analysis.The results showed that the maximum transfer rate(from TP to Chl-a) could be modeled as Rmax = k0/(1-η)(Rmax,k0 and η represent the capacity of transforming TP into the actual primary productivity(Chl-a),the slope of linear regression betweenTP and Chl-a contents of the 28 lakes in multiyear,and the phosphorus transfer rate,respectively).The phosphorus flow characteristics in China was significantly correlated with accumulated temperature and could be judged through an accumulated temperature threshold from 3400℃.d to 4730℃.d,which indicated obvious regionalization characteristics for phosphorus flow rates in China.
出处 《中国环境科学》 EI CAS CSCD 北大核心 2012年第11期2075-2082,共8页 China Environmental Science
基金 国家水专项(2009ZX07106-001-002) 河南理工大学博士基金项目(B2012-008)
关键词 湖泊 生态分区 转化率 阈值范围 lake ecological division phosphorus the transfer rate threshold
  • 相关文献

参考文献40

  • 1Smith J, Haney J. Foodweb transfer, accumulation, and depuration of microcystins, a cyanobacterial toxin, in pumpkinseed sunfish (Lepomis gibbosus) [J]. Toxicon., 2006, 48(5):580-589.
  • 2Guo L. Doing battle with the green monster of Taihu Lake [J]. Science, 2007,317:1166.
  • 3张红叶,蔡庆华,唐涛,汪兴中,杨顺益,孔令惠.洱海流域湖泊生态系统健康综合评价与比较[J].中国环境科学,2012,32(4):715-720. 被引量:36
  • 4Stone R. From remarkable rescue to restoration of lost habitat [J]. Science, 2008,322:184.
  • 5Brookes J D, Carey C C. Resilience to Blooms [J]. Science, 2011,334:46-47.
  • 6霍守亮,席北斗,咎逢宇,等.不同生态分区参照湖泊筛选技术方法探讨[C]//中国环境科学学会环境标准与基准专业委员会2011年学术研讨会,南京,2011.
  • 7刘开第,吴和琴,庞彦军.盲数可信度的概念及BM模型[J].运筹与管理,1998,7(4):43-50. 被引量:5
  • 8Havens K E, Fukushima T, Xie P, et al. Nutrient dynamics and the eutrophication of shallow lakes Kasumigaru (Japan), Donghu (PR China), and Okeechobee (USA) [J]. Environmental Pollution, 2001,111(2):263-272.
  • 9Reed-Andersen T, Carpenter S R, Lathrop R C. Phosphorus flow in a watershed-lake ecosystem [J]. Ecosystems, 2000,3(6):561- 573.
  • 10Brett M T, Benjamin M M. A review and reassessment of lake phosphorus retention and the nutrient loading concept [J]. Freshwater Biology, 2008,53:194-211.

二级参考文献174

共引文献382

同被引文献123

引证文献8

二级引证文献103

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部