期刊文献+

五里湖南岸生态示范工程对水下光场的改善效果研究 被引量:4

Study on the improvement of underwater light field in Wuli lake ecological demonstration project
在线阅读 下载PDF
导出
摘要 2004年7月20日在五里湖南岸生态示范工程区共布设9个采样点进行水下光场的测定,并采集水样分析悬浮物、叶绿素8、DOC浓度和各组分吸收系数。结果表明,3类主要光衰减物质总悬浮物、叶绿素a和DOC的浓度分别为5.1~38.7mg/L、25.5—86.4pg/L和7.43—8.74mg/L;生态示范工程能明显降低水体悬浮物和叶绿素α浓度,Ⅱ类区总悬浮物、叶绿素a浓度相对Ⅰ类区分别降低了53.4%、33.0%,而Ⅲ类区总悬浮物、叶绿素α浓度相对Ⅰ类区分别降低了77.4%、65.0%。光合有效辐射(PAR)衰减系数在1.81—4.93m^-1间变化,对应的真光层深度为0.93—2.54m,Ⅱ、Ⅲ类区相对Ⅰ类区PAR衰减系数分别降低了42.2%、52.8%,对应的真光层深度则分别增加了73%、112%。αg(440)、αd(440)、αph(440)的变化范围分别为0.79—1.31m^-1、0.41-2.22m^-1、0.73-2.12m^-1。纯水对总吸收的贡献均在15%以下,有色可溶性有机物(CDOM)吸收对总吸收的贡献率在18.16%-40.28%间变化,非藻类颗粒物对总吸收的贡献率在14.40%-37.88%间变化,浮游藻类对总吸收系数的贡献率基本上是各组分贡献率中最高的,在31.05%-45.28%间变化。对PAR衰减系数、真光层深度、透明度等表观光学参数与主要水色因子进行相关分析发现,水体中浮游藻类和有机颗粒物对生态示范区内的水体光学性质影响最大,而围隔外围浮游藻类、非藻类颗粒物对光的衰减相当。 On July 20, 2004, the underwater irradiance was measured and the water samples were collected at 9 sampling sites in Wuli lake ecological demonstration project. The concentrations of total suspended matter (TSM), organic suspended matter (OSM), inorganic suspended matter (ISM), chlorophyll a (Chla), dissolved organic carbon (DOC) and absorption coefficients of total particles, phytoplankton, nonalgal particles and chromophoric dissolved organic matter(CDOM) were measured and calculated. TSM, Chla and DOC are in the range of 5.1 - 38.7 mg/L,25.5 - 86.4 μg/L,7.43 - 8.74 μg/L, respectively. The ecological demonstration project can significantly decrease the concentrations of TSM and Chla. TSM, Chla of Ⅱtype region decrease by 53.4% ,33.0% and TSM, Chla of m type region decrease 77.4%, 65.0% relative to Ⅰ type region, photosytheically available radiation(PAR) diffuse attenuation coefficients range from 1.81 to 4.93 m^-1, and the corresponding euphotic depths range from 0.93 to 2.54 m. PAR diffuse attenuation coefficients of Ⅱ and Ⅲ type region decrease by 42.2%, 52.8%, respectively, and the corresponding euphotic depths increase 73%, 112%, respectively.Absorption coefficient of CDOM at 440 nm( αg(440)), absorption coefficient of nonalgal particles at 400 nm(αd(440)) and absorption coefficient of phytoplankton at 440 nm(αoh(440)) are in the range of 0.79 - 1.31 m^-1, 0.41 - 2.22 m^-1 and 0.73 - 2.12 m^-1. The relative contribution of pure water (αw) to total absorption coefficient (α) integrated over the range of PAR (400 - 700 nm) is less than 15 %. The relative contributions of CDOM ( αg), nonalgal particles (αd) to total absorption coefficient (α) are in the range of 18.16 - 40.28%, 14.40 - 37.88%, respectively. The relative contributions of phytoplankton (%h) to total absorption coefficient (α) is the biggest, ranging from 31.05 to 45.28 %. Based on the regression analysis between PAR attenuation coefficients, euphotic depths, secci disc and main light attenuators and the relative contribution of every component, phytoplankton and organic suspended solid play a main role in regulating the attenuation of light in ecological demonstration project in Wuli lake. However, the roles of phytoplankton and nonagal particles in regulating the attenuation of light are almost equal to Ⅰ type region of the periphery of ecological demonstration project.
出处 《水科学进展》 EI CAS CSCD 北大核心 2007年第1期86-94,共9页 Advances in Water Science
基金 国家"十五"科技专项资助项目(2002AA601013) 中国科学院知识创新工程方向性资助项目(KZCX3-SW-350) 国家自然科学基金资助项目(40601099)~~
关键词 五里湖 生态示范工程 漫射衰减系数 真光层深度 吸收系数 Wuli lake ecological demonstration project diffuse attenuation coefficient euphotic depth sbsorption coefficient
  • 相关文献

参考文献14

  • 1中国科学院南京地理研究所.太湖综合调查初步报告[M].北京:科学出版社,1965..
  • 2陈开宁,包先明,史龙新,陈伟民,兰策介,许海,胡洪云.太湖五里湖生态重建示范工程——大型围隔试验[J].湖泊科学,2006,18(2):139-149. 被引量:87
  • 3张运林,秦伯强,陈伟民,杨顶田,季江.太湖水体光学衰减系数的分布及其变化特征[J].水科学进展,2003,14(4):447-453. 被引量:87
  • 4Schubert H,Sagert S,Forster R M.Evaluation of the different levels of variability in the underwater light field of a shallow estuary[J].Helgoland Marine Research,2001,55(1):12-22.
  • 5Kirk J T O.Light and photosynthesis in aquatic ecosystem[M].Cambridge:Cambridge University Press,Britain,1994.
  • 6Cleveland J S,Weidemann A D.Quantifying absorption by aquatic particles:A multiple scattering correction for glass-fiber filters[J].Limnol and Oceanogr,1993,38:1 321-1 327.
  • 7Bricaud A,Morel A,Prieur L.Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domain[J].Limnol and Oceanogr,1981,26:43-53.
  • 8张运林,秦伯强,陈伟民,罗潋葱.太湖水体中悬浮物研究[J].长江流域资源与环境,2004,13(3):266-271. 被引量:148
  • 9张运林,秦伯强,陈伟民,杨顶田.太湖水体光学衰减系数的特征及参数化[J].海洋与湖沼,2004,35(3):209-213. 被引量:55
  • 10Schelske C L,Aldridge F J,Carrick H J.Phytoplankton-nutrient interactions in Lake Apopka[R].St Johns River Water Manage District,Spec Publ SJ92-SP9,1992.

二级参考文献78

共引文献361

同被引文献91

引证文献4

二级引证文献75

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