Investigation of seasonal variability of CDOM fluorescence in the southern changjiang river estuary by EEM-PARAFAC
详细信息    查看全文
  • 作者:Ying Bai ; Rongguo Su ; Xiurong Han ; Chuansong Zhang
  • 关键词:southern Changjiang River Estuary ; chromophoric dissolved organic matter ; fluorescence excitation emission matrix spectroscopy ; parallel factor analysis ; humification index ; fluorescence index
  • 刊名:Acta Oceanologica Sinica
  • 出版年:2015
  • 出版时间:October 2015
  • 年:2015
  • 卷:34
  • 期:10
  • 页码:1-12
  • 全文大小:3,219 KB
  • 参考文献:Andersson C A, Bro R. 2000. The N-way Toolbox for MATLAB. Chemometrics and Intelligent Laboratory Systems, 52(1): 1-CrossRef
    Baber C B, Dobkin D P, Huhdanpaa H. 1996. The Quickhull algorithm for convex hulls. ACM Transaction Mathematical Software, 22(4): 469-83CrossRef
    Birdwell J E, Engel A S. 2010. Characterization of dissolved organic matter in cave and spring waters using UV-vis absorbance and fluorescence spectroscopy. Organic Geochemistry, 41(3): 270-80CrossRef
    Blough N V, Del Vecchio R. 2002. Chromophoric DOM in the coastal environment. In: Hansell D, Carlson C, eds. Biogeochemistry of Marine Dissolved Organic Matter. New York: Academic Press, 509-46CrossRef
    Bro R. 1997. PARAFAC. Tutorial and applications. Chemometrics and Intelligent Laboratory Systems, 38(2): 149-71CrossRef
    Coble P G. 1996. Characterization of marine and terrestrial DOM in seawater using excitation–emission matrix spectroscopy. Marine Chemistry, 51(4): 325-46CrossRef
    Coble P G. 2007. Marine optical biogeochemistry: the chemistry of ocean color. Chemical Reviews, 107(2): 402-18CrossRef
    Cory R M, McKnight D M. 2005. Fluorescence spectroscopy reveals ubiquitous presence of oxidized and reduced quinones in dissolved organic matter. Environment Science & Technology, 39(21): 8142-149CrossRef
    Gao Lei, Fan Daidu, Li Daoji, et al. 2010. Fluorescence characteristics of chromophoric dissolved organic matter in shallow water along the Zhejiang coasts, southeast China. Marine Environmental Research, 69(3): 187-97CrossRef
    Guéguen C, Granskog M A, McCullough G, et al. 2011. Characterisation of colored dissolved organic matter in Hudson Bay and Hudson Strait using parallel factor analysis. Journal of Marine Systems, 88(3): 423-33CrossRef
    Guo Weidong, Stedmon C A, Han Yuchao, et al. 2007. The conservative and non-conservative behavior of chromophoric dissolved organic matter in Chinese estuarine waters. Marine Chemistry, 107(3): 357-66CrossRef
    Hargreaves B R. 2003. Water column optics and penetration of UVR. In: Helbling E W, Zagarese H E, eds. UV Effects in Aquatic Organisms and Ecosystems. Cambridge UK: The Royal Society of Chemistry, 59-08CrossRef
    Holbrook R D, Yen J H, Grizzard T J. 2006. Characterizing natural organic material from the Occoquan Watershed (Northern Virginia, US) using fluorescence spectroscopy and PARAFAC. Science of the Total Environment, 361(1-): 249-66CrossRef
    Huguet A, Vacher L, Saubusse S, et al. 2010. New insights into the size distribution of fluorescent dissolved organic matter in estuarine waters. Organic Geochemistry, 41(6): 595-10CrossRef
    Kowalczuk P, Cooper W J, Durako M J, et al. 2010. Characterization of dissolved organic matter fluorescence in the South Atlantic Bight with use of PARAFAC model: Relationships between fluorescence and its components, absorption coefficients and organic carbon concentrations. Marine Chemistry, 118(1-): 22-6CrossRef
    Kowalczuk P, Durako M J, Young H, et al. 2009. Characterization of dissolved organic matter fluorescence in the South Atlantic Bight with use of PARAFAC model: interannual variability. Marine Chemistry, 113(3-): 182-96CrossRef
    Li Maotian, Xu Kaiqin, Watanabe M, et al. 2007. Long-term variations in dissolved silicate, nitrogen, and phosphorus flux from the Yangtze River into the East China Sea and impacts on estuarine ecosystem. Estuarine, Coastal and Shelf Science, 71(1-): 3-2CrossRef
    Lin Jing. 2007. Distributions of dissolved organic carbon and particulate organic carbon in the Changjiang Estuary and its adjacent area (in Chinese) [dissertation]. Shanghai: East China Normal University
    Liu J P, Xu K H, Li A C, et al. 2007. Flux and fate of Yangtze River sediment delivered to the East China Sea. Geomorphology, 85(3-): 208-24CrossRef
    Luciani X, Mounier S, Paraquetti H H M, et al. 2008. Tracing of dissolved organic matter from the SEPETIBA Bay (Brazil) by PARAFAC analysis of total luminescence matrices. Marine Environmental Research, 65(2): 148-57CrossRef
    Maie N, Yamashita Y, Cory R M, et al. 2012. Application of excitation emission matrix fluorescence monitoring in the assessment of spatial and seasonal drivers of dissolved organic matter composition: Sources and physical disturbance controls. Applied Geochemistry, 27(4): 917-29CrossRef
    McKnight D M, Boyer E W, Westerhoff P K, et al. 2001. Spectrofluorometric characterization of dissolved organic matter for indication of precursor organic material and aromaticity. Limnology and Oceanography, 46(1): 38-8CrossRef
    Murphy K R, Stedmon C A, Waite T D, et al. 2008. Distinguishing between terrestrial and autochthonous organic matter sources in marine environments using fluorescence spectroscopy. Marine Chemistry, 108(1-): 40-8CrossRef
    Nieke B, Reuter R, Heuermann R, et al. 1997. Light absorption and fluorescence properties of chromophoric dissolved organic matter (CDOM), in the St. Lawrence estuary (Case 2 waters).
  • 作者单位:Ying Bai (1)
    Rongguo Su (1)
    Xiurong Han (1)
    Chuansong Zhang (1)
    Xiaoyong Shi (1)

    1. Key Laboratory of Marine Chemistry Theory and Technology of Ministry of Education, Ocean University of China, Qingdao, 266100, China
  • 刊物主题:Oceanography; Climatology; Ecology; Engineering Fluid Dynamics; Marine & Freshwater Sciences; Environmental Chemistry;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1869-1099
文摘
The southern Changjiang River Estuary has attracted considerable attention from marine scientists because it is a highly biologically active area and is biogeochemically significant. Moreover, land-ocean interactions strongly impact the estuary, and harmful algal blooms (HABs) frequently occur in the area. In October 2010 and May 2011, water samples of chromophoric dissolved organic matter (CDOM) were collected from the southern Changjiang River Estuary. Parallel factor analysis (PARAFAC) was used to assess the samples-CDOM composition using excitation-emission matrix (EEM) spectroscopy. Four components were identified: three were humic-like (C1, C2 and C3) and one was protein-like (C4). Analysis based on spatial and seasonal distributions, as well as relationships with salinity, Chl a and apparent oxygen utilization (AOU), revealed that terrestrial inputs had the most significant effect on the three humic-like Components C1, C2 and C3 in autumn. In spring, microbial processes and phytoplankton blooms were also important factors that impacted the three components. The protein-like Component C4 had autochthonous and allochthonous origins and likely represented a biologically labile component. CDOM in the southern Changjiang River Estuary was mostly affected by terrestrial inputs. Microbial processes and phytoplankton blooms were also important sources of CDOM, especially in spring. The fluorescence intensities of the four components were significantly higher in spring than in autumn. On average, C1, C2, C3, C4 and the total fluorescence intensity (TFI) in the surface, middle and bottom layers increased by 123%-42%, 105%-95%, 167%-65%, 483%-67% and 184%-45% in spring than in autumn, respectively. This finding corresponded with a Chl a concentration that was 16-0 times higher in spring than in autumn and an AOU that was two to four times lower in spring than in autumn. The humification index (HIX) was lower in spring that in autumn, and the fluorescence index (FI) was higher in spring than in autumn. This result indicated that the CDOM was labile and the biological activity was intense in spring. Keywords southern Changjiang River Estuary chromophoric dissolved organic matter fluorescence excitation emission matrix spectroscopy parallel factor analysis humification index fluorescence index

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700