Impact of iron associated to organic matter on remote sensing estimates of lake carbon content
暂无分享,去创建一个
Tiit Kutser | Krista Alikas | K. Alikas | T. Kutser | D. Kothawala | S. Köhler | Stephan J. Köhler | Dolly N. Kothawala
[1] M. Bauer,et al. Factors affecting the measurement of CDOM by remote sensing of optically complex inland waters , 2015 .
[2] James K. Edzwald,et al. SURROGATE PARAMETERS FOR MONITORING ORGANIC MATTER AND THM PRECURSORS , 1985 .
[3] P. Dillon,et al. Effect of landscape form on export of dissolved organic carbon, iron, and phosphorus from forested stream catchments , 1997 .
[4] E. Kritzberg,et al. Increasing iron concentrations in surface waters – a factor behind brownification? , 2011 .
[5] T. Johengen,et al. An algorithm to retrieve chlorophyll, dissolved organic carbon, and suspended minerals from Great Lakes satellite data , 2013 .
[6] J. K. Edzwald,et al. Treatment selection guidelines for particle and NOM removal , 2009 .
[7] Lisa R. Moore,et al. Determination of spectral absorption coefficients of particles, dissolved material and phytoplankton for discrete water samples , 2000 .
[8] L. Tranvik,et al. Controls of dissolved organic matter quality: evidence from a large‐scale boreal lake survey , 2014, Global change biology.
[9] T. Kutser,et al. Telespectrometrical estimation of water transparency, chlorophyll-a and total phosphorus concentration of Lake Peipsi , 1995 .
[10] Tiit Kutser,et al. The possibility of using the Landsat image archive for monitoring long time trends in coloured dissolved organic matter concentration in lake waters , 2012 .
[11] P. Döll,et al. Development and validation of a global database of lakes, reservoirs and wetlands , 2004 .
[12] Tiit Kutser,et al. Estimating lake carbon fractions from remote sensing data , 2015 .
[13] A. B. Mulder,et al. Organic complexion of Al and Fe in acidic soil solutions comparison of diffusive gradients in thin films analyses with Models V and VI , 2003 .
[14] D. Monteith,et al. Long-term increases in surface water dissolved organic carbon: observations, possible causes and environmental impacts. , 2005, Environmental pollution.
[15] Tiit Kutser,et al. Using Satellite Remote Sensing to Estimate the Colored Dissolved Organic Matter Absorption Coefficient in Lakes , 2005, Ecosystems.
[16] Tiit Kutser,et al. Mapping lake CDOM by satellite remote sensing , 2005 .
[17] L. Tranvik,et al. In-Lake Processes Offset Increased Terrestrial Inputs of Dissolved Organic Carbon and Color to Lakes , 2013, PloS one.
[18] Tiit Kutser,et al. Variations in colored dissolved organic matter between boreal lakes studied by satellite remote sensing , 2009 .
[19] Yosef Z. Yacobi,et al. Absorption spectroscopy of colored dissolved organic carbon in Georgia (USA) rivers: The impact of molecular size distribution , 2003 .
[20] H. Hartikainen,et al. Contribution of ferric iron to light absorption by chromophoric dissolved organic matter , 2013 .
[21] C. Verpoorter,et al. Automated mapping of water bodies using Landsat multispectral data , 2012 .
[22] J. Kopáček,et al. Photochemical production of ionic and particulate aluminum and iron in lakes. , 2005, Environmental science & technology.
[23] J. Downing,et al. The global abundance and size distribution of lakes, ponds, and impoundments , 2006 .
[24] R. Wetzel. Limnology: Lake and River Ecosystems , 1975 .
[25] Vittorio E Brando,et al. Adaptive semianalytical inversion of ocean color radiometry in optically complex waters. , 2012, Applied optics.
[26] Lars J. Tranvik. Allochthonous dissolved organic matter as an energy source for pelagic bacteria and the concept of the microbial loop , 1992 .
[27] M. Futter,et al. Variability in spectral absorbance metrics across boreal lake waters. , 2012, Journal of environmental monitoring : JEM.
[28] Jouni Pulliainen,et al. Landsat ETM+ Images in the Estimation of Seasonal Lake Water Quality in Boreal River Basins , 2008, Environmental management.
[29] M. Bauer,et al. A 20-year Landsat water clarity census of Minnesota's 10,000 lakes , 2008 .
[30] Roland Doerffer,et al. Algorithm Theoretical Basis Document (ATBD) , 2008 .
[31] S. Lofts,et al. The Chemical Speciation of Fe(III) in Freshwaters , 2008 .
[32] John M. Melack,et al. Lakes and reservoirs as regulators of carbon cycling and climate , 2009 .
[33] T. Vartiainen,et al. Drinking water chlorination and cancer – a historical cohort study in Finland , 1997, Cancer Causes & Control.
[34] H. Laudon,et al. Effect of pH and stream order on iron and arsenic speciation in boreal catchments. , 2013, Environmental science & technology.
[35] Mika Sillanpää,et al. Natural organic matter removal by coagulation during drinking water treatment: a review. , 2010, Advances in colloid and interface science.
[36] H. Komulainen,et al. Carcinogenicity of the Chlorination Disinfection By-Product MX , 2005, Journal of environmental science and health. Part C, Environmental carcinogenesis & ecotoxicology reviews.
[37] L. Tranvik. Bacterioplankton Growth on Fractions of Dissolved Organic Carbon of Different Molecular Weights from Humic and Clear Waters , 1990, Applied and environmental microbiology.
[38] R. Vogt,et al. NOM increase in Northern European source waters: discussion of possible causes and impacts on coagulation/contact filtration processes , 2004 .
[39] Guangwei Zhu,et al. Chromophoric dissolved organic matter (CDOM) absorption characteristics in relation to fluorescence in Lake Taihu, China, a large shallow subtropical lake , 2007 .
[40] J. D. Knoll,et al. Water supply planning , 1986 .
[41] J. Pulliainen,et al. Retrieval of water quality from airborne imaging spectrometry of various lake types in different seasons. , 2001, The Science of the total environment.
[42] C. Verpoorter,et al. A global inventory of lakes based on high‐resolution satellite imagery , 2014 .
[43] B. Bergamaschi,et al. Evaluation of specific ultraviolet absorbance as an indicator of the chemical composition and reactivity of dissolved organic carbon. , 2003, Environmental science & technology.
[44] Lars J. Tranvik,et al. Browning of Boreal Freshwaters Coupled to Carbon-Iron Interactions along the Aquatic Continuum , 2014, PloS one.
[45] Michael L. Pace,et al. Does the Pareto distribution adequately describe the size‐distribution of lakes? , 2011 .
[46] B. Paavel,et al. Effect of coloured dissolved organic matter on the attenuation of photosynthetically active radiation in Lake Peipsi , 2004, Proceedings of the Estonian Academy of Sciences. Biology. Ecology.