2011
DOI: 10.1016/j.chroma.2010.12.039
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Coupling asymmetric flow-field flow fractionation and fluorescence parallel factor analysis reveals stratification of dissolved organic matter in a drinking water reservoir

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Cited by 24 publications
(27 citation statements)
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“…PARAFAC component EEMs from Model 1 (consisting of 44 EEMs from this study) and Model 2 (consisting of 416 EEMs, including 372 EEMs from previous studies) (Pifer et al, 2011;Pifer and Fairey, 2012) are shown in Supplementary Figure S4 and the locations of their excitation and emission peak maxima are presented in Table 2. In terms of identifying these PARAFAC components, fluorophore groups in DOM samples of unknown composition have traditionally been categorized as humic like, fulvic like, or protein like based on comparisons of their excitation and emission maxima to Stedmon and Markager (2005).…”
Section: Fluorescence Parafac Analysismentioning
confidence: 99%
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“…PARAFAC component EEMs from Model 1 (consisting of 44 EEMs from this study) and Model 2 (consisting of 416 EEMs, including 372 EEMs from previous studies) (Pifer et al, 2011;Pifer and Fairey, 2012) are shown in Supplementary Figure S4 and the locations of their excitation and emission peak maxima are presented in Table 2. In terms of identifying these PARAFAC components, fluorophore groups in DOM samples of unknown composition have traditionally been categorized as humic like, fulvic like, or protein like based on comparisons of their excitation and emission maxima to Stedmon and Markager (2005).…”
Section: Fluorescence Parafac Analysismentioning
confidence: 99%
“…Raw water pH, alkalinity, and turbidity were measured as described by Pifer et al (2011). Following sample filtration with 0.7-lm GFFs as described in the Glassware and Reagents section, conductivity was measured using a Malvern Zetasizer Nano ZS90.…”
Section: Water Quality Testsmentioning
confidence: 99%
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“…The version of the manufactured separation system for which the channel conveying the carrier liquid had an asymmetric shape (As-Fl-FFF) proved to be the most efficient, as it enabled nanoparticles ranging form 1 nm to 100 μm to be separated. As a general rule, an Inductively Coupled Plasma Mass Spectrometry (ICP-MS) is used as on-line detector, which allows reaching low detection limits, high sensitivity, large dynamic range and ability to simultaneously measure a large number of elements (Table 1) A large number of recent works contributing to the development of the FFF techniques significantly widened their applicability range in particle size analysis (Ahn et al, 2010;Baalousha et al, 2006;Dubascoux et al, 2008;Gascoyne, 2009;Isaacson & Bouchard, 2010;Otte et al, 2009;Pifer et al, 2011).…”
Section: Field-flow Fractionationmentioning
confidence: 99%