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Fluorescent Components sentence examples within excitation emission matrix
The fluorescence excitation-emission matrix coupled with parallel factor analysis (EEM-PARAFAC) revealed the presence of four different fluorescent components, including two protein-like (C1 and C4), fulvic-like (C2), and humic-like (C3) components, in the SMP and bEPS formed at different conditions.
The fluorescence excitation-emission matrix coupled with parallel factor analysis (EEM-PARAFAC) revealed the presence of four different fluorescent components, including two protein-like (C1 and C4), fulvic-like (C2), and humic-like (C3) components, in the SMP and bEPS formed at different conditions.
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Fluorescence excitation emission matrix coupled with parallel factor analysis (EEM-PARAFAC) identified the presence of three independent fluorescent components in AOM, including protein-like (C1), fulvic-like (C2) and humic-like components (C3).
Fluorescence excitation emission matrix coupled with parallel factor analysis (EEM-PARAFAC) identified the presence of three independent fluorescent components in AOM, including protein-like (C1), fulvic-like (C2) and humic-like components (C3).
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Fluorescent Components sentence examples within dissolved organic matter
The EEM-PARAFAC modelling results demonstrated that dissolved organic matter (DOM) in the Silin Reservoir waters was composed of three fluorescent components.
The EEM-PARAFAC modelling results demonstrated that dissolved organic matter (DOM) in the Silin Reservoir waters was composed of three fluorescent components.
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We found significant positive relationships between ebullition and chlorophyll-a, dissolved organic carbon (DOC), biodegradable DOC, δ2H, δ18O and δ13C-DOC, autochthonous dissolved organic matter (DOM) fluorescent components, and a fraction of lipids, proteins, and lignins revealed using ultrahigh-resolution mass spectrometry, and a negative relationship between ebullitive CH4 flux and the percentage volume inhabited of macrophytes.
We found significant positive relationships between ebullition and chlorophyll-a, dissolved organic carbon (DOC), biodegradable DOC, δ2H, δ18O and δ13C-DOC, autochthonous dissolved organic matter (DOM) fluorescent components, and a fraction of lipids, proteins, and lignins revealed using ultrahigh-resolution mass spectrometry, and a negative relationship between ebullitive CH4 flux and the percentage volume inhabited of macrophytes.
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Fluorescent Components sentence examples within Three Fluorescent Components
Three fluorescent components (C1-C3) of the MWF from three metalworking plants (BO, TH, and YD) were identified.
Three fluorescent components (C1-C3) of the MWF from three metalworking plants (BO, TH, and YD) were identified.
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The EEM-PARAFAC modelling results demonstrated that dissolved organic matter (DOM) in the Silin Reservoir waters was composed of three fluorescent components.
The EEM-PARAFAC modelling results demonstrated that dissolved organic matter (DOM) in the Silin Reservoir waters was composed of three fluorescent components.
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Fluorescent Components sentence examples within Five Fluorescent Components
In this study, we quantified five fluorescent components of marine CDOM and base-extractable particulate organic matter (BEPOM) in a growth and degradation experiment using a natural plankton assemblage, and compared those results to bacterial abundances, hydrolytic enzyme activities, and amino acid concentrations and associated diagenetic indices.
In this study, we quantified five fluorescent components of marine CDOM and base-extractable particulate organic matter (BEPOM) in a growth and degradation experiment using a natural plankton assemblage, and compared those results to bacterial abundances, hydrolytic enzyme activities, and amino acid concentrations and associated diagenetic indices.
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Fluorescent Components sentence examples within Fmy Fluorescent Components
Fluorescent Components sentence examples within Unique Fluorescent Components
The parallel factor analysis model identified four unique fluorescent components consisting of two protein components identified as tyrosine-like C1 and tryptophan-like C2, and two humic-like components C3 and C4.
The parallel factor analysis model identified four unique fluorescent components consisting of two protein components identified as tyrosine-like C1 and tryptophan-like C2, and two humic-like components C3 and C4.
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The PARAFAC model identified four unique fluorescent components for autumn (November 2014), winter (March 2015), spring (April 2015) and summer (July 2015) consisting of two humic-like components attributed to terrestrial (C1) and marine sources (C2), and two protein components identified as tyrosine-like (C3) and tryptophan-like (C4) attributed to in situ production.
The PARAFAC model identified four unique fluorescent components for autumn (November 2014), winter (March 2015), spring (April 2015) and summer (July 2015) consisting of two humic-like components attributed to terrestrial (C1) and marine sources (C2), and two protein components identified as tyrosine-like (C3) and tryptophan-like (C4) attributed to in situ production.
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Fluorescent Components sentence examples within Different Fluorescent Components
The fluorescence excitation-emission matrix coupled with parallel factor analysis (EEM-PARAFAC) revealed the presence of four different fluorescent components, including two protein-like (C1 and C4), fulvic-like (C2), and humic-like (C3) components, in the SMP and bEPS formed at different conditions.
The fluorescence excitation-emission matrix coupled with parallel factor analysis (EEM-PARAFAC) revealed the presence of four different fluorescent components, including two protein-like (C1 and C4), fulvic-like (C2), and humic-like (C3) components, in the SMP and bEPS formed at different conditions.
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The extracted EPS consisted of three different fluorescent components of tryptophan-like (C1), humic-like (C2), and fulvic-like (C3) components.
The extracted EPS consisted of three different fluorescent components of tryptophan-like (C1), humic-like (C2), and fulvic-like (C3) components.
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Fluorescent Components sentence examples within fluorescent components identified
From the large-scale outbreak to the complete dissipation of the green tide, the fluorescence intensities of the four FDOM fluorescent components identified in the green tide areas were significantly higher than those in the non-green tide areas.
From the large-scale outbreak to the complete dissipation of the green tide, the fluorescence intensities of the four FDOM fluorescent components identified in the green tide areas were significantly higher than those in the non-green tide areas.
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Five fluorescent components identified by parallel factor analysis of EEMs (three humic-like and two protein-like components) showed significant differences in the relative abundances under the different fertilization treatments.
Five fluorescent components identified by parallel factor analysis of EEMs (three humic-like and two protein-like components) showed significant differences in the relative abundances under the different fertilization treatments.
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10.1016/j.talanta.2019.01.006
Through a simple dialysis, fluorescent components of a commercial caramel were harvested with a yield as high as 60%.
Through a simple dialysis, fluorescent components of a commercial caramel were harvested with a yield as high as 60%.
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10.1016/j.biortech.2019.122281
Analysis of the DOM fractions, molecular weight distribution, fluorescent components, and molecular compositions indicated that chitosan modification made more kinds of DOM components (e.
Analysis of the DOM fractions, molecular weight distribution, fluorescent components, and molecular compositions indicated that chitosan modification made more kinds of DOM components (e.
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10.1007/s10337-019-03805-x
Finally, by incorporating a fluorescence (FL) detector into the experimental set-up, we demonstrate not only its orthogonality to DRI detection but also its sensitivity to the presence of even minor (≈ 1%) fluorescent components in a sample.
Finally, by incorporating a fluorescence (FL) detector into the experimental set-up, we demonstrate not only its orthogonality to DRI detection but also its sensitivity to the presence of even minor (≈ 1%) fluorescent components in a sample.
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10.1080/09593330.2019.1647291
The fluorescent components in WSFs were preferentially degraded, and the degradation products of aromatic fraction were CO2 and H2O as well as saturates, mainly C20∼C31 alkanes.
The fluorescent components in WSFs were preferentially degraded, and the degradation products of aromatic fraction were CO2 and H2O as well as saturates, mainly C20∼C31 alkanes.
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10.1016/j.watres.2019.114924
This study focused on the functional groups, fluorescent components and molecular features of DOM as well as molecular weight of proteins in SS alkaline fermentation (at pH uncontrolled, 7, 8, 9 and 10).
This study focused on the functional groups, fluorescent components and molecular features of DOM as well as molecular weight of proteins in SS alkaline fermentation (at pH uncontrolled, 7, 8, 9 and 10).
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10.1016/J.MSEC.2019.109978
TD-DFT molecular calculations of the fluorescent components were carried out to compare their theoretical UV-Vis spectra to experimental results.
TD-DFT molecular calculations of the fluorescent components were carried out to compare their theoretical UV-Vis spectra to experimental results.
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10.1016/J.ATMOSENV.2019.06.034
43), except for Peak M and α-dicarbonyls, illustrating that fluorescent components and dicarboxylic acids were derived from common biological origins and biomass burning.
43), except for Peak M and α-dicarbonyls, illustrating that fluorescent components and dicarboxylic acids were derived from common biological origins and biomass burning.
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10.1016/j.scitotenv.2019.02.186
One humic-like, one fulvic-like, and two protein-like fluorescent components were identified by PARAFAC analysis, with different components exhibiting different variable patterns in response to Cu(II) addition.
One humic-like, one fulvic-like, and two protein-like fluorescent components were identified by PARAFAC analysis, with different components exhibiting different variable patterns in response to Cu(II) addition.
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10.1016/j.chemosphere.2019.05.002
A variety of humic-like fluorescent components was characterized here, providing valuable insights into the chemical composition of DOM in rhizosphere and bulk sediment.
A variety of humic-like fluorescent components was characterized here, providing valuable insights into the chemical composition of DOM in rhizosphere and bulk sediment.
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10.1016/J.ATMOSENV.2019.02.039
The intensities of these fluorescent components all steadily decreased with oxidation, in which the tryptophan-like substance (C1) presented pronounced reduction for both BB BrC.
The intensities of these fluorescent components all steadily decreased with oxidation, in which the tryptophan-like substance (C1) presented pronounced reduction for both BB BrC.
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10.1016/j.watres.2019.115271
The proposed method can enhance fluorescence signatures for the separation and analysis of fluorescent components in water contaminants.
The proposed method can enhance fluorescence signatures for the separation and analysis of fluorescent components in water contaminants.
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10.1016/j.steroids.2019.02.013
A convergent synthesis was developed that culminated in the [3+2] copper (I) assisted alkyne‐azide cycloaddition coupling of the steroidal and fluorescent components.
A convergent synthesis was developed that culminated in the [3+2] copper (I) assisted alkyne‐azide cycloaddition coupling of the steroidal and fluorescent components.
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10.5194/TC-13-157-2019
, soluble ions), fluorescent components,
and air mass backward trajectories combined with satellite-derived active-fire
locations.
, soluble ions), fluorescent components,
and air mass backward trajectories combined with satellite-derived active-fire
locations.
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10.1016/j.ecoenv.2019.02.059
The results also suggest that protein-like materials exhibit higher log KM values than other fluorescent components, indicating that fluorescent protein-like materials play a crucial role in the biogeochemical behavior of CBZ.
The results also suggest that protein-like materials exhibit higher log KM values than other fluorescent components, indicating that fluorescent protein-like materials play a crucial role in the biogeochemical behavior of CBZ.
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10.13227/j.hjkx.201806012
The fluorescent components are not labile with respect to microbial degradation and humic-like components are accumulated after 28 days of microbial culture.
The fluorescent components are not labile with respect to microbial degradation and humic-like components are accumulated after 28 days of microbial culture.
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10.1109/CVPR.2019.00776
In this paper, we address the separation of reflective and fluorescent components in RGB images taken under narrow-band light sources such as LEDs.
In this paper, we address the separation of reflective and fluorescent components in RGB images taken under narrow-band light sources such as LEDs.
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10.13227/j.hjkx.201905123
28% of these parameters, which comprehensively reflected the effects of the photodegradation process on CDOM characteristics and fluorescent components.
28% of these parameters, which comprehensively reflected the effects of the photodegradation process on CDOM characteristics and fluorescent components.
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10.1016/j.scitotenv.2018.12.117
One tyrosine-like (C4), one tryptophan-like (C2), and two humic-like (C1 and C3) fluorescent components were identified in fluorescent DOM (FDOM) by parallel factor analysis (PAFACAC), potentially indicating algal, anthropogenic, and terrestrial inputs, respectively.
One tyrosine-like (C4), one tryptophan-like (C2), and two humic-like (C1 and C3) fluorescent components were identified in fluorescent DOM (FDOM) by parallel factor analysis (PAFACAC), potentially indicating algal, anthropogenic, and terrestrial inputs, respectively.
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Fluorescent Components
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