Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...

Absorbance of particles retained on GF/F (0.7 µm) filters was measured using a Varian Cary 100 spectrophotometer equipped with an integrated sphere. Absorbance and reflectance spectra were measured by placing a sample filter in front and back of an integrating sphere, respectively (so-called Transmi...

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Main Authors: Matsuoka, Atsushi, Juhls, Bennet, Bécu, Guislain, Oziel, Laurent, Leymarie, Edouard, Lizotte, Martine, Ferland, Joannie, Béguin, Marine, Laberge-Carignan, Audrey, Guilmette, Caroline, Maury, Juliette, Hilborn, Andrea, Tisserand, Lucas, Devred, Emmanuel, Doxaran, David, Bossé-Demers, Thomas, Babin, Marcel
Format: Dataset
Language:English
Published: PANGAEA 2021
Subjects:
Online Access:https://dx.doi.org/10.1594/pangaea.937581
https://doi.pangaea.de/10.1594/PANGAEA.937581
id ftdatacite:10.1594/pangaea.937581
record_format openpolar
spelling ftdatacite:10.1594/pangaea.937581 2024-03-31T07:51:09+00:00 Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ... Matsuoka, Atsushi Juhls, Bennet Bécu, Guislain Oziel, Laurent Leymarie, Edouard Lizotte, Martine Ferland, Joannie Béguin, Marine Laberge-Carignan, Audrey Guilmette, Caroline Maury, Juliette Hilborn, Andrea Tisserand, Lucas Devred, Emmanuel Doxaran, David Bossé-Demers, Thomas Babin, Marcel 2021 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.937581 https://doi.pangaea.de/10.1594/PANGAEA.937581 en eng PANGAEA https://dx.doi.org/10.1594/pangaea.937587 https://dx.doi.org/10.5194/essd-2022-163 Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 biogeochemistry Biooptics Coastal waters hydrographic data Mackenzie Event label Cruise/expedition LATITUDE LONGITUDE DATE/TIME Station label DEPTH, water Absorption coefficient, 360 nm Absorption coefficient, 380 nm Absorption coefficient, 400 nm Absorption coefficient, 412 nm Absorption coefficient, 443 nm Absorption coefficient, 490 nm Absorption coefficient, 510 nm Absorption coefficient, 530 nm Absorption coefficient, 551 nm Absorption coefficient, 555 nm Absorption coefficient, 560 nm Absorption coefficient, 565 nm Absorption coefficient, 620 nm Absorption coefficient, 645 nm Absorption coefficient, 667 nm Absorption coefficient, 673 nm Absorption coefficient, 683 nm Absorption coefficient, 709 nm Absorption coefficient, 745 nm Absorption coefficient, 765 nm Multiple investigations VARIAN CARY 100 equipped with an integrating sphere NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK dataset Dataset 2021 ftdatacite https://doi.org/10.1594/pangaea.93758110.1594/pangaea.93758710.5194/essd-2022-163 2024-03-04T13:26:04Z Absorbance of particles retained on GF/F (0.7 µm) filters was measured using a Varian Cary 100 spectrophotometer equipped with an integrated sphere. Absorbance and reflectance spectra were measured by placing a sample filter in front and back of an integrating sphere, respectively (so-called Transmittance-Reflectance or T-R method; Tassan & Ferrari 1995; doi:10.4319/lo.1995.40.8.1358). An appropriate beta factor specific to the geometry of the instrument was used to calculate absorption coefficients of particles (Tassan & Ferrari 2002; doi:10.1093/plankt/24.8.757). ... : Empty cells = NA ... Dataset Arctic Mackenzie Delta permafrost DataCite Metadata Store (German National Library of Science and Technology) Arctic Mackenzie Delta ENVELOPE(-136.672,-136.672,68.833,68.833)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic biogeochemistry
Biooptics
Coastal waters
hydrographic data
Mackenzie
Event label
Cruise/expedition
LATITUDE
LONGITUDE
DATE/TIME
Station label
DEPTH, water
Absorption coefficient, 360 nm
Absorption coefficient, 380 nm
Absorption coefficient, 400 nm
Absorption coefficient, 412 nm
Absorption coefficient, 443 nm
Absorption coefficient, 490 nm
Absorption coefficient, 510 nm
Absorption coefficient, 530 nm
Absorption coefficient, 551 nm
Absorption coefficient, 555 nm
Absorption coefficient, 560 nm
Absorption coefficient, 565 nm
Absorption coefficient, 620 nm
Absorption coefficient, 645 nm
Absorption coefficient, 667 nm
Absorption coefficient, 673 nm
Absorption coefficient, 683 nm
Absorption coefficient, 709 nm
Absorption coefficient, 745 nm
Absorption coefficient, 765 nm
Multiple investigations
VARIAN CARY 100 equipped with an integrating sphere
NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK
spellingShingle biogeochemistry
Biooptics
Coastal waters
hydrographic data
Mackenzie
Event label
Cruise/expedition
LATITUDE
LONGITUDE
DATE/TIME
Station label
DEPTH, water
Absorption coefficient, 360 nm
Absorption coefficient, 380 nm
Absorption coefficient, 400 nm
Absorption coefficient, 412 nm
Absorption coefficient, 443 nm
Absorption coefficient, 490 nm
Absorption coefficient, 510 nm
Absorption coefficient, 530 nm
Absorption coefficient, 551 nm
Absorption coefficient, 555 nm
Absorption coefficient, 560 nm
Absorption coefficient, 565 nm
Absorption coefficient, 620 nm
Absorption coefficient, 645 nm
Absorption coefficient, 667 nm
Absorption coefficient, 673 nm
Absorption coefficient, 683 nm
Absorption coefficient, 709 nm
Absorption coefficient, 745 nm
Absorption coefficient, 765 nm
Multiple investigations
VARIAN CARY 100 equipped with an integrating sphere
NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK
Matsuoka, Atsushi
Juhls, Bennet
Bécu, Guislain
Oziel, Laurent
Leymarie, Edouard
Lizotte, Martine
Ferland, Joannie
Béguin, Marine
Laberge-Carignan, Audrey
Guilmette, Caroline
Maury, Juliette
Hilborn, Andrea
Tisserand, Lucas
Devred, Emmanuel
Doxaran, David
Bossé-Demers, Thomas
Babin, Marcel
Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
topic_facet biogeochemistry
Biooptics
Coastal waters
hydrographic data
Mackenzie
Event label
Cruise/expedition
LATITUDE
LONGITUDE
DATE/TIME
Station label
DEPTH, water
Absorption coefficient, 360 nm
Absorption coefficient, 380 nm
Absorption coefficient, 400 nm
Absorption coefficient, 412 nm
Absorption coefficient, 443 nm
Absorption coefficient, 490 nm
Absorption coefficient, 510 nm
Absorption coefficient, 530 nm
Absorption coefficient, 551 nm
Absorption coefficient, 555 nm
Absorption coefficient, 560 nm
Absorption coefficient, 565 nm
Absorption coefficient, 620 nm
Absorption coefficient, 645 nm
Absorption coefficient, 667 nm
Absorption coefficient, 673 nm
Absorption coefficient, 683 nm
Absorption coefficient, 709 nm
Absorption coefficient, 745 nm
Absorption coefficient, 765 nm
Multiple investigations
VARIAN CARY 100 equipped with an integrating sphere
NUNATARYUK, Permafrost thaw and the changing Arctic coast, science for socioeconomic adaptation NUNATARYUK
description Absorbance of particles retained on GF/F (0.7 µm) filters was measured using a Varian Cary 100 spectrophotometer equipped with an integrated sphere. Absorbance and reflectance spectra were measured by placing a sample filter in front and back of an integrating sphere, respectively (so-called Transmittance-Reflectance or T-R method; Tassan & Ferrari 1995; doi:10.4319/lo.1995.40.8.1358). An appropriate beta factor specific to the geometry of the instrument was used to calculate absorption coefficients of particles (Tassan & Ferrari 2002; doi:10.1093/plankt/24.8.757). ... : Empty cells = NA ...
format Dataset
author Matsuoka, Atsushi
Juhls, Bennet
Bécu, Guislain
Oziel, Laurent
Leymarie, Edouard
Lizotte, Martine
Ferland, Joannie
Béguin, Marine
Laberge-Carignan, Audrey
Guilmette, Caroline
Maury, Juliette
Hilborn, Andrea
Tisserand, Lucas
Devred, Emmanuel
Doxaran, David
Bossé-Demers, Thomas
Babin, Marcel
author_facet Matsuoka, Atsushi
Juhls, Bennet
Bécu, Guislain
Oziel, Laurent
Leymarie, Edouard
Lizotte, Martine
Ferland, Joannie
Béguin, Marine
Laberge-Carignan, Audrey
Guilmette, Caroline
Maury, Juliette
Hilborn, Andrea
Tisserand, Lucas
Devred, Emmanuel
Doxaran, David
Bossé-Demers, Thomas
Babin, Marcel
author_sort Matsuoka, Atsushi
title Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
title_short Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
title_full Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
title_fullStr Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
title_full_unstemmed Particle absorption (aP) in the surface water of the Mackenzie Delta Region during 4 expeditions from spring to fall in 2019 ...
title_sort particle absorption (ap) in the surface water of the mackenzie delta region during 4 expeditions from spring to fall in 2019 ...
publisher PANGAEA
publishDate 2021
url https://dx.doi.org/10.1594/pangaea.937581
https://doi.pangaea.de/10.1594/PANGAEA.937581
long_lat ENVELOPE(-136.672,-136.672,68.833,68.833)
geographic Arctic
Mackenzie Delta
geographic_facet Arctic
Mackenzie Delta
genre Arctic
Mackenzie Delta
permafrost
genre_facet Arctic
Mackenzie Delta
permafrost
op_relation https://dx.doi.org/10.1594/pangaea.937587
https://dx.doi.org/10.5194/essd-2022-163
op_rights Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
op_doi https://doi.org/10.1594/pangaea.93758110.1594/pangaea.93758710.5194/essd-2022-163
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