id dataone:doi:10.18739/A28W6W
record_format openpolar
spelling dataone:doi:10.18739/A28W6W 2024-06-03T18:46:35+00:00 CSASN Channel Nutrients William Bowden Michael Gooseff Wilfred Wollheim VERTICAL LOCATION > LAND SURFACE, CONTINENT > NORTH AMERICA, GEOGRAPHIC REGION > ARCTIC, UNITED STATES OF AMERICA > ALASKA, ENVELOPE(-149.6,-149.4,68.7,68.6) BEGINDATE: 2010-07-18T00:00:00Z ENDDATE: 2012-08-11T00:00:00Z 2013-12-03T00:00:00Z https://doi.org/10.18739/A28W6W unknown Arctic Data Center EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > CONDUCTIVITY EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > NUTRIENTS EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > PHOSPHOROUS COMPOUNDS EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > WATER ION CONCENTRATION EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > SURFACE WATER > RIVERS/STREAMS IN SITU/LABORATORY INSTRUMENTS > CONDUCTIVITY SENSORS > CONDUCTIVITY METERS EARTH REMOTE SENSING INSTRUMENTS > PASSIVE REMOTE SENSING > SPECTROMETERS/RADIOMETERS > SPECTROMETERS > SPECTROMETERS FIELD SURVEY MANNED FIELD STATION inlandWaters environment Dataset 2013 dataone:urn:node:ARCTIC https://doi.org/10.18739/A28W6W 2024-06-03T18:08:13Z The Changing Seasonality of Artic Stream Systems (CSASN) was active from 2010 to 2012. The CSASN goal was to quantify the relative influences of throughflow, lateral inputs, and hyporheic regeneration on the seasonal fluxes C, N, and P in an arctic river network, and to determine how these influences might shift under seasonal conditions that are likely to be substantially different in the future. During the project, background samples were collected from four stream channels and analyzed for a variety of nutrients. Dataset Arctic Alaska Arctic Data Center (via DataONE) Arctic ENVELOPE(-149.6,-149.4,68.7,68.6)
institution Open Polar
collection Arctic Data Center (via DataONE)
op_collection_id dataone:urn:node:ARCTIC
language unknown
topic EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > CONDUCTIVITY
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > NUTRIENTS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > PHOSPHOROUS COMPOUNDS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > WATER ION CONCENTRATION
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > SURFACE WATER > RIVERS/STREAMS
IN SITU/LABORATORY INSTRUMENTS > CONDUCTIVITY SENSORS > CONDUCTIVITY METERS
EARTH REMOTE SENSING INSTRUMENTS > PASSIVE REMOTE SENSING > SPECTROMETERS/RADIOMETERS > SPECTROMETERS > SPECTROMETERS
FIELD SURVEY
MANNED FIELD STATION
inlandWaters
environment
spellingShingle EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > CONDUCTIVITY
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > NUTRIENTS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > PHOSPHOROUS COMPOUNDS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > WATER ION CONCENTRATION
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > SURFACE WATER > RIVERS/STREAMS
IN SITU/LABORATORY INSTRUMENTS > CONDUCTIVITY SENSORS > CONDUCTIVITY METERS
EARTH REMOTE SENSING INSTRUMENTS > PASSIVE REMOTE SENSING > SPECTROMETERS/RADIOMETERS > SPECTROMETERS > SPECTROMETERS
FIELD SURVEY
MANNED FIELD STATION
inlandWaters
environment
William Bowden
Michael Gooseff
Wilfred Wollheim
CSASN Channel Nutrients
topic_facet EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > CONDUCTIVITY
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > NUTRIENTS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > PHOSPHOROUS COMPOUNDS
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > WATER QUALITY/WATER CHEMISTRY > WATER ION CONCENTRATION
EARTH SCIENCE > TERRESTRIAL HYDROSPHERE > SURFACE WATER > RIVERS/STREAMS
IN SITU/LABORATORY INSTRUMENTS > CONDUCTIVITY SENSORS > CONDUCTIVITY METERS
EARTH REMOTE SENSING INSTRUMENTS > PASSIVE REMOTE SENSING > SPECTROMETERS/RADIOMETERS > SPECTROMETERS > SPECTROMETERS
FIELD SURVEY
MANNED FIELD STATION
inlandWaters
environment
description The Changing Seasonality of Artic Stream Systems (CSASN) was active from 2010 to 2012. The CSASN goal was to quantify the relative influences of throughflow, lateral inputs, and hyporheic regeneration on the seasonal fluxes C, N, and P in an arctic river network, and to determine how these influences might shift under seasonal conditions that are likely to be substantially different in the future. During the project, background samples were collected from four stream channels and analyzed for a variety of nutrients.
format Dataset
author William Bowden
Michael Gooseff
Wilfred Wollheim
author_facet William Bowden
Michael Gooseff
Wilfred Wollheim
author_sort William Bowden
title CSASN Channel Nutrients
title_short CSASN Channel Nutrients
title_full CSASN Channel Nutrients
title_fullStr CSASN Channel Nutrients
title_full_unstemmed CSASN Channel Nutrients
title_sort csasn channel nutrients
publisher Arctic Data Center
publishDate 2013
url https://doi.org/10.18739/A28W6W
op_coverage VERTICAL LOCATION > LAND SURFACE, CONTINENT > NORTH AMERICA, GEOGRAPHIC REGION > ARCTIC, UNITED STATES OF AMERICA > ALASKA,
ENVELOPE(-149.6,-149.4,68.7,68.6)
BEGINDATE: 2010-07-18T00:00:00Z ENDDATE: 2012-08-11T00:00:00Z
long_lat ENVELOPE(-149.6,-149.4,68.7,68.6)
geographic Arctic
geographic_facet Arctic
genre Arctic
Alaska
genre_facet Arctic
Alaska
op_doi https://doi.org/10.18739/A28W6W
_version_ 1800868283529822208