Pönisch, Daniel Lars; Bittig, Henry C; Rehder, Gregor: Methane measurements at lander_1 in a coastal peatland at the German Baltic Sea in 2021 [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.964775 (dataset in review), In: Pönisch, DL et al.: Autonomous high-resolution multiparameter measurements of physico-chemical variables in a coastal peatland that was rewetted with brackish water from the German Baltic Sea [dataset bundled publication]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.964839 (dataset in review)
Abstract:
Rewetting peatlands is an important measure to reduce greenhouse gas (GHG) emissions. However, after rewetting, the areas are highly heterogeneous in terms of GHG exchange, which depends on water level and source, vegetation, previous use, and duration of rewetting. These challenging conditions require new technologies that go beyond discrete sampling. Here we present data from two autonomous lander platforms deployed at the sediment-water interface (bottom lander) of a shallow coastal peatland (approx. 1 m water depth) that was rewetted by brackish water from the Baltic Sea, thus becoming part of the coastal water through a permanent connection. These landers were equipped with six commercially available state-of-the-art sensors, and temporal high-resolution measurements of physico-chemical variables, including partial pressures of carbon dioxide (CO2) and methane (CH4), were made. The resolution of the field data ranged from 10 seconds to 120 minutes and was obtained for partial pressure of CO2 (Contros HydroC-CO2) and CH4 (Contros HydroC-CH4), temperature, salinity, pressure (water depth), oxygen (O2) (CTD-O2 with SBE-37SMP-ODO), the concentrations of phosphate (SBE HydroCycle PO4), nitrate (SBE SUNA V2), chlorophyll a and the turbidity (both with SBE-FLNTUSB ECO) as stationary measurements at two different locations in close proximity. The CTD and oxygen measurements provide exact water depth data for the respective lander locations. In the other data sets (e.g., CO2 measurements) rounded data are inserted instead of the exact depth data, which is 0.6 m for lander_1 and 0.9 m for lander_2. SUNA raw data are provided for completeness. However, we found them of insufficient quality to estimate nitrate concentrations due to interferences and biofouling. The deployment and recovery of the landers, and thus the measurements, took place between 02 June 2021 and 09 August 2021, and the sensors were operated under permanent wired power supply and a centralized timestamp. The sensors were maintained and cleaned bi-weekly. Results show considerable temporal fluctuations expressed as multi-day, diurnal, and event-based variability, with spatial differences caused by biologically-dominated variables.
Keyword(s):
Supplement to:
Pönisch, Daniel Lars; Bittig, Henry C; Kolbe, Martin; Schuffenhauer, Ingo; Otto, Stefan; Premaratne, Kusala; Rehder, Gregor (in prep.): Trace gas variability of CO2 and CH4 in a coastal peatland rewetted with brackish water from the Baltic Sea by autonomous high-resolution measurements.
References:
Bittig, Henry C; Fiedler, Björn; Scholz, Roland; Krahmann, Gerd; Körtzinger, Arne (2014): Time response of oxygen optodes on profiling platforms and its dependence on flow speed and temperature. Limnology and Oceanography-Methods, 12(8), 617-636, https://doi.org/10.4319/lom.2014.12.617
Funding:
German Research Foundation (DFG), grant/award no. 240942083: DFG Research Training Group Baltic TRANSCOAST
Coverage:
Latitude: 54.371100 * Longitude: 13.244600
Date/Time Start: 2021-06-02T18:50:45 * Date/Time End: 2021-08-09T07:59:57
Minimum DEPTH, water: 0.6 m * Maximum DEPTH, water: 0.6 m
Event(s):
Comment:
Data post-processing (time response) based on the descriptions of Bittig et al., 2014
Parameter(s):
# | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
---|---|---|---|---|---|---|
1 | Station label | Station | Pönisch, Daniel Lars | |||
2 | DATE/TIME | Date/Time | Pönisch, Daniel Lars | Geocode | ||
3 | LATITUDE | Latitude | Pönisch, Daniel Lars | Geocode | ||
4 | LONGITUDE | Longitude | Pönisch, Daniel Lars | Geocode | ||
5 | DEPTH, water | Depth water | m | Pönisch, Daniel Lars | Geocode | |
6 | Time in seconds | Time | s | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | Runtime |
7 | Pressure, technical | P tech | hPa | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | Pressure_in: Pressure in the gas stream behind the membrane |
8 | Flag | Flag | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | External pump flag: 0-disable, 1-enable | |
9 | Power, technical | Power tech | mW | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | External pump |
10 | Pressure, technical | P tech | hPa | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | Pressure_TDLAS: Pressure in the gas stream behind the Tunable Diode Laser Absorption Spectroscopy (TDLAS) unit |
11 | Temperature, gas | T gas | °C | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | |
12 | Humidity, relative | RH | % | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | |
13 | Methane, partial pressure | pCH4 | µatm | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | Sensor output |
14 | Methane, partial pressure | pCH4 | µatm | Pönisch, Daniel Lars | Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄ | Includes data post-processing |
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0) (License comes into effect after moratorium ends)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
5184400 data points
Download Data (login required; moratorium until 2025-09-19)
View dataset as HTML (shows only first 2000 rows)