Methane ebullition, sedimentation rates, organic matter quality and environmental parameters at small and shallow temperate Lake Windsborn, Germany in 2017 and 2018

Fuente: PANGAEA
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Bibliographische Detailangaben
Hauptverfasser: Praetzel, Leandra Stephanie Emilia, Schmiedeskamp, Marcel, Balcom, Emily, Berning-Mader, Ulrike, Ding, Friederike, Hackmann, Christina, Isacs, Elvis, Ischebeck, Maike, Lange, Fabian, Radermacher, Anja, Rieke, Laura Isabelle, Wilkes, Theresa, Wulfing, Sophie, Knorr, Klaus-Holger
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2020
Schlagworte:
Aromatics/Polysaccharide peak ratio; Aromatics/Polysaccharide peak ratio, normalized; Austrian standards (OENorm B 4412; OENorm L 1050; OENorm L 1061); Bettenfeld, Germany; Calculated, see reference(s); Calculated from weight loss after ignition at 450 °C; Carbon; Carbon, normalized; Carbon/Nitrogen ratio; Carbon/Nitrogen ratio, normalized; Carbon/sulfur ratio; Carbon/Sulfur ratio, normalized; Carbon cycling; Cavity ringdown spectrometer, Picarro, G2201-i; Cellulose/Polysaccharide peak ratio; Cellulose/Polysaccharide peak ratio, normalized; Clay minerals; Climate change; Date/time end; Date/time start; DEPTH, sediment/rock; Depth comment; Distance to shore; ebullition; Fats+Waxes+Lipids/Polysaccharide peak ratio; Fats+Waxes+Lipids/Polysaccharide peak ratio, normalized; Fourier-transformed infrared spectroscopy (Cary 670 FTIR Spectrometer, Agilent, Santa Clara, USA); Freeze-drying (Alpha 1-4 LPplus, Christ, Osterode, Germany); Gas chromatograph (8610 GC-TCD/FID, SRI Instruments, Torrance, USA); Grain Size; HOBO RX 3000 Remote Monitoring Station Data Logger, S-15TMB-M006 12-Bit Temperature Smart Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-BPB-CM50 Smart Barometric Pressure Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-THB-M002 12-Bit Tempertaure/Relative Humidity Smart Sensor (Onset Computer Corporation, Bourne, USA); Humic acids/Polysaccharide peak ratio; Humic acids/Polysaccharide peak ratio, normalized; Inverse funnel traps (Wik et al., 2013); Iron; Iron, normalized; Isotope-ratio mass spectroscopy (Eurovector EA3000 coupled with Nu Instruments Nu Horizon, Hekatech, Wegberg, Germany); lakes; LATITUDE; Lignin/Polysaccharide peak ratio; Lignin/Polysaccharide peak ratio, normalized; LONGITUDE; Loss on ignition; Manganese; Manganese, normalized; Methane; Methane, flux; Methane, flux, normalized; Methane, flux, standardized; Methane emissions; MULT; Multiple investigations; Nitrogen; Nitrogen, normalized; Nitrogen/Phosphorus ratio; Nitrogen/Phosphorus ratio, normalized; Normalized; Phenolics/Polysaccharide peak ratio; Phenolics/Polysaccharide peak ratio, normalized; Phosphorus; Phosphorus, normalized; porosity; Porosity; Pressure, air; Pressure, total; Proteins/Polysaccharide peak ratio; Proteins/Polysaccharide peak ratio, normalized; Sand; Sediment; Sedimentation/accumulation rate; Sedimentation rate, normalized; sedimentation rates; Silt; Site; Solinst 3001 LTC Levelogger Edge (Georgetown, Canada); Station label; Sulfur; Sulfur, normalized; Temperature, air; Temperature, in rock/sediment; Temperature, water; Transect number; Water content, sediment; Wavelength dispersive X-ray fluorescence (WD-XRF; ZSX Primus II, Rigaku, Tokyo, Japan); Windsborn_Crater_Lake; δ13C; δ13C, methane; δ13C, normalized; δ15N; δ15N, normalized
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_version_ 1867171868702670848
author Praetzel, Leandra Stephanie Emilia
Schmiedeskamp, Marcel
Balcom, Emily
Berning-Mader, Ulrike
Ding, Friederike
Hackmann, Christina
Isacs, Elvis
Ischebeck, Maike
Lange, Fabian
Radermacher, Anja
Rieke, Laura Isabelle
Wilkes, Theresa
Wulfing, Sophie
Knorr, Klaus-Holger
author_facet Praetzel, Leandra Stephanie Emilia
Schmiedeskamp, Marcel
Balcom, Emily
Berning-Mader, Ulrike
Ding, Friederike
Hackmann, Christina
Isacs, Elvis
Ischebeck, Maike
Lange, Fabian
Radermacher, Anja
Rieke, Laura Isabelle
Wilkes, Theresa
Wulfing, Sophie
Knorr, Klaus-Holger
collection Datos científicos de ciencias marinas y ambientales
contents To determine spatiotemporal variability of methane (CH4) ebullition and its drivers, we measured CH4 ebullition rates, sedimentation rates and characteristics of the sedimented material, sediment chemical and physical characteristics and environmental parameters at Lake Windsborn in 2017 and 2018. Measurements of CH4 ebullition were conducted bi-weekly from May to October 2017 and April to November 2018. Sedimentation rates were measured in 2018 in four-week intervals. Characteristics of the sedimented material were measured in 2017 and 2018. Sediment characteristics were measured in November 2017, spring 2018 and August 2019. Meterological parameters (temperature and air pressure) were constantly measured from a floating platform in the lake center.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_917518
institution PANGAEA
language en
publishDate 2020
publisher PANGAEA
record_format pangaea
spellingShingle Methane ebullition, sedimentation rates, organic matter quality and environmental parameters at small and shallow temperate Lake Windsborn, Germany in 2017 and 2018
Praetzel, Leandra Stephanie Emilia
Schmiedeskamp, Marcel
Balcom, Emily
Berning-Mader, Ulrike
Ding, Friederike
Hackmann, Christina
Isacs, Elvis
Ischebeck, Maike
Lange, Fabian
Radermacher, Anja
Rieke, Laura Isabelle
Wilkes, Theresa
Wulfing, Sophie
Knorr, Klaus-Holger
Aromatics/Polysaccharide peak ratio; Aromatics/Polysaccharide peak ratio, normalized; Austrian standards (OENorm B 4412; OENorm L 1050; OENorm L 1061); Bettenfeld, Germany; Calculated, see reference(s); Calculated from weight loss after ignition at 450 °C; Carbon; Carbon, normalized; Carbon/Nitrogen ratio; Carbon/Nitrogen ratio, normalized; Carbon/sulfur ratio; Carbon/Sulfur ratio, normalized; Carbon cycling; Cavity ringdown spectrometer, Picarro, G2201-i; Cellulose/Polysaccharide peak ratio; Cellulose/Polysaccharide peak ratio, normalized; Clay minerals; Climate change; Date/time end; Date/time start; DEPTH, sediment/rock; Depth comment; Distance to shore; ebullition; Fats+Waxes+Lipids/Polysaccharide peak ratio; Fats+Waxes+Lipids/Polysaccharide peak ratio, normalized; Fourier-transformed infrared spectroscopy (Cary 670 FTIR Spectrometer, Agilent, Santa Clara, USA); Freeze-drying (Alpha 1-4 LPplus, Christ, Osterode, Germany); Gas chromatograph (8610 GC-TCD/FID, SRI Instruments, Torrance, USA); Grain Size; HOBO RX 3000 Remote Monitoring Station Data Logger, S-15TMB-M006 12-Bit Temperature Smart Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-BPB-CM50 Smart Barometric Pressure Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-THB-M002 12-Bit Tempertaure/Relative Humidity Smart Sensor (Onset Computer Corporation, Bourne, USA); Humic acids/Polysaccharide peak ratio; Humic acids/Polysaccharide peak ratio, normalized; Inverse funnel traps (Wik et al., 2013); Iron; Iron, normalized; Isotope-ratio mass spectroscopy (Eurovector EA3000 coupled with Nu Instruments Nu Horizon, Hekatech, Wegberg, Germany); lakes; LATITUDE; Lignin/Polysaccharide peak ratio; Lignin/Polysaccharide peak ratio, normalized; LONGITUDE; Loss on ignition; Manganese; Manganese, normalized; Methane; Methane, flux; Methane, flux, normalized; Methane, flux, standardized; Methane emissions; MULT; Multiple investigations; Nitrogen; Nitrogen, normalized; Nitrogen/Phosphorus ratio; Nitrogen/Phosphorus ratio, normalized; Normalized; Phenolics/Polysaccharide peak ratio; Phenolics/Polysaccharide peak ratio, normalized; Phosphorus; Phosphorus, normalized; porosity; Porosity; Pressure, air; Pressure, total; Proteins/Polysaccharide peak ratio; Proteins/Polysaccharide peak ratio, normalized; Sand; Sediment; Sedimentation/accumulation rate; Sedimentation rate, normalized; sedimentation rates; Silt; Site; Solinst 3001 LTC Levelogger Edge (Georgetown, Canada); Station label; Sulfur; Sulfur, normalized; Temperature, air; Temperature, in rock/sediment; Temperature, water; Transect number; Water content, sediment; Wavelength dispersive X-ray fluorescence (WD-XRF; ZSX Primus II, Rigaku, Tokyo, Japan); Windsborn_Crater_Lake; δ13C; δ13C, methane; δ13C, normalized; δ15N; δ15N, normalized
To determine spatiotemporal variability of methane (CH4) ebullition and its drivers, we measured CH4 ebullition rates, sedimentation rates and characteristics of the sedimented material, sediment chemical and physical characteristics and environmental parameters at Lake Windsborn in 2017 and 2018. Measurements of CH4 ebullition were conducted bi-weekly from May to October 2017 and April to November 2018. Sedimentation rates were measured in 2018 in four-week intervals. Characteristics of the sedimented material were measured in 2017 and 2018. Sediment characteristics were measured in November 2017, spring 2018 and August 2019. Meterological parameters (temperature and air pressure) were constantly measured from a floating platform in the lake center.
title Methane ebullition, sedimentation rates, organic matter quality and environmental parameters at small and shallow temperate Lake Windsborn, Germany in 2017 and 2018
topic Aromatics/Polysaccharide peak ratio; Aromatics/Polysaccharide peak ratio, normalized; Austrian standards (OENorm B 4412; OENorm L 1050; OENorm L 1061); Bettenfeld, Germany; Calculated, see reference(s); Calculated from weight loss after ignition at 450 °C; Carbon; Carbon, normalized; Carbon/Nitrogen ratio; Carbon/Nitrogen ratio, normalized; Carbon/sulfur ratio; Carbon/Sulfur ratio, normalized; Carbon cycling; Cavity ringdown spectrometer, Picarro, G2201-i; Cellulose/Polysaccharide peak ratio; Cellulose/Polysaccharide peak ratio, normalized; Clay minerals; Climate change; Date/time end; Date/time start; DEPTH, sediment/rock; Depth comment; Distance to shore; ebullition; Fats+Waxes+Lipids/Polysaccharide peak ratio; Fats+Waxes+Lipids/Polysaccharide peak ratio, normalized; Fourier-transformed infrared spectroscopy (Cary 670 FTIR Spectrometer, Agilent, Santa Clara, USA); Freeze-drying (Alpha 1-4 LPplus, Christ, Osterode, Germany); Gas chromatograph (8610 GC-TCD/FID, SRI Instruments, Torrance, USA); Grain Size; HOBO RX 3000 Remote Monitoring Station Data Logger, S-15TMB-M006 12-Bit Temperature Smart Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-BPB-CM50 Smart Barometric Pressure Sensor (Onset Computer Corporation, Bourne, USA); HOBO RX 3000 Remote Monitoring Station Data Logger, S-THB-M002 12-Bit Tempertaure/Relative Humidity Smart Sensor (Onset Computer Corporation, Bourne, USA); Humic acids/Polysaccharide peak ratio; Humic acids/Polysaccharide peak ratio, normalized; Inverse funnel traps (Wik et al., 2013); Iron; Iron, normalized; Isotope-ratio mass spectroscopy (Eurovector EA3000 coupled with Nu Instruments Nu Horizon, Hekatech, Wegberg, Germany); lakes; LATITUDE; Lignin/Polysaccharide peak ratio; Lignin/Polysaccharide peak ratio, normalized; LONGITUDE; Loss on ignition; Manganese; Manganese, normalized; Methane; Methane, flux; Methane, flux, normalized; Methane, flux, standardized; Methane emissions; MULT; Multiple investigations; Nitrogen; Nitrogen, normalized; Nitrogen/Phosphorus ratio; Nitrogen/Phosphorus ratio, normalized; Normalized; Phenolics/Polysaccharide peak ratio; Phenolics/Polysaccharide peak ratio, normalized; Phosphorus; Phosphorus, normalized; porosity; Porosity; Pressure, air; Pressure, total; Proteins/Polysaccharide peak ratio; Proteins/Polysaccharide peak ratio, normalized; Sand; Sediment; Sedimentation/accumulation rate; Sedimentation rate, normalized; sedimentation rates; Silt; Site; Solinst 3001 LTC Levelogger Edge (Georgetown, Canada); Station label; Sulfur; Sulfur, normalized; Temperature, air; Temperature, in rock/sediment; Temperature, water; Transect number; Water content, sediment; Wavelength dispersive X-ray fluorescence (WD-XRF; ZSX Primus II, Rigaku, Tokyo, Japan); Windsborn_Crater_Lake; δ13C; δ13C, methane; δ13C, normalized; δ15N; δ15N, normalized
url https://doi.org/10.1594/PANGAEA.917518