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Ebeling, Anna; Klein, Ole; Voigt, Nathalie; Pröfrock, Daniel (2023): Trace metal distribution for water samples of Atair cruise AT275 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.963965

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Published: 2023-12-21DOI registered: 2024-01-19

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Abstract:
Offshore wind energy is a steadily growing sector contributing to the worldwide energy production. The impact of these offshore constructions on the marine environment, however, remains unclear in many aspects. In fact, little is known about potential emissions from corrosion protection systems such as organic coatings or galvanic anodes composed of Al and Zn alloys, used to protect offshore structures. In order to assess potential chemical emissions from offshore wind farms and their impact on the marine environment water and sediment samples were taken in and around offshore wind farms of the German Bight between 06.03.2019 and 24.03.2019 within the context of the Hereon-BSH project OffChEm. The water samples were taken in metal-free GO-FLO sampling bottles, filtered over <0.45 µm polycarbonate filters into pre-cleaned LDPE bottles and acidified with nitric acid. The filtrates were then measured for their (trace) metal concentrations with ICP-MS/MS coupled online to a seaFAST preconcentration and matrix removal system.
Related to:
Ebeling, Anna; Klein, Ole; Voigt, Nathalie; de la Granda Grandoso, Francisco; Tewes, Simon; Kirchgeorg, Torben; Weinberg, Ingo; Pröfrock, Daniel (2022): Seawater and sediment data from offshore wind farms in the German Bight collected during the cruise AT275 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.943296
Ebeling, Anna; Klein, Ole; Voigt, Nathalie; de la Granda Grandoso, Francisco; Tewes, Simon; Kirchgeorg, Torben; Weinberg, Ingo; Pröfrock, Daniel (2022): Seawater and sediment data from offshore wind farms in the German Bight collected during the cruise AT275 [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.946483
Ebeling, Anna; Voigt, Nathalie; Petrauskas, Catharina; Ludwig, Jonas; Rust, Bettina; Pieper, Andrea; Zimmermann, Tristan; Klein, Ole; Pröfrock, Daniel (2023): Metal distribution and Sr and Pb stable isotope ratios for sediment samples of Atair cruise AT275 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.963966
Ebeling, Anna; Wippermann, Dominik; Zimmermann, Tristan; Klein, Ole; Kirchgeorg, Torben; Weinberg, Ingo; Plass, Anna; Hasenbein, Simone; Pröfrock, Daniel (2025): Coupling metal concentrations and drift simulations for tracing emissions from offshore wind farms. Marine Pollution Bulletin, 214, 117810, https://doi.org/10.1016/j.marpolbul.2025.117810
Ebeling, Anna; Zimmermann, Tristan; Klein, Ole; Irrgeher, Johanna; Pröfrock, Daniel (2022): Analysis of Seventeen Certified Water Reference Materials for Trace and Technology-Critical Elements. Geostandards and Geoanalytical Research, 46(2), 351-378, https://doi.org/10.1111/ggr.12422
Voigt, Nathalie; Ebeling, Anna; Klein, Ole; Pröfrock, Daniel (2022): Grain size distribution for sediment samples of the cruise AT275 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.946482
Project(s):
Coverage:
Median Latitude: 54.247332 * Median Longitude: 7.088258 * South-bound Latitude: 53.954476 * West-bound Longitude: 5.869354 * North-bound Latitude: 54.574883 * East-bound Longitude: 7.870167
Date/Time Start: 2019-03-06T08:06:00 * Date/Time End: 2019-03-24T15:48:00
Minimum DEPTH, water: 10 m * Maximum DEPTH, water: 10 m
Event(s):
Atair275_2 (S_002_AMWE4)  * Latitude: 54.535528 * Longitude: 7.709991 * Date/Time: 2019-03-06T13:06:00 * Elevation: -22.5 m * Location: North Sea * Campaign: Atair275 (AT275) * Basis: Atair * Method/Device: Multiple investigations (MULT)
Atair275_4 (S_004_AMWE3)  * Latitude: 54.514561 * Longitude: 7.709955 * Date/Time: 2019-03-06T12:39:00 * Elevation: -22.5 m * Location: North Sea * Campaign: Atair275 (AT275) * Basis: Atair * Method/Device: Multiple investigations (MULT)
Atair275_5 (S_005_AMWE7)  * Latitude: 54.520611 * Longitude: 7.669550 * Date/Time: 2019-03-06T14:05:00 * Elevation: -24.7 m * Location: North Sea * Campaign: Atair275 (AT275) * Basis: Atair * Method/Device: Multiple investigations (MULT)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventEbeling, Anna
Sample code/labelSample labelEbeling, Anna
International Generic Sample NumberIGSNEbeling, Anna
Station labelStationEbeling, Anna
DEPTH, waterDepth watermEbeling, AnnaGeocode
Latitude of eventLatitudeEbeling, Anna
Longitude of eventLongitudeEbeling, Anna
Date/Time of eventDate/TimeEbeling, Anna
Elevation of eventElevationmEbeling, Anna
10 YttriumYng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 4 ng/l, limit of quantification: 12 ng/l
11 Yttrium, standard deviationY std dev±Ebeling, Anna
12 LanthanumLang/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.18 ng/l, limit of quantification: 0.51 ng/l
13 Lanthanum, standard deviationLa std dev±Ebeling, Anna
14 CeriumCeng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.22 ng/l, limit of quantification: 0.67 ng/l
15 Cerium, standard deviationCe std dev±Ebeling, Anna
16 PraseodymiumPrng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.014 ng/l, limit of quantification: 0.043 ng/l
17 Praseodymium, standard deviationPr std dev±Ebeling, Anna
18 NeodymiumNdng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.055 ng/l, limit of quantification: 0.16 ng/l
19 Neodymium, standard deviationNd std dev±Ebeling, Anna
20 SamariumSmng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.011 ng/l, limit of quantification: 0.04 ng/l
21 Samarium, standard deviationSm std dev±Ebeling, Anna
22 EuropiumEung/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.028 ng/l, limit of quantification: 0.094 ng/l
23 Europium, standard deviationEu std dev±Ebeling, Anna
24 GadoliniumGdng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.065 ng/l, limit of quantification: 0.17 ng/l
25 Gadolinium, standard deviationGd std dev±Ebeling, Anna
26 TerbiumTbng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.017 ng/l, limit of quantification: 0.056 ng/l
27 Terbium, standard deviationTb std dev±Ebeling, Anna
28 DysprosiumDyng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.023 ng/l, limit of quantification: 0.08 ng/l
29 Dysprosium, standard deviationDy std dev±Ebeling, Anna
30 HolmiumHong/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.011 ng/l, limit of quantification: 0.039 ng/l
31 Holmium, standard deviationHo std dev±Ebeling, Anna
32 ErbiumErng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.011 ng/l, limit of quantification: 0.036 ng/l
33 Erbium, standard deviationEr std dev±Ebeling, Anna
34 ThuliumTmng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.014 ng/l, limit of quantification: 0.043 ng/l
35 Thulium, standard deviationTm std dev±Ebeling, Anna
36 YtterbiumYbng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.016 ng/l, limit of quantification: 0.064 ng/l
37 Ytterbium, standard deviationYb std dev±Ebeling, Anna
38 LutetiumLung/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.0063 ng/l, limit of quantification: 0.027 ng/l
39 Lutetium, standard deviationLu std dev±Ebeling, Anna
40 AluminiumAlng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 100 ng/l, limit of quantification: 210 ng/l
41 Aluminium, standard deviationAl std dev±Ebeling, Anna
42 VanadiumVng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 2.3 ng/l, limit of quantification: 5.6 ng/l
43 Vanadium, standard deviationV std dev±Ebeling, Anna
44 ManganeseMnng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 28 ng/l, limit of quantification: 69 ng/l
45 Manganese, standard deviationMn std dev±Ebeling, Anna
46 NickelNing/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 39 ng/l, limit of quantification: 96 ng/l
47 Nickel, standard deviationNi std dev±Ebeling, Anna
48 CopperCung/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 25 ng/l, limit of quantification: 54 ng/l
49 Copper, standard deviationCu std dev±Ebeling, Anna
50 ZincZnng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 230 ng/l, limit of quantification: 490 ng/l
51 Zinc, standard deviationZn std dev±Ebeling, Anna
52 GalliumGang/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.39 ng/l, limit of quantification: 1.1 ng/l
53 Gallium, standard deviationGa std dev±Ebeling, Anna
54 MolybdenumMong/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 6.9 ng/l, limit of quantification: 16 ng/l
55 Molybdenum, standard deviationMo std dev±Ebeling, Anna
56 CadmiumCdng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.41 ng/l, limit of quantification: 1 ng/l
57 Cadmium, standard deviationCd std dev±Ebeling, Anna
58 IndiumInng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.0041 ng/l, limit of quantification: 0.011 ng/l
59 Indium, standard deviationIn std dev±Ebeling, Anna
60 TinSnng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 5.1 ng/l, limit of quantification: 12 ng/l
61 TungstenWng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.14 ng/l, limit of quantification: 0.36 ng/l
62 Tungsten, standard deviationW std dev±Ebeling, Anna
63 LeadPbng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 1.9 ng/l, limit of quantification: 3.2 ng/l
64 Lead, standard deviationPb std dev±Ebeling, Anna
65 UraniumUng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.2 ng/l, limit of quantification: 0.46 ng/l
66 Uranium, standard deviationU std dev±Ebeling, Anna
67 CobaltCong/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.35 ng/l, limit of quantification: 0.91 ng/l
68 Cobalt, standard deviationCo std dev±Ebeling, Anna
69 IronFeng/lEbeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 410 ng/l, limit of quantification: 800 ng/l
70 Iron, standard deviationFe std dev±Ebeling, Anna
71 Gadolinium anomalyGd/Gd*Ebeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.35 ng/l, limit of quantification: 0.91 ng/l
72 Gadolinium anomaly, uncertaintyGd/Gd* unc±Ebeling, Anna
73 Gadolinium, anthropogenicGd anthrop%Ebeling, AnnaICP-MS, Elemental Scientific, seaFASTmeasured in water column, < 0.45 µm filtrate, limit of detection: 0.35 ng/l, limit of quantification: 0.91 ng/l
74 Gadolinium, anthropogenic, uncertaintyGd anthrop unc±Ebeling, Anna
75 Quality assessmentQuality assessmentEbeling, Anna
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
5499 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

Sample label

IGSN

Station

Depth water [m]

Latitude

Longitude

Date/Time

Elevation [m]
10 
Y [ng/l]
11 
Y std dev [±]
12 
La [ng/l]
13 
La std dev [±]
14 
Ce [ng/l]
15 
Ce std dev [±]
16 
Pr [ng/l]
17 
Pr std dev [±]
18 
Nd [ng/l]
19 
Nd std dev [±]
20 
Sm [ng/l]
21 
Sm std dev [±]
22 
Eu [ng/l]
23 
Eu std dev [±]
24 
Gd [ng/l]
25 
Gd std dev [±]
26 
Tb [ng/l]
27 
Tb std dev [±]
28 
Dy [ng/l]
29 
Dy std dev [±]
30 
Ho [ng/l]
31 
Ho std dev [±]
32 
Er [ng/l]
33 
Er std dev [±]
34 
Tm [ng/l]
35 
Tm std dev [±]
36 
Yb [ng/l]
37 
Yb std dev [±]
38 
Lu [ng/l]
39 
Lu std dev [±]
40 
Al [ng/l]
41 
Al std dev [±]
42 
V [ng/l]
43 
V std dev [±]
44 
Mn [ng/l]
45 
Mn std dev [±]
46 
Ni [ng/l]
47 
Ni std dev [±]
48 
Cu [ng/l]
49 
Cu std dev [±]
50 
Zn [ng/l]
51 
Zn std dev [±]
52 
Ga [ng/l]
53 
Ga std dev [±]
54 
Mo [ng/l]
55 
Mo std dev [±]
56 
Cd [ng/l]
57 
Cd std dev [±]
58 
In [ng/l]
59 
In std dev [±]
60 
Sn [ng/l]
61 
W [ng/l]
62 
W std dev [±]
63 
Pb [ng/l]
64 
Pb std dev [±]
65 
U [ng/l]
66 
U std dev [±]
67 
Co [ng/l]
68 
Co std dev [±]
69 
Fe [ng/l]
70 
Fe std dev [±]
71 
Gd/Gd*
72 
Gd/Gd* unc [±]
73 
Gd anthrop [%]
74 
Gd anthrop unc [±]
75 
Quality assessment
Atair275_2 s_AT275_Stat_S_002_AMWE4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER7757CS_002_AMWE41054.53557.71002019-03-06T13:06:00-2224.10.15.100.103.40.30.890.024.260.161.070.050.2930.0392.340.050.2610.0092.080.030.5360.0031.780.030.2670.0091.880.060.3180.01337010117010357.03.052045313970704.000.10810020028.50.30.0230.008<5.112.60.16.40.728102015.01.01.700.164116
Atair275_4 s_AT275_Stat_S_004_AMWE3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9869AS_004_AMWE31054.51467.71002019-03-06T12:39:00-2223.51.41.100.302.10.30.750.023.850.071.000.140.2540.0441.510.010.2400.0261.870.250.4790.0651.510.290.2440.0351.520.420.2820.0404701201340140408.061.0462793682151190404.600.30880070032.72.7<0.011<5.115.22.55.20.8298016015.01.01.130.2612225Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_5 s_AT275_Stat_S_005_AMWE7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERDB952S_005_AMWE71054.52067.66962019-03-06T14:05:00-2523.60.65.100.303.60.60.880.064.210.181.030.050.2890.0402.200.160.2500.0102.030.060.5270.0181.760.040.2560.0101.940.040.2910.004410201280170411.046.057962658147990904.900.50830020028.80.10.0340.005<5.113.00.57.61.528906018.02.01.700.214124
Atair275_6 s_AT275_Stat_S_006_ANWE8_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER29979S_006_ANWE81054.51777.73582019-03-06T10:39:00-2024.40.45.100.103.10.10.860.024.150.051.050.010.2830.0432.560.040.2590.0062.070.020.5280.0051.780.020.2680.0091.930.090.2990.00639020116010317.06.0549235291112904304.100.10830020030.00.30.0250.004<5.113.30.16.11.428505015.01.01.880.05474
Atair275_7 s_AT275_Stat_S_007_AMWE5_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER59A5FS_007_AMWE51054.52377.73302019-03-06T11:59:00-2324.50.15.000.103.10.10.870.014.190.101.000.020.2920.0152.550.050.2580.0032.050.010.5220.0181.810.020.2620.0111.890.100.3020.008340401350290363.060.06291106121321330704.801.10890040031.30.40.0280.004<5.114.10.76.21.130509018.04.02.080.10526
Atair275_8 s_AT275_Stat_S_008_AMWE6_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER74246S_008_AMWE61054.52587.76922019-03-06T09:57:00-2125.10.55.400.303.50.40.840.084.150.201.040.090.2680.0272.650.330.2540.0242.000.160.5230.0501.730.230.2430.0481.680.330.3170.0094602301220130381.09.060516050224414504304.800.20840040036.42.40.0310.019<5.114.51.65.42.829208013.01.01.980.405034
Atair275_9 s_AT275_Stat_S_009_AMWE15_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9E5F2S_009_AMWE151054.57497.70892019-03-06T15:47:00-2226.00.45.500.503.80.90.940.064.480.291.130.030.3280.0252.800.350.2760.0072.150.050.5560.0141.880.010.2880.0082.020.100.3310.00634020114010450.014.0596658921220504.200.10870020033.30.20.0280.002<5.114.70.26.81.029003015.01.01.920.284830
Atair275_11 s_AT275_Stat_S_011_AMWE19_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERAF84ES_011_AMWE191054.52547.58202019-03-06T14:40:00-2422.40.35.000.203.70.20.920.074.270.171.110.120.2950.0012.380.210.2610.0122.010.090.5100.0191.720.140.2910.0412.040.490.4540.13031010119010506.03.046124795820504.000.10890020026.60.20.0270.003<5.112.40.48.30.430101021.01.01.610.333845Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_12 s_AT275_Stat_S_012_AMWE20_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9C29BS_012_AMWE201054.49287.70172019-03-20T14:13:00-2426.30.15.600.103.80.10.960.014.670.061.140.040.3330.0133.590.150.2820.0062.230.050.5740.0091.970.050.3000.0072.200.110.3750.01631010104010329.02.0637459531270304.100.10860020034.20.20.0360.009<5.113.80.27.00.228705014.01.02.520.20609
Atair275_13 s_AT275_Stat_S_013_AMWE21_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHEREE9DDS_013_AMWE211054.52387.79502019-03-06T09:28:00-2026.40.56.201.004.91.71.080.144.700.251.220.150.3260.0342.900.100.2830.0202.240.090.5740.0271.940.060.2910.0072.040.140.3500.01941050114010468.084.0641661471360604.300.10850010036.00.20.0380.009<5.115.60.27.50.228502014.01.01.790.384435
Atair275_14 s_AT275_Stat_S_014_AMWE22_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD99ABS_014_AMWE221054.52237.84472019-03-06T08:06:00-2027.91.17.801.904.90.71.310.266.040.941.420.190.4210.0143.530.200.3400.0412.560.370.6180.0252.060.110.3390.0482.520.330.3990.06463030112040563.0122.0683286601918602104.300.20840020036.61.30.0350.002<5.116.90.48.50.5271012014.01.02.060.515132
Atair275_15 s_AT275_Stat_S_015_NOST4_WH_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER4AC34S_015_NOST4_WH1054.47217.71842019-03-21T08:03:00-2328.40.15.700.104.00.11.030.024.930.101.250.040.3490.0203.660.250.3050.0032.380.030.6160.0172.130.040.3170.0052.400.110.3770.00830010103010341.02.06895630151450704.100.20840030035.60.20.0430.006<5.114.21.06.80.328303015.01.02.250.215615
Atair275_16 s_AT275_Stat_S_016_HELW1_WH_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER949DCS_016_HELW1_WH1054.45507.77272019-03-21T07:33:00-2430.30.46.000.104.70.11.080.015.260.071.320.040.3810.0264.250.090.3290.0082.570.010.6810.0062.290.030.3450.0122.670.240.4220.00832030106010517.05.0797470151550304.700.20810020036.90.10.0570.013<5.116.40.27.70.427804018.01.02.500.16606
Atair275_17 s_AT275_Stat_S_017_NOST4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERA4B73S_017_NOST41054.47177.71872019-03-07T10:07:00-2426.60.25.300.103.30.30.920.044.430.171.110.030.3070.0332.960.060.2760.0062.190.040.5670.0021.900.030.2860.0052.000.210.3320.00335020113010401.010.05765563711801804.200.10860010032.70.20.0280.001<5.114.50.16.00.828602016.01.02.080.14528
Atair275_18 s_AT275_Stat_S_018_NOST1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9A466S_018_NOST11054.45587.70492019-03-21T09:30:00-2624.80.45.400.104.10.10.940.034.460.071.120.040.3140.0273.540.110.2830.0052.230.050.5740.0011.980.040.3050.0062.160.130.3610.0142769100714461.010.0692164031500302.900.101160020036.10.30.0460.014<5.119.20.17.10.422924918.90.4<8001602.450.19598
Atair275_19 s_AT275_Stat_S_019_NOST5_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER23FC5S_019_NOST51054.44977.69052019-03-21T10:03:00-2623.80.35.000.103.70.10.880.024.260.121.030.020.2900.0133.240.150.2630.0082.080.040.5330.0151.860.030.2760.0092.000.100.3230.0042873210033394.04.0676862421350803.000.101180020035.60.10.0270.001<5.118.50.36.30.322341117.50.2<8001962.540.16619
Atair275_20 s_AT275_Stat_S_020_NOST6_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD72D7S_020_NOST61054.44177.64452019-03-21T11:52:00-2525.74.25.700.904.20.60.990.134.650.741.170.210.3430.0523.110.860.2980.0362.240.300.5960.0942.000.290.3140.0382.120.300.3960.0493243898627442.016.060535831215703802.800.101170030033.00.90.0270.004<5.117.30.67.00.221816618.20.5<8001852.060.835172Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_21 s_AT275_Stat_S_021_NOST7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER92B29S_021_NOST71054.43827.67602019-03-21T11:26:00-2523.60.65.300.604.00.70.890.054.230.201.050.050.2910.0283.190.130.2570.0102.000.060.5140.0171.820.020.2640.0141.990.050.3160.01328369957415.03.0639460961270302.800.101180030034.30.50.0280.002<5.117.80.16.30.121923017.70.2<8001052.390.255811
Atair275_22 s_AT275_Stat_S_022_NOST3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERF7C62S_022_NOST31054.43427.71072019-03-21T10:34:00-2624.20.35.300.203.90.20.900.024.320.021.080.010.2880.0173.440.120.2650.0042.110.020.5400.0071.850.040.2750.0041.910.190.3290.006286279938393.09.07101564341490703.000.201170010035.90.10.0330.001<5.119.00.36.70.121633517.90.2<8001652.480.10607
Atair275_23 s_AT275_Stat_S_023_NOST42_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERB929BS_023_NOST421054.43557.57162019-03-20T15:16:00-2621.32.83.701.703.50.60.840.123.870.550.920.190.2520.0641.921.080.2210.0461.690.360.4230.1071.330.420.1670.0821.170.750.1870.10928836108583452.022.04377246113001303.100.201220050035.61.6<0.011<5.119.92.45.40.121656017.01.4<8002381.701.1042161Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_24 s_AT275_Stat_S_024_NOST43_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER6A8D3S_024_NOST431054.43677.61172019-03-21T12:19:00-2622.70.55.000.203.70.10.870.034.080.161.010.040.2810.0202.380.080.2490.0071.930.040.4980.0101.680.050.2480.0031.790.060.2840.0092858101616417.013.0603425592312302102.800.201180050032.61.00.0390.002<5.115.90.96.70.121733217.80.4<8001241.860.164613
Atair275_25 s_AT275_Stat_S_025_NOST35_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9F629S_025_NOST351054.45307.87022019-03-07T07:12:00-2021.82.52.702.502.61.00.800.173.870.640.930.190.2640.0901.971.100.2400.0731.690.370.4550.1211.430.480.2410.1461.500.860.3690.27423638122723564.021.0504392731014801703.600.201250010039.22.60.0220.015<5.123.33.75.11.121155514.90.8<8001831.701.1042159Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_26 s_AT275_Stat_S_026_TI7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER258E3S_026_TI71054.41547.70862019-03-21T13:34:00-2425.52.95.400.603.90.40.940.084.490.381.110.110.3270.0323.110.770.2830.0262.200.210.5570.0631.920.240.2900.0242.150.210.3390.0312621093913339.07.06571759771300802.800.101120030033.90.60.0300.002<5.116.60.86.90.42027316.60.1<800242.210.685555
Atair275_27 s_AT275_Stat_S_027_MEWI1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD2CBAS_027_MEWI11054.39527.70882019-03-21T14:01:00-2424.10.15.200.103.60.10.890.024.280.141.030.020.2860.0202.680.200.2610.0062.030.080.5220.0071.800.020.2600.0102.070.210.3110.008257209415346.01.06233585111310202.700.101140030033.20.10.0270.001<5.116.20.86.60.320381017.60.4<800582.110.195317
Atair275_28 s_AT275_Stat_S_028_MEWI3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER99C97S_028_MEWI31054.35687.70822019-03-21T14:42:00-2423.70.25.300.204.00.30.910.034.350.161.060.060.3020.0112.820.150.2680.0052.050.050.5180.0011.800.010.2670.0041.980.130.3050.00925679336421.021.05971575281200202.700.101130020032.30.30.0250.003<5.115.31.27.00.120345219.50.3<8002332.130.265316
Atair275_29 s_AT275_Stat_S_029_MEWI6_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER3B599S_029_MEWI61054.39677.64852019-03-21T12:56:00-2625.62.25.500.603.90.50.970.134.530.401.120.120.3140.0713.150.560.3030.0522.210.250.5910.0831.950.230.3450.0952.260.380.5130.211238994818359.05.059812564131160302.600.201130020032.60.60.0250.002<5.115.90.76.60.620355916.90.4<800862.220.585542
Atair275_30 s_AT275_Stat_S_030_TI13_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER296C9S_030_TI131054.37487.64722019-03-21T15:39:00-2625.51.55.600.304.10.20.990.054.640.321.120.030.3270.0112.890.140.2840.0152.160.100.5580.0371.930.080.2900.0252.030.230.3390.0182621593934417.05.060415570101210102.700.101140030032.31.10.0320.007<5.115.80.56.90.120678319.10.5<8001832.080.195213
Atair275_31 s_AT275_Stat_S_031_MEWI7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD283DS_031_MEWI71054.35947.64732019-03-21T15:15:00-2724.60.15.300.103.90.10.920.014.400.021.080.010.3010.0112.850.230.2700.0052.100.050.5380.0061.870.030.2680.0062.010.030.3180.015259398116468.01.05956601151310602.700.101160040033.20.70.0250.001<5.116.30.67.60.422058920.20.1<8001392.100.175218
Atair275_32 s_AT275_Stat_S_032_MEWI36_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERC2E3FS_032_MEWI361054.41117.78602019-03-21T06:57:00-2324.60.25.200.103.80.10.940.034.500.091.140.040.3310.0373.270.190.2840.0192.170.040.5620.0221.960.050.3170.0552.050.090.4480.117273169313262.04.06835618916302202.900.101100020035.90.10.0510.012<5.117.90.67.50.62116413.80.2<800422.210.205514
Atair275_33 s_AT275_Stat_S_033_MEWI37_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER43792S_033_MEWI371054.41107.82412019-03-21T06:36:00-2123.73.34.801.804.21.10.930.144.410.651.040.210.3150.0472.951.420.2560.0521.930.490.4760.1391.600.670.2220.1201.511.050.2550.1753402995744310.012.06181034932091570603.000.101140060035.51.60.0720.033<5.118.81.96.71.622009217.70.5<8003502.301.4057103Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_34 s_AT275_Stat_S_034_MEWI38_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERF7992S_034_MEWI381054.33767.72742019-03-20T17:13:00-2524.03.75.302.504.81.50.930.114.440.461.080.200.3160.0433.351.710.2620.0621.970.510.4960.1541.640.680.2240.1191.721.140.2560.19226438101897608.032.06801185702481610503.100.201100030036.62.50.0220.023<5.122.73.37.61.821408822.80.78532222.501.5060103Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_35 s_AT275_Stat_S_035_MEWI40_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER7B4BES_035_MEWI401054.36867.61762019-03-21T16:28:00-2723.70.35.300.103.90.10.910.014.390.091.070.050.3020.0052.660.050.2630.0042.040.020.5260.0021.820.030.2640.0061.930.080.3020.00526179452426.05.05928557513401202.700.101150020033.30.20.0240.001<5.116.70.37.40.221502018.60.2<8001041.990.185011
Atair275_36 s_AT275_Stat_S_036_MEWI41_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER6A544S_036_MEWI411054.37297.57672019-03-20T16:21:00-2623.10.26.000.904.81.30.920.034.280.081.060.060.3040.0443.270.060.2780.0312.030.100.5340.0491.830.060.3170.0692.010.260.4990.232316996715423.027.059735575131520202.800.201170030033.80.20.0510.021<5.117.10.47.80.421603218.40.311322532.430.26599
Atair275_39 s_AT275_Stat_S_039_DOLW1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER44E2ES_039_DOLW11053.99656.40242019-03-23T06:35:00-2814.40.43.600.104.70.10.720.013.420.080.830.020.2240.0041.310.030.1870.0021.380.040.3190.0081.060.010.1490.0041.050.060.1580.00921465126513262.04.032323067<4901.900.101290040023.60.30.0110.001<5.110.60.510.30.125033818.50.2<800491.270.072123Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_40 s_AT275_Stat_S_040_ALVE5_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER47A63S_040_ALVE51054.01156.66422019-03-23T13:13:00-3114.90.24.300.405.70.70.810.113.760.430.890.080.2370.0261.350.080.1980.0181.430.070.3380.0061.100.030.1490.0041.090.100.1500.007<210125515293.016.032133199<4902.000.101310010024.00.20.0140.002<5.111.20.410.20.625031518.50.19968391.250.232091Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_41 s_AT275_Stat_S_041_ALVE4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERAA636S_041_ALVE41054.01136.63812019-03-23T12:39:00-3014.90.23.870.055.00.10.780.013.710.050.900.040.2560.0251.340.030.2020.0061.490.050.3690.0021.160.040.1680.0111.080.060.1730.00232090120010246.50.430022873<4901.900.10850030020.60.1<0.0117.40.49.20.426204018.01.01.200.101649Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_42 s_AT275_Stat_S_042_ALVE2_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER2736ES_042_ALVE21054.01406.61042019-03-23T11:46:00-3015.10.23.880.024.90.10.770.013.670.010.870.020.2210.0231.320.030.1990.0051.480.050.3590.0041.140.040.1610.0061.050.040.1670.00229010124010252.33.131742963<4902.100.10900030021.60.4<0.0117.80.210.61.726803019.01.01.250.062022Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_43 s_AT275_Stat_S_043_ALVE3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9EEADS_043_ALVE31054.00716.61082019-03-23T12:12:00-3015.40.44.650.896.11.10.850.114.010.540.950.120.2850.0541.440.140.2150.0241.540.110.3780.0321.190.050.1840.0241.080.070.2170.061410130118010265.67.1321312787<4902.600.90850040020.70.4<0.0117.81.612.01.425404018.01.01.250.3120129Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_44 s_AT275_Stat_S_044_ALVE1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9252BS_044_ALVE11054.01076.57582019-03-23T10:48:00-2915.30.13.790.054.80.10.760.013.630.110.870.010.2530.0331.300.020.1970.0031.480.010.3560.0011.150.030.1640.0051.130.070.1680.00827010122010240.62.731662938<4902.100.10900020021.30.2<0.0117.60.19.00.225602018.01.01.220.051819Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_45 s_AT275_Stat_S_045_BKRI5_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER54844S_045_BKRI51053.98076.60252019-03-23T10:09:00-2915.40.24.060.065.20.10.800.023.770.090.920.050.2520.0131.360.070.1980.0021.480.010.3530.0061.130.010.1600.0071.140.070.1610.001280100115010308.38.6290228633<4901.900.10860020020.40.1<0.0117.00.18.20.124202016.01.01.180.141572Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_46 s_AT275_Stat_S_046_BKRI4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER2246BS_046_BKRI41053.98076.57782019-03-23T09:37:00-2815.20.34.020.075.20.10.810.023.810.050.910.010.2390.0321.340.050.2000.0021.490.010.3550.0221.130.050.1640.0101.050.030.1690.00426070114010308.09.4295926611<4901.800.10850030020.81.1<0.0116.90.58.30.123702016.01.01.200.051726Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_47 s_AT275_Stat_S_047_BKRI3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERDF4E2S_047_BKRI31053.98076.53072019-03-23T09:11:00-2715.10.33.990.135.10.20.780.033.610.060.870.040.2610.0111.380.030.1900.0081.430.020.3550.0061.120.020.1610.0021.140.060.1610.00228040120010290.33.331332946<4902.000.10900010021.30.10.0660.0537.50.19.50.224502017.01.01.300.102235Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_48 s_AT275_Stat_S_048_BKRI2_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER99FD6S_048_BKRI21053.98096.49862019-03-23T08:29:00-2615.00.24.120.285.40.30.770.013.610.120.870.020.2720.0241.370.040.2040.0121.470.040.3560.0211.140.040.1820.0261.070.080.2200.06228070114010264.41.9298726413760802.000.10850020020.10.20.0710.0247.00.49.10.523704016.01.01.270.082225Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_49 s_AT275_Stat_S_049_BKRI1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER95B2CS_049_BKRI11053.98156.48902019-03-23T08:06:00-2615.40.64.300.245.70.40.770.023.680.070.920.050.2350.0191.380.060.1950.0111.520.050.3580.0151.150.060.1610.0011.060.030.1690.00632090113010270.56.6295527820980501.900.10850020020.10.5<0.0116.80.28.70.123403016.01.01.170.131573Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_52 s_AT275_Stat_S_052_GOWI10_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER7B75CS_052_GOWI101053.99336.92882019-03-23T15:25:00-2918.30.95.070.185.20.10.880.034.060.190.990.040.2590.0111.890.120.2260.0241.700.070.4170.0311.370.110.1960.0011.350.070.2070.009<21099060405.10.43532132535600201.800.20820070022.21.30.0240.0058.50.87.20.3220013019.01.01.500.203426
Atair275_53 s_AT275_Stat_S_053_GOWI6_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER82398S_053_GOWI61053.99596.97742019-03-23T16:28:00-2919.10.35.190.075.00.10.860.014.140.020.970.030.2650.0152.020.070.2290.0101.740.060.4350.0111.430.040.2060.0011.450.150.2150.003<210100010410.72.139133559620101.900.10840020023.80.20.0230.0079.50.27.40.222402021.01.01.700.104212
Atair275_54 s_AT275_Stat_S_054_GOWI7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER29D9CS_054_GOWI71053.99566.98422019-03-23T16:49:00-2919.50.85.260.175.20.10.890.034.200.111.010.020.3170.0182.280.060.2430.0111.850.030.4620.0121.480.030.2310.0301.490.130.2920.060<21098010399.32.539933699620101.900.10820020024.50.50.0230.0029.90.47.30.122005021.01.01.800.10459
Atair275_55 s_AT275_Stat_S_055_GOWI9_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER98C3DS_055_GOWI91053.99987.02692019-03-24T06:57:00-2919.40.25.050.035.20.10.870.014.180.041.010.040.2780.0512.150.080.2390.0071.790.050.4440.0031.450.020.2110.0011.440.080.2280.002<21097010456.81.342443884660101.800.10850020026.00.10.0270.00310.10.37.60.323101021.01.01.720.144215
Atair275_56 s_AT275_Stat_S_056_GOWI11_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER7EA99S_056_GOWI111054.00037.07562019-03-24T06:34:00-2819.80.25.040.075.20.10.880.024.230.071.030.050.2770.0292.130.070.2360.0031.830.040.4540.0041.480.050.2140.0061.490.120.2370.004<21094010478.92.8438339613750501.700.10840020026.30.30.0250.0049.60.57.50.123401022.01.01.660.164018
Atair275_57 s_AT275_Stat_S_057_GOWI4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERC79B9S_057_GOWI41054.02507.03382019-03-24T08:35:00-3120.81.75.340.455.70.50.940.094.540.371.090.100.3480.0532.590.440.2600.0261.970.180.4940.0521.570.180.2460.0461.630.050.2990.07522020108413502.55.1438644410740502.980.14910030028.40.40.0410.009<5.111.80.19.30.228002023.60.11.930.474845
Atair275_58 s_AT275_Stat_S_058_GOWI3_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER66E8AS_058_GOWI31054.02517.01562019-03-24T09:00:00-3119.50.24.990.045.40.10.880.014.230.021.020.020.2810.0152.250.010.2360.0031.830.020.4440.0041.480.010.2150.0021.450.060.2330.0072607010983497.01.3448745657901103.020.04930020028.90.30.0350.001<5.111.70.29.80.727807023.50.21.800.10445
Atair275_60 s_AT275_Stat_S_060_GOWI2_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER895B9S_060_GOWI21054.02416.96022019-03-24T09:30:00-3119.61.55.170.355.40.40.890.064.270.281.040.090.2960.0242.290.300.2350.0161.810.120.4430.0331.480.140.2080.0141.500.040.2220.01123030116617512.510.144574486770303.090.09970020029.00.50.0380.002<5.111.80.29.40.428902023.70.31.760.364341
Atair275_61 s_AT275_Stat_S_061_GOWI1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER7FC26S_061_GOWI11054.02546.93672019-03-24T09:56:00-3119.30.25.200.095.20.10.860.014.150.121.000.020.2910.0112.140.010.2340.0061.790.050.4350.0031.430.040.2120.0021.350.080.2170.0072206011347466.410.942810419311704903.000.02940010028.00.20.0360.002<5.111.30.19.50.727801023.40.21.730.08427
Atair275_64 s_AT275_Stat_S_064_GOWI54_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERAABA8S_064_GOWI541053.95457.01862019-03-23T17:27:00-2619.00.35.130.075.00.10.870.024.080.151.010.010.2880.0122.090.070.2430.0161.770.050.4510.0061.430.050.2260.0201.560.060.2750.051<21011613444.72.645344423750502.920.07940020028.70.10.0280.001<5.111.20.58.40.228307024.10.31.630.083911
Atair275_65 s_AT275_Stat_S_065_GOWI59_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER68296S_065_GOWI591054.03206.90482019-03-24T10:23:00-3219.30.35.260.055.10.10.870.014.180.091.010.020.3030.0292.030.040.2300.0091.770.050.4350.0031.430.010.2040.0011.390.060.2260.00521010117214472.17.541954058700303.070.08950020027.10.50.0270.001<5.110.70.38.80.328502024.40.41.620.08389
Atair275_67 s_AT275_Stat_S_067_GOWI26_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERF4B29S_067_GOWI261054.07306.93662019-03-24T14:15:00-3515.00.93.600.805.10.40.780.053.720.250.860.070.2170.0171.260.150.1860.0241.370.140.3380.0541.020.170.1310.0390.840.330.1270.050<21012208437.317.5255214815<4902.900.12920010023.40.40.0110.005<5.18.61.39.51.1291010018.10.41.240.2419100Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_68 s_AT275_Stat_S_068_GOWI24_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERECF7AS_068_GOWI241054.09197.01382019-03-24T14:54:00-3418.50.25.100.105.20.10.870.014.180.091.030.020.2790.0142.190.110.2270.0071.770.040.4250.0071.410.020.2020.0031.320.080.2050.0062609011349511.08.1403439387901002.960.10920030027.11.20.0310.007<5.110.80.49.60.327403022.70.11.680.114115
Atair275_69 s_AT275_Stat_S_069_GOWI21_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER2D75DS_069_GOWI211054.07416.97942019-03-24T13:55:00-3517.80.15.000.105.30.10.860.014.200.041.010.040.2680.0121.790.060.2170.0051.710.020.4080.0031.320.020.1910.0081.250.060.2020.0042101011616426.32.536223449580102.800.08910020024.80.30.0190.002<5.19.10.38.30.127103020.30.11.440.123022
Atair275_70 s_AT275_Stat_S_070_GOWI25_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERC99DAS_070_GOWI251054.05567.01452019-03-24T11:57:00-3518.90.25.100.105.30.10.860.014.170.101.040.030.2740.0192.050.060.2300.0071.770.010.4250.0021.440.010.2040.0041.470.060.2080.0082204010986484.33.041023884610102.740.06880020026.70.10.0240.001<5.110.10.49.20.726803022.20.11.540.103515
Atair275_71 s_AT275_Stat_S_071_GOWI20_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERBA95CS_071_GOWI201054.05507.04452019-03-24T12:17:00-3419.20.35.100.105.40.20.880.034.270.101.050.030.3060.0072.140.030.2410.0091.820.060.4450.0131.480.010.2310.0271.450.070.2930.0772101010923495.32.3418140626901102.740.07890020027.10.10.0250.001<5.110.20.39.50.526702022.30.11.620.103811
Atair275_72 s_AT275_Stat_S_072_GOWI22_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER25762S_072_GOWI221054.07387.02122019-03-24T13:13:00-3619.00.45.200.205.30.10.880.024.250.051.040.020.2960.0281.980.130.2230.0061.780.060.4260.0051.400.020.2010.0081.370.080.2170.0082301011115504.01.440113857690302.820.09890020026.10.20.0220.001<5.19.60.79.80.326803022.30.11.520.123422
Atair275_73 s_AT275_Stat_S_073_GOWI23_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER2BE89S_073_GOWI231054.07307.06282019-03-24T12:48:00-3619.60.25.200.205.80.50.940.064.470.311.080.070.3090.0102.120.110.2360.0121.830.010.4450.0161.450.010.2100.0131.390.040.2230.0093408010955519.811.7420341137201602.830.08880020027.30.20.0260.006<5.19.90.210.90.926502023.00.31.580.223730
Atair275_75 s_AT275_Stat_S_075_GOWI29_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER9229FS_075_GOWI291054.07597.17352019-03-24T15:48:00-3420.60.25.100.105.20.10.950.014.610.011.100.050.3410.0272.670.040.2540.0121.970.010.4830.0221.580.030.2430.0261.680.130.3000.0523001010938521.94.3475148916860703.240.08890030028.70.40.0370.006<5.112.00.211.50.226304025.70.11.980.175010
Atair275_78 s_AT275_Stat_S_078_GOWI55_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER94582S_078_GOWI551054.03307.02892019-03-24T08:00:00-3120.00.25.100.105.40.10.890.014.310.051.040.010.3080.0332.320.100.2340.0051.850.060.4520.0041.490.040.2170.0031.500.100.2320.00224030105710495.91.844154337680302.800.03890020028.40.20.0360.006<5.111.00.39.00.326406023.30.21.800.094511
Atair275_79 s_AT275_Stat_S_079_GOWI57_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER62DB2S_079_GOWI571054.03417.07632019-03-24T07:30:00-3121.41.85.400.505.70.60.950.104.580.391.160.090.3020.0052.550.650.2470.0172.020.150.4780.0421.610.160.2280.0211.530.160.2420.02526020103118521.09.5442104387730402.780.10870020027.90.60.0330.003<5.110.60.69.90.325704024.00.41.690.504172Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_80 s_AT275_Stat_S_080_DOLW7_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERA95A9S_080_DOLW71053.99646.41662019-03-23T06:57:00-2815.40.33.900.105.00.10.770.013.640.030.900.030.2390.0221.400.040.1950.0071.490.030.3540.0021.120.030.1610.0021.030.070.1620.0032601013017259.21.432343134<4902.930.07950020023.00.40.0140.001<5.18.00.210.20.528202018.70.11.230.091834Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_81 s_AT275_Stat_S_081_VEJA02_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER793C9S_081_VEJA021054.37205.87952019-03-22T07:23:00-4015.10.14.300.103.90.40.780.063.760.190.860.070.2250.0361.310.040.1880.0191.410.020.3500.0141.150.020.1750.0211.100.080.2160.0535508011855335.56.836123722<4903.010.10920020024.90.10.0130.002<5.17.80.217.10.727402016.20.11.300.202361Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_82 s_AT275_Stat_S_082_VEJA03_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER49B29S_082_VEJA031054.38145.87862019-03-22T06:56:00-4015.20.24.300.103.70.10.760.013.680.070.860.040.2090.0151.290.010.1760.0031.410.020.3440.0141.110.020.1580.0041.100.140.1710.0035104011866325.72.236113692550202.980.08920020024.80.1<0.011<5.17.70.217.10.327302016.30.11.250.112039Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_83 s_AT275_Stat_S_083_VEJA04_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD7FF9S_083_VEJA041054.39935.87882019-03-22T06:33:00-4115.91.14.400.303.90.30.790.063.840.310.840.110.2370.0151.290.080.1860.0151.470.110.3520.0251.190.080.1630.0101.210.090.1740.01048010117320333.35.935583567520502.950.02900010024.50.4<0.011<5.17.10.216.80.427205016.70.31.370.322782Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_84 s_AT275_Stat_S_084_VEJA05_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERB82B5S_084_VEJA051054.26605.87152019-03-22T14:26:00-3815.30.14.100.103.90.10.770.023.700.110.840.040.2510.0301.340.070.1950.0191.410.010.3490.0121.140.040.1770.0151.200.110.2110.0425705011852277.41.535913873500202.910.13910020025.30.10.0140.003<5.18.00.115.40.127902015.10.21.370.152734Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_85 s_AT275_Stat_S_085_VEJA06_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER926B9S_085_VEJA061054.25695.86942019-03-22T14:49:00-3715.20.14.000.103.80.10.740.013.660.080.840.030.2310.0241.300.010.1780.0051.390.010.3330.0061.120.020.1600.0031.130.190.1770.0055304011903254.51.735513803<4902.940.09920020025.20.2<0.011<5.18.00.214.60.127703015.20.11.310.092424Uncertainty greater than/equal to data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_86 s_AT275_Stat_S_086_VEJA08_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER6864ES_086_VEJA081054.31605.92232019-03-22T10:00:00-4016.10.74.500.204.50.50.850.064.120.280.930.090.2490.0091.420.110.1890.0111.520.100.3590.0251.170.070.1670.0071.200.070.1790.00853010116027303.916.936173817760203.070.11910010025.20.60.0110.001<5.18.10.118.10.726908015.10.61.320.252474Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_87 s_AT275_Stat_S_087_VEJA09_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER72D26S_087_VEJA091054.35185.87392019-03-22T07:48:00-4015.60.34.300.103.80.10.770.023.780.090.850.020.2210.0181.280.030.1780.0011.420.050.3450.0091.140.020.1620.0021.150.070.1770.0035202011747317.53.537843917560302.980.07910020025.30.40.0120.001<5.18.00.118.00.127308015.70.11.310.072320
Atair275_88 s_AT275_Stat_S_088_VEJA10_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER4B8E9S_088_VEJA101054.32735.87512019-03-22T08:31:00-3915.50.54.200.103.80.10.770.033.680.090.830.020.2250.0241.300.030.1890.0131.410.010.3520.0131.160.040.1800.0171.210.170.2140.03450010116518294.54.236143797<4902.960.04910010025.60.60.0130.002<5.17.90.116.40.327403015.10.21.350.082618
Atair275_89 s_AT275_Stat_S_089_VEJA11_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERB5C94S_089_VEJA111054.32235.87862019-03-22T08:52:00-3915.10.14.100.103.80.20.740.013.530.050.790.020.2140.0081.270.020.1750.0021.380.040.3340.0071.120.030.1600.0021.150.100.1720.00550010115910290.14.636343711500402.950.04900010025.10.10.0110.001<5.17.70.516.40.627504014.90.11.400.072914
Atair275_90 s_AT275_Stat_S_090_VEJA12_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER987CAS_090_VEJA121054.32235.88602019-03-22T09:08:00-3915.70.65.201.605.01.80.790.053.770.210.870.050.2200.0371.300.070.1790.0051.430.030.3500.0101.160.030.1610.0091.130.080.1780.00867040115919303.212.1387213908<4903.010.15910030025.80.60.0240.012<5.17.90.216.60.627506015.30.31.260.162156Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_91 s_AT275_Stat_S_091_DOLW8_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER34E5ES_091_DOLW81053.99726.42502019-03-23T07:20:00-2815.10.13.800.104.90.10.760.013.580.020.870.010.2500.0061.380.040.1940.0011.500.010.3530.0161.150.010.1640.0051.130.010.1550.00232040134826270.212.43461335016<4903.170.09980030024.10.20.0310.012<5.18.60.412.20.830002019.90.31.270.052116
Atair275_92 s_AT275_Stat_S_092_DOLW10_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER49A5FS_092_DOLW101053.97866.91862019-03-23T14:35:00-2917.70.15.000.105.40.10.870.014.090.070.980.020.2680.0011.820.080.2230.0081.660.010.4100.0161.340.020.1890.0031.310.130.1900.00433080123511470.111.84161852311180603.110.13970030027.10.20.0320.019<5.19.90.611.30.429002022.70.31.510.093416
Atair275_93 s_AT275_Stat_S_093_DOLW9_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER4C29AS_093_DOLW91053.97766.92672019-03-23T15:02:00-2918.10.15.100.105.20.10.860.014.040.070.970.020.2680.0141.810.030.2220.0081.690.010.4180.0051.340.040.1910.0111.280.080.1900.00526030120710466.910.340873939720603.110.08960020027.40.10.0310.010<5.110.10.19.30.228202023.50.41.520.073410
Atair275_94 s_AT275_Stat_S_094_VEJA16_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERE9F9ES_094_VEJA161054.31645.90602019-03-22T09:35:00-4014.60.24.100.103.80.20.750.013.500.140.780.060.2380.0411.240.040.1750.0091.330.020.3320.0041.080.030.1510.0061.080.020.1530.0065301012051301.84.537443922490403.130.05940020026.00.10.0140.002<5.18.40.120.70.427602015.90.11.390.202844Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_95 s_AT275_Stat_S_095_HELW1_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERFB426S_095_HELW11054.45537.77192019-03-07T08:10:00-2422.71.20.700.300.80.10.460.043.280.280.920.050.2810.0611.520.130.2240.0181.740.250.4020.0431.170.190.1420.0490.810.300.1270.0823807013236791.418.5478342652014703904.440.20970010040.70.4<0.011<5.117.40.95.40.126908017.70.11.150.1713114Uncertainty greater than data value. Uncertainties represent combined expanded uncertainties with k=1
Atair275_96 s_AT275_Stat_S_096_HELW4_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHER3EC95S_096_HELW41054.45057.74342019-03-07T08:52:00-2423.70.25.100.103.40.30.910.034.310.151.060.040.2840.0113.440.020.2680.0122.060.020.5380.0021.800.020.2650.0041.830.110.2990.0024502011537659.61.4667965731440404.280.10910020037.70.50.0300.007<5.115.30.28.92.026102022.00.12.570.20615
Atair275_97 s_AT275_Stat_S_097_HELW5_Was_KBA_Wasser2Lhttps://doi.org/10.60510/GFHERD294FS_097_HELW51054.45547.73902019-03-07T09:35:00-2623.50.15.100.103.30.10.890.024.300.031.030.020.2720.0093.240.040.2550.0042.040.030.5320.0011.800.020.2620.0061.810.120.2990.0054001011388603.39.76389632513802704.210.04900010036.80.20.0230.001<5.114.80.27.00.526303021.10.22.560.10613