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Herrmann, Nicole; Boom, Arnoud; Carr, Andrew S; Chase, Brian M; West, Adam G; Zabel, Matthias; Schefuß, Enno (2017): n-Alkane deuterium analysis of soil samples from South Africa [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.875109, Supplement to: Herrmann, N et al. (2017): Hydrogen isotope fractionation of leaf wax n -alkanes in southern African soils. Organic Geochemistry, 109, 1-13, https://doi.org/10.1016/j.orggeochem.2017.03.008

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Abstract:
The hydrogen isotope composition of plant leaf wax (dDwax) has been found to record the isotope composition of precipitation (dDp). Hence, dDwax is increasingly used for palaeohydrological reconstruction. It is, however, also affected by secondary factors, such as vegetation type, evapotranspiration and environmental conditions, complicating its direct application as a quantitative palaeohydrological proxy. Here, we present dDwax data from soils along vegetation gradients and climatic transects in southern Africa to investigate the impact of different environmental factors on dDwax. We found that dDwax correlated significantly with annual dDp (obtained from the interpolated Online Isotopes in Precipitation Calculator data set) throughout eastern and central South Africa, where the majority of the mean annual precipitation falls during the summer. We found evidence for the effect of evapotranspiration on dDwax, while vegetation change was of minor importance. In contrast, we found that δDwax did not correlate with annual dDp in western and southwestern South Africa, where most of the annual precipitation falls during winter. Wide microclimatic variability in this topographically variable region, including distinct vegetation communities and high vegetation diversity between biomes as well as a potential influence of summer rain in some locals, likely compromised identification of a clear relationship between dDwax and dDp in this region. Our findings have implications for palaeoenvironmental investigations using dDwax in southern Africa. In the summer rain dominated eastern and central region, dDwax should serve well as a qualitative palaeohydrological recorder. In contrast, the processes influencing dDwax in the winter rain- dominated western and southwestern South Africa remain unclear and, pending further analyses, potentially constrain its use as palaeohydrological proxy in this region.
Funding:
Federal Ministry of Education and Research (BMBF), grant/award no. 03G0840A: Regional Archives for Integrated iNvestigations
Coverage:
Median Latitude: -30.524256 * Median Longitude: 21.353498 * South-bound Latitude: -33.086267 * West-bound Longitude: 18.263583 * North-bound Latitude: -27.009600 * East-bound Longitude: 28.591150
Minimum HEIGHT above ground: 0.125 m * Maximum HEIGHT above ground: 0.125 m
Event(s):
CNT2-3  * Latitude: -30.413033 * Longitude: 18.782583 * Comment: Soil samples
CNT3-1  * Latitude: -30.170067 * Longitude: 18.953533 * Comment: Soil samples
CNT5-3  * Latitude: -29.521933 * Longitude: 19.437750 * Comment: Soil samples
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventHerrmann, Nicole
Latitude of eventLatitudeHerrmann, Nicole
Longitude of eventLongitudeHerrmann, Nicole
HEIGHT above groundHeightmHerrmann, NicoleGeocode
Height aboveground, minimumHeight abovegr minmHerrmann, Nicole
Height aboveground, maximumHeight abovegr maxmHerrmann, Nicole
BiomeBiomeHerrmann, Nicole
n-Alkane C29, per unit sediment massC29/sedµg/gHerrmann, NicoleGas chromatography - Flame Ionization Detection (GC-FID)dry soil
n-Alkane C31, per unit sediment massC31/sedµg/gHerrmann, NicoleGas chromatography - Flame Ionization Detection (GC-FID)dry soil
10 n-Alkane C29, δDC29 δD‰ SMOWHerrmann, NicoleGas chromatography - Isotope ratio mass spectrometer (GC-IRMS)vs. VSMOW
11 n-Alkane C29, δD, standard deviationC29 δD std dev±Herrmann, Nicole
12 n-Alkane C31, δDC31 δD‰ SMOWHerrmann, NicoleGas chromatography - Isotope ratio mass spectrometer (GC-IRMS)vs. VSMOW
13 n-Alkane C31, δD, standard deviationC31 δD std dev±Herrmann, Nicole
14 n-Alkane C29,C31, δDC29,C31 δD‰ SMOWHerrmann, NicoledD weighted mean n-Alkane C29 and C31, vs. VSMOW
15 Standard deviationStd dev±Herrmann, Nicolen-Alkane C29 + C31 dD weighted mean
Size:
758 data points

Data

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


Event

Latitude

Longitude

Height [m]

Height abovegr min [m]

Height abovegr max [m]

Biome

C29/sed [µg/g]

C31/sed [µg/g]
10 
C29 δD [‰ SMOW]
11 
C29 δD std dev [±]
12 
C31 δD [‰ SMOW]
13 
C31 δD std dev [±]
14 
C29,C31 δD [‰ SMOW]
15 
Std dev [±]
FB1-1 -32.144918.65350.1250.10.15Fynbos0.661.50-1311-1440-1404
FB2-1 -32.218919.00780.1250.10.15Fynbos0.850.92-1321-1360-1341
FB3-1 -32.220218.99550.1250.10.15Fynbos0.391.80-1344-1480-1454
FB3-4 -32.220218.99550.1250.10.15Fynbos2.3028.00-1264-1280-1280
FB4-1 -32.131719.03680.1250.10.15Fynbos0.460.45-1371-1610-1499
FB4-3 -32.131719.03680.1250.10.15Fynbos0.260.34-1211-1400-1327
FB5-3 -32.501219.23680.1250.10.15Fynbos0.730.74-1631-1631
FB5-4 -32.501219.23680.1250.10.15Fynbos0.720.65-1415-1451-1431
FB6-1 -32.364720.66500.1250.10.15Fynbos0.902.10-1230-1250-1251
FB6-2 -32.364720.66500.1250.10.15Fynbos5.304.00-1361-1250-1314
SV2-3 -32.625918.29060.1250.10.15Fynbos0.271.40-1261-1340-1332
SV3-3 -32.308218.40120.1250.10.15Fynbos1.301.90-1301-1380-1353
SV4-1 -32.120818.42670.1250.10.15Fynbos0.261.30-1311-1520-1485
SV4-3 -32.120818.42670.1250.10.15Fynbos2.805.60-1461-1550-1523
SV5-2 -32.379918.36960.1250.10.15Fynbos0.230.38-1381-1390-1380
SV5-3 -32.379918.36960.1250.10.15Fynbos1.100.97-1410-1421-1420
SP1 -32.653018.27790.1250.10.15Fynbos2.7012.00-1420-1440-1431
CNT2-3 -30.413018.78260.1250.10.15Succulent Karoo0.050.64-820-1300-1268
CNT3-1 -30.170118.95350.1250.10.15Succulent Karoo0.111.10-1210-1210
SK1-2 -32.144718.89980.1250.10.15Succulent Karoo3.6029.00-1300-1251-1261
SK1-4 -32.144718.89980.1250.10.15Succulent Karoo1.3020.00-1321-1560-1544
SK2-1 -31.570718.53540.1250.10.15Succulent Karoo0.548.90-1242-1490-1484
SK2-2 -31.570718.53540.1250.10.15Succulent Karoo0.122.60-1191-1530-1516
SK3-4 -31.449318.60270.1250.10.15Succulent Karoo0.382.90-1123-1400-1366
SK4-1 -31.444618.70220.1250.10.15Succulent Karoo0.181.80-1081-1510-1479
SK4-2 -31.444618.70220.1250.10.15Succulent Karoo0.120.65-1430-1430
SK5-3 -31.014318.26360.1250.10.15Succulent Karoo3.0011.00-1141-1260-1244
SK6-1 -30.773518.48470.1250.10.15Succulent Karoo0.201.30-1092-1350-1316
SK6-3 -30.773518.48470.1250.10.15Succulent Karoo2.2011.00-1421-1520-1513
SK7-1 -30.434818.76690.1250.10.15Succulent Karoo0.121.30-952-1331-1307
SK8-3 -30.848919.07800.1250.10.15Succulent Karoo0.664.90-1141-1290-1274
SK9-3 -31.398819.02840.1250.10.15Succulent Karoo0.494.00-1131-1250-1243
SK9-4 -31.398819.02840.1250.10.15Succulent Karoo0.495.20-1042-1300-1275
SK10-3 -31.473219.84000.1250.10.15Succulent Karoo0.524.80-1311-1201-1212
SK11-3 -32.558020.56830.1250.10.15Succulent Karoo0.582.30-1032-1351-1289
SK12-3 -33.086320.59280.1250.10.15Succulent Karoo0.666.50-1103-1341-1315
SK15-2 -31.935919.14940.1250.10.15Succulent Karoo0.384.70-1241-1350-1342
CNT5-3 -29.521919.43780.1250.10.15Nama Karoo0.110.95-951-1090-1073
CNT6-2 -28.964419.39060.1250.10.15Nama Karoo2.7010.00-1100-1051-1061
GTC18-2 -29.103423.73930.1250.10.15Nama Karoo0.120.19-1220-1220
GTC18-3 -29.103423.73930.1250.10.15Nama Karoo0.480.73-1171-1281-1244
GTC19-2 -29.374223.33550.1250.10.15Nama Karoo0.280.89-1130-1282-1244
GTC19-3 -29.374223.33550.1250.10.15Nama Karoo0.200.59-1112-1170-1162
GTC20-2 -29.675422.93280.1250.10.15Nama Karoo0.100.32-884-1170-1109
GTC21-3 -29.490522.76590.1250.10.15Nama Karoo0.290.74-1041-1231-1186
GTC25-2 -29.096422.03820.1250.10.15Nama Karoo0.160.31-1010-1231-1157
GTC27-3 -29.390721.12300.1250.10.15Nama Karoo0.180.53-1113-1291-1246
GTC28-2 -29.782320.78730.1250.10.15Nama Karoo0.110.91-750-1111-1088
GTC28-3 -29.782320.78730.1250.10.15Nama Karoo0.244.10-1160-1341-1333
GTC30-3 -30.680920.41060.1250.10.15Nama Karoo0.221.40-1141-1151-1150
NK1-2 -31.308020.16650.1250.10.15Nama Karoo0.704.40-1171-1260-1252
NK1-3 -31.308020.16650.1250.10.15Nama Karoo0.301.80-1072-1220-1204
GTC6-3 -27.009628.59120.1250.10.15Grassland0.410.74-1280-1431-1385
GTC7-1 -27.432128.51040.1250.10.15Grassland0.330.76-1491-1611-1574
GTC8-1 -27.921428.38980.1250.10.15Grassland0.430.85-1482-1530-1512
GTC8-2 -27.921428.38980.1250.10.15Grassland0.631.70-1510-1531-1521
GTC8-3 -27.921428.38980.1250.10.15Grassland0.501.60-1342-1491-1464
GTC9-1 -28.587728.39550.1250.10.15Grassland0.260.47-1470-1470
GTC11-3 -28.965627.08870.1250.10.15Grassland1.202.30-1171-1340-1286
GTC12-2 -28.838126.61410.1250.10.15Grassland0.702.00-1260-1361-1343
GTC12-3 -28.838126.61410.1250.10.15Grassland0.420.54-1331-1420-1383
GTC13-2 -29.146126.08040.1250.10.15Grassland0.220.49-1122-1460-13511
GTC14-2 -29.133425.55750.1250.10.15Grassland0.250.19-1273-1291-1281
GTC15-3 -28.981525.05540.1250.10.15Savanna0.310.76-1111-1391-1319
GTC16-2 -28.765324.70260.1250.10.15Savanna0.200.42-1091-1311-1247
GTC16-3 -28.765324.70260.1250.10.15Savanna1.200.82-1190-1310-1244
GTC17-3 -28.938724.22590.1250.10.15Savanna0.281.30-1161-1312-1284
GTC23-2 -28.747722.51980.1250.10.15Savanna0.150.28-1120-1411-13110
GTC23-3 -28.747722.51980.1250.10.15Savanna0.260.38-1412-1412
GTC24-3 -28.644322.25070.1250.10.15Savanna0.110.34-1033-1231-1186