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  • 1
    Publication Date: 2020-10-13
    Description: Stable isotopes in tree-ring cellulose are important tools for climatic reconstructions even though their interpretation could be challenging due to nonclimate signals, primarily those related to tree aging. Previous studies on the presence of tree-age-related trends during juvenile as well as adult growth phases in δD, δ18O, and δ13C time series yielded variable results that are not coherent among different plant species. We analyzed possible trends in the extracted cellulose of tree rings of 85 larch trees and 119 cembran pine trees, i.e., in samples of one deciduous and one evergreen conifer species collected at the tree line in the Alps, covering nearly the whole Holocene. The age trend analyses of all tree-ring variables were conducted on the basis of mean curves established by averaging the cambial-age-aligned tree series. For cambial ages over 100 years, our results prove the absence of any age-related effect in the δD, δ18O, and δ13C time series for both the evergreen and the deciduous conifer species, with the only exception being larch δD. However, for lower cambial ages, we found trends that differ for each isotope and species; i.e., mean δ13C values in larch do not vary with aging and can be used without detrending, whereas those in cembran pine show a juvenile effect, and the data should be detrended. Mean δ18O values present two distinct aging phases for both species, complicating detrending. Similarly, mean δD values in larch change in the first 50 years, whereas cembran pine changes between 50 and 100 years. Values for these two periods of cambial age for δD and δ18O should be used with caution for climatic reconstructions, ideally complemented by additional information regarding mechanisms for these trends.
    Print ISSN: 1726-4170
    Electronic ISSN: 1726-4189
    Topics: Biology , Geosciences
    Published by Copernicus on behalf of European Geosciences Union.
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  • 2
    Publication Date: 2017-04-10
    Description: Cellulose content (CC [%]) in tree rings is usually utilized as a tool to control the quality of the α-cellulose extraction from tree-rings in the preparation of stable isotope analysis in wooden tissues. Reported amounts of CC [%] are often limited to mean values per tree. For the first time, CC [%] series from two high Alpine species, Larix decidua Mill. (European Larch, LADE) and Pinus cembra L. (Swiss stone pine, PICE) are investigated in modern wood samples and Holocene wood remains from the Early and Mid-Holocene. Modern CC [%] series reveal a species-specific low-frequency trend independent from their sampling site over the past 150 years. Climate-cellulose relationships illustrate the ability of CC [%] to record temperature in both species, but for slightly different periods within the growing season. The Holocene CC [%] series illustrate diverging low-frequency trends in both species, independent of sampling site characteristics (latitude, longitude and elevation). Moreover, potential age trends are not apparent in the two coniferous species. The arithmetic mean of CC [%] series in the Early and Mid-Holocene indicate low CC [%] succeeding cold events. In conclusion, CC [%] in tree rings show high potential to be established as novel supplementary proxy in dendroclimatology.
    Print ISSN: 1810-6277
    Electronic ISSN: 1810-6285
    Topics: Biology , Geosciences
    Published by Copernicus on behalf of European Geosciences Union.
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  • 3
    Publication Date: 2018-02-21
    Description: Cellulose content (CC (%)) in tree rings is usually utilised as a tool to control the quality of the α-cellulose extraction from tree rings in the preparation of stable-isotope analysis in wooden tissues. Reported amounts of CC (%) are often limited to mean values per tree. For the first time, CC (%) series from two high-Alpine species, Larix decidua Mill. (European Larch, LADE) and Pinus cembra L. (Swiss stone pine, PICE) are investigated in modern wood samples and Holocene wood remains from the Early and mid-Holocene. Modern CC (%) series reveal a species-specific low-frequency trend independent of their sampling site over the past 150 years. Climate–cellulose relationships illustrate the ability of CC (%) to record temperature in both species but for slightly different periods within the growing season. The Holocene CC (%) series illustrate diverging low-frequency trends in both species, independent of sampling site characteristics (latitude, longitude and elevation). Moreover, potential age trends are not apparent in the two coniferous species. The arithmetic mean of CC (%) series in the Early and mid-Holocene indicate low CC (%) succeeding cold events. In conclusion, CC (%) in tree rings show high potential to be established as novel supplementary proxy in dendroclimatology.
    Print ISSN: 1726-4170
    Electronic ISSN: 1726-4189
    Topics: Biology , Geosciences
    Published by Copernicus on behalf of European Geosciences Union.
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  • 4
    Publication Date: 2014-09-09
    Print ISSN: 0930-7575
    Electronic ISSN: 1432-0894
    Topics: Geosciences , Physics
    Published by Springer
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  • 5
    Publication Date: 2023-03-01
    Description: Stable isotope ratios from tree rings are important proxies of past climate variations. We have access to a calendar-dated wood material from wood collected at glacier forefields and peat bog sites located in the Alps. They are of two species, larch (Larix decidua) and cembran pine (Pinus cembra). All the wood samples were collected at high altitudes in the Swiss and Tyrol Alps, they cover the whole Holocene period and belong to the Eastern Alpine Conifer Chronology Dataset (Nicolussi et al., 2009; doi:10.1177/0959683609336565). We analysed the δ13C, δ18O and δ2H isotope ratios of alpha cellulose obtained from blocks of 5 annual rings from 203 trees. Cellulose was extracted following the modified Jayme-Wise method (Boettger et al., 2007; doi:10.1021/ac0700023). The isotopes values were determined using conventional Isotope Ratio Mass Spectrometry (Isoprime 100) coupled to a pyrolysis unit (HEKAtech GmbH, Germany), which is similar to the previously used TC/EA (for technical details see (Leuenberger 2007). This approach was extended to measurements of non-exchangeable hydrogen of alpha-cellulose using the on-line equilibration method (Filot et al., 2006 (doi:10.1002/rcm.2743); Loader et al., 2015(doi:10.1021/ac502557x)). The results are reported in per mil (‰) relative to the Vienna Pee Dee Belemnite (VPDB) for carbon and to Vienna Standard Mean Ocean Water (VSMOW) for hydrogen and oxygen (Coplen 1994; doi:10.1351/pac199466020273). For all the δ13C values after 1000 CE we applied the factor described in Leuenberger (2007; doi:10.1016/S1936-7961(07)01014-7) to correct for the δ13C depletion of CO2 caused by the Industrial Revolution from about 1850 onwards (Leuenberger, 2007).
    Keywords: Alps; Carbon stable isotopes; Holocene; hydrogen stable isotopes; larix decidua; Oxygen stable isotopes; pinus cembra; tree ring isotopes
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 6
    Publication Date: 2023-03-01
    Keywords: Age; Ahrntal_Kofler_Alm; Ahrntal_Moaralm; Ahrntal_Starklalm; Alps; Alps_AHMO; Alps_AHST; Alps_BIH; Alps_EBA; Alps_FPCR; Alps_G; Alps_GDM; Alps_GGUA; Alps_GLI; Alps_GP; Alps_HIB; Alps_KOFL; Alps_LFS; Alps_MAZB; Alps_MAZC; Alps_MAZE; Alps_MAZF; Alps_MIS; Alps_MM; Alps_MORT; Alps_RT; Alps_TAH; Alps_TSC; Alps_UA; Alps_UAZR; Alps_ULFI; Alps_UWBA; Alps_VRR; Alps_ZER; Carbon stable isotopes; Defereggental_Hirschbichl; Event label; Haslital_Unteraargletscher; Haslital_Unteraargletscher_Rezentproben_Nordufer_G; Holocene; hydrogen stable isotopes; Kaunertal_Daunmoränensee; Kaunertal_Gepatschferner; Kaunertal_Ombrometer; Langtaufers_Sandbichl; larix decidua; Location; Mattertal_Zermatt_Findelengletscher; Morteratschgletscher; Ötztal_Ebenalm; Ötztal_Gurgler_Alm; Ötztal_Gurgler_Zirbenwald; Oxygen stable isotopes; Passeier_Timmeltal; Paznaun_Bielerhöhe; pinus cembra; Radurschltal_Miseri; Rojental; Sample comment; Sample ID; Species; TREE; tree ring isotopes; Tree ring sampling; Ultental_Fiechtsee; Ultental_Weißbrunnalm; Val_d_Hérens_Glacier_du_Mont_Mine; Val_d_Hérens_Rezentproben_Ferpecle; Val_Roseg_Rezentproben; Val_Roseg_Tschiervagletscher; Vinschgau_Marzoneralm/B; Vinschgau_Marzoneralm/C; Vinschgau_Marzoneralm/E; Vinschgau_Marzoneralm/F
    Type: Dataset
    Format: text/tab-separated-values, 1011 data points
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  • 7
    Publication Date: 2023-03-01
    Keywords: Age; Ahrntal_Kofler_Alm; Ahrntal_Moaralm; Ahrntal_Starklalm; Alps; Alps_AHMO; Alps_AHST; Alps_BIH; Alps_EBA; Alps_FPCR; Alps_G; Alps_GDM; Alps_GGUA; Alps_GLI; Alps_GP; Alps_HIB; Alps_KOFL; Alps_LFS; Alps_MAZB; Alps_MAZC; Alps_MAZE; Alps_MAZF; Alps_MIS; Alps_MM; Alps_MORT; Alps_RT; Alps_TAH; Alps_TSC; Alps_UA; Alps_UAZR; Alps_ULFI; Alps_UWBA; Alps_VRR; Alps_ZER; Carbon stable isotopes; Defereggental_Hirschbichl; Haslital_Unteraargletscher; Haslital_Unteraargletscher_Rezentproben_Nordufer_G; Holocene; hydrogen stable isotopes; Isotope ratio mass spectrometer (IsoPrime100); Kaunertal_Daunmoränensee; Kaunertal_Gepatschferner; Kaunertal_Ombrometer; Langtaufers_Sandbichl; larix decidua; Mattertal_Zermatt_Findelengletscher; Morteratschgletscher; Ötztal_Ebenalm; Ötztal_Gurgler_Alm; Ötztal_Gurgler_Zirbenwald; Oxygen stable isotopes; Passeier_Timmeltal; Paznaun_Bielerhöhe; pinus cembra; Radurschltal_Miseri; Rojental; TREE; tree ring isotopes; Tree ring sampling; Ultental_Fiechtsee; Ultental_Weißbrunnalm; Val_d_Hérens_Glacier_du_Mont_Mine; Val_d_Hérens_Rezentproben_Ferpecle; Val_Roseg_Rezentproben; Val_Roseg_Tschiervagletscher; Vinschgau_Marzoneralm/B; Vinschgau_Marzoneralm/C; Vinschgau_Marzoneralm/E; Vinschgau_Marzoneralm/F; δ13C, cellulose
    Type: Dataset
    Format: text/tab-separated-values, 11418 data points
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  • 8
    Publication Date: 2023-03-01
    Keywords: Age; Ahrntal_Kofler_Alm; Ahrntal_Moaralm; Ahrntal_Starklalm; Alps; Alps_AHMO; Alps_AHST; Alps_BIH; Alps_EBA; Alps_FPCR; Alps_G; Alps_GDM; Alps_GGUA; Alps_GLI; Alps_GP; Alps_HIB; Alps_KOFL; Alps_LFS; Alps_MAZB; Alps_MAZC; Alps_MAZE; Alps_MAZF; Alps_MIS; Alps_MM; Alps_MORT; Alps_RT; Alps_TAH; Alps_TSC; Alps_UA; Alps_UAZR; Alps_ULFI; Alps_UWBA; Alps_VRR; Alps_ZER; Carbon stable isotopes; Defereggental_Hirschbichl; Haslital_Unteraargletscher; Haslital_Unteraargletscher_Rezentproben_Nordufer_G; Holocene; hydrogen stable isotopes; Isotope ratio mass spectrometer (IsoPrime100); Kaunertal_Daunmoränensee; Kaunertal_Gepatschferner; Kaunertal_Ombrometer; Langtaufers_Sandbichl; larix decidua; Mattertal_Zermatt_Findelengletscher; Morteratschgletscher; Ötztal_Ebenalm; Ötztal_Gurgler_Alm; Ötztal_Gurgler_Zirbenwald; Oxygen stable isotopes; Passeier_Timmeltal; Paznaun_Bielerhöhe; pinus cembra; Radurschltal_Miseri; Rojental; TREE; tree ring isotopes; Tree ring sampling; Ultental_Fiechtsee; Ultental_Weißbrunnalm; Val_d_Hérens_Glacier_du_Mont_Mine; Val_d_Hérens_Rezentproben_Ferpecle; Val_Roseg_Rezentproben; Val_Roseg_Tschiervagletscher; Vinschgau_Marzoneralm/B; Vinschgau_Marzoneralm/C; Vinschgau_Marzoneralm/E; Vinschgau_Marzoneralm/F; δ Deuterium, cellulose
    Type: Dataset
    Format: text/tab-separated-values, 11368 data points
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  • 9
    Publication Date: 2023-03-01
    Keywords: Ahrntal_Kofler_Alm; Ahrntal_Moaralm; Ahrntal_Starklalm; Alps; Alps_AHMO; Alps_AHST; Alps_BIH; Alps_EBA; Alps_FPCR; Alps_G; Alps_GDM; Alps_GGUA; Alps_GLI; Alps_GP; Alps_HIB; Alps_KOFL; Alps_LFS; Alps_MAZB; Alps_MAZC; Alps_MAZE; Alps_MAZF; Alps_MIS; Alps_MM; Alps_MORT; Alps_RT; Alps_TAH; Alps_TSC; Alps_UA; Alps_UAZR; Alps_ULFI; Alps_UWBA; Alps_VRR; Alps_ZER; ALTITUDE; Aspect; Carbon stable isotopes; Defereggental_Hirschbichl; Event label; Haslital_Unteraargletscher; Haslital_Unteraargletscher_Rezentproben_Nordufer_G; Holocene; hydrogen stable isotopes; Kaunertal_Daunmoränensee; Kaunertal_Gepatschferner; Kaunertal_Ombrometer; Langtaufers_Sandbichl; larix decidua; LATITUDE; Location; Location type; LONGITUDE; Mattertal_Zermatt_Findelengletscher; Morteratschgletscher; Ötztal_Ebenalm; Ötztal_Gurgler_Alm; Ötztal_Gurgler_Zirbenwald; Oxygen stable isotopes; Passeier_Timmeltal; Paznaun_Bielerhöhe; pinus cembra; Radurschltal_Miseri; Rojental; Sample type; TREE; tree ring isotopes; Tree ring sampling; Ultental_Fiechtsee; Ultental_Weißbrunnalm; Val_d_Hérens_Glacier_du_Mont_Mine; Val_d_Hérens_Rezentproben_Ferpecle; Val_Roseg_Rezentproben; Val_Roseg_Tschiervagletscher; Vinschgau_Marzoneralm/B; Vinschgau_Marzoneralm/C; Vinschgau_Marzoneralm/E; Vinschgau_Marzoneralm/F
    Type: Dataset
    Format: text/tab-separated-values, 145 data points
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  • 10
    Publication Date: 2023-03-01
    Keywords: Age; Ahrntal_Kofler_Alm; Ahrntal_Moaralm; Ahrntal_Starklalm; Alps; Alps_AHMO; Alps_AHST; Alps_BIH; Alps_EBA; Alps_FPCR; Alps_G; Alps_GDM; Alps_GGUA; Alps_GLI; Alps_GP; Alps_HIB; Alps_KOFL; Alps_LFS; Alps_MAZB; Alps_MAZC; Alps_MAZE; Alps_MAZF; Alps_MIS; Alps_MM; Alps_MORT; Alps_RT; Alps_TAH; Alps_TSC; Alps_UA; Alps_UAZR; Alps_ULFI; Alps_UWBA; Alps_VRR; Alps_ZER; Carbon stable isotopes; Defereggental_Hirschbichl; Haslital_Unteraargletscher; Haslital_Unteraargletscher_Rezentproben_Nordufer_G; Holocene; hydrogen stable isotopes; Isotope ratio mass spectrometer (IsoPrime100); Kaunertal_Daunmoränensee; Kaunertal_Gepatschferner; Kaunertal_Ombrometer; Langtaufers_Sandbichl; larix decidua; Mattertal_Zermatt_Findelengletscher; Morteratschgletscher; Ötztal_Ebenalm; Ötztal_Gurgler_Alm; Ötztal_Gurgler_Zirbenwald; Oxygen stable isotopes; Passeier_Timmeltal; Paznaun_Bielerhöhe; pinus cembra; Radurschltal_Miseri; Rojental; TREE; tree ring isotopes; Tree ring sampling; Ultental_Fiechtsee; Ultental_Weißbrunnalm; Val_d_Hérens_Glacier_du_Mont_Mine; Val_d_Hérens_Rezentproben_Ferpecle; Val_Roseg_Rezentproben; Val_Roseg_Tschiervagletscher; Vinschgau_Marzoneralm/B; Vinschgau_Marzoneralm/C; Vinschgau_Marzoneralm/E; Vinschgau_Marzoneralm/F; δ18O, cellulose
    Type: Dataset
    Format: text/tab-separated-values, 11092 data points
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