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Original Articles

Surface Soil Organic Matter Qualities of Three Distinct Canadian Arctic Sites

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Pages 88-98 | Accepted 01 Sep 2012, Published online: 05 Jan 2018

References Cited

  • Accoe, F. , Boeckx, P. , Busschaert, J. , Hofman, G. , and Van Cleemput. O. , 2004: Gross N transformation rates and net N mineralisation rates related to the C and N contents of soil organic matter fractions in grassland soils of different age. Soil Biology & Biochemistry , 36: 2075–2087.
  • Anderson, D. W. , and Schoenau, J. J. , 2008: Soil humus fractions. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 675–680.
  • Anderson, T.-H. , and Joergensen, R. G. , 1997: Relationship between SIR and FE estimates of microbial biomass C in deciduous forest soils at different pH. Soil Biology & Biochemistry , 29: 1033–1042.
  • Baldock, J. A. , Oades, J. M. , Waters, A. G. , Peng, X. , Vassallo, A. M. , and Wilson, M. A. , 1992: Aspects of the chemical structure of soil organic materials as revealed by solid-state 13C NMR spectroscopy. Biogeochemistry , 16: 1–42.
  • Banerjee, S. , Bedard-Haughn, A. , Si, B. C. , and Siciliano, S. D. , 2011: Soil spatial dependence in three arctic ecosystems. Soil Science Society of America Journal , 75: 591–594.
  • Biederbeck, V. O. , Janzen, H. H. , Campbell, C. A. , and Zentner, R. P. , 1994: Labile soil organic matter as influenced by cropping practices in an arid environment. Soil Biology & Biochemistry , 26: 1647–1656.
  • Bliss, L. C. , 1977: Introduction. In Bliss, L. C. (ed.), Truelove Lowland, Devon Island, Canada: a High Arctic Ecosystem. Edmonton: University of Alberta Press, 1–11.
  • Brown, R. J. E. , 1977: Permafrost investigations on Truelove Lowland. In Bliss, L. C. (ed.), Truelove Lowland, Devon Island, Canada: a High Arctic Ecosystem. Edmonton: University of Alberta Press, 15–30.
  • Buckeridge, K. M. , Zufelt, E. , Chu, H. , and Grogan, P. , 2010: Soil nitrogen cycling rates in low arctic shrub tundra are enhanced by litter feedbacks. Plant Soil , 330: 407–421.
  • Chantigny, M. C. , Angers, D. A. , Kaiser, K. , and Kalbitz, K. , 2008: Extraction and characterization of dissolved organic matter. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 617–634.
  • Chantigny, M. H. , 2003: Dissolved and water-extractable organic matter in soils: a review on the influence of land use and management practices. Geoderma, 113: 357–380.
  • Christensen, T. R. , Jonasson, S. , Callaghan, T. V. , and Havström, M. , 1999: On the potential CO2 release from tundra soils in a changing climate. Applied Soil Ecology , 11: 127–134.
  • Curtin, D. , and Wen, G. , 1999: Organic matter fractions contributing to soil nitrogen mineralization potential. Soil Science Society of America Journal , 63: 410–415.
  • Dai, X. Y. , Ping, C. L. , Candler, R. , Haumaier, L. , and Zech, W. , 2001 : Characterization of soil organic matter fractions of tundra soils in Arctic Alaska by carbon-13 nuclear magnetic resonance spectroscopy. Soil Science Society of America Journal , 65: 87–93.
  • Day, T. A. , Ruhland, C. T. , and Xiong, F. S. , 2008: Warming increases aboveground plant biomass and C stocks in vascular-plant-dominated antarctic tundra. Global Change Biology , 14: 1827–1843.
  • Dredge, L. A. , 1992: Field guide to the Churchill region, Manitoba. Glaciations, sea level changes, permafrost landforms, and archeology of the Churchill and Gillam areas. Ottawa: Energy, Mines and Resources Canada, Geological Survey of Canada Miscellaneous Report 53.
  • Dredge, L. A. , Kerr, D. E. , and Wolfe, S. A. , 1999: Surficial materials and related ground ice conditions, Slave Province, N.W.T., Canada. Canadian Journal of Earth Sciences , 36: 1227–1238.
  • Dria, K. J. , Sachleben, J. R. , and Hatcher, P. G. , 2002: Solid-state carbon-13 nuclear magnetic resonance of humic acids at high magnetic field strengths. Journal of Environmental Quality , 31: 393–401.
  • Elliott, E. T. , and Cambardella, C. A. , 1991: Physical separation of soil organic matter. Agriculture, Ecosystems & Environment , 34: 407–419.
  • Embacher, A. , Zsolnay, A. , Gattinger, A. , and Munch, J. C. , 2007: The dynamics of water extractable organic matter (WEOM) in common arable topsoils: I. Quantity, quality and function over a three year period. Geoderma , 139: 11–22.
  • Environment Canada , 2011: National Climate Data and Information Archive, http://climate.weatheroffice.gc.ca .
  • Freschet, G. T. , Aerts, R. , and Cornelissen, J. H. C. , 2012: A plant economics spectrum of litter decomposability. Functional Ecology , 26: 56–65.
  • Gregorich, E. G. , and Beare, M. H. , 2008: Physically uncomplexed organic matter. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 607–616.
  • Gregorich, E. G. , Beare, M. H. , McKim, U. F. , and Skjemstad, J. O. , 2006: Chemical and biological characteristics of physically uncomplexed organic matter. Soil Science Society of America Journal , 70: 975–985.
  • Grogan, P. , Illeris, L. , Michelsen, A. , and Jonasson, S. , 2001: Respiration of recently-fixed plant carbon dominates mid-winter ecosystem CO2 production in sub-arctic heath tundra. Climatic Change , 50: 129–142.
  • Grover, S. P. P. , and Baldock, J. A. , 2012: Carbon chemistry and mineralization of peat soils from the Australian Alps. European Journal of Soil Science , 63: 129–140.
  • Gundelwein, A. , Müller-Lupp, T. , Sommerkorn, M. , Haupt, E. T. K. , and Pfeiffer, E.-M. , 2007: Carbon in tundra soils in the Lake Labaz region of arctic Siberia. European Journal of Soil Science , 58: 1164–1174.
  • Hassink, J. , 1995a: Density fractions of soil macroorganic matter and microbial biomass as predictors of C and N mineralization. Soil Biology & Biochemistry , 27: 1099–1108.
  • Hassink, J. , 1995b: Decomposition rate constants of size and density fractions of soil organic matter. Soil Science Society of America Journal , 59: 1631–1635.
  • Helfrich, M. , Ludwig, B. , Buurman, P. , and Flessa, H. , 2006: Effect of land use on the composition of soil organic matter in density and aggregate fractions as revealed by solid-state 13C NMR spectroscopy. Geoderma , 136: 331–341.
  • Hendershot, W. H. , Lalande, H. , and Duquette, M. , 2008: Soil reaction and exchangeable acidity. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 173–178.
  • Hobbie, S. E. , Schimel, D. S. , Trumbore, S. E. , and Randerson, J. R. , 2000: Controls over carbon storage and turnover in high-latitude soils. Global Change Biology , 6: 196–210.
  • Huntington, H. , Weiler, G. , Bush, E. , Callaghan, T. V. , Kattsov, V. M. , and Nuttall, M. , 2005: An introduction to the Arctic Climate Impact Assessment. In Symon, C. , Arris, L. , and Heal, B. (eds.), Arctic Climate Impact Assessment. New York: Cambridge University Press, 1–20.
  • Janzen, H. H. , 1987: Soil organic matter characteristics after long-term cropping to various spring wheat rotations. Canadian Journal of Soil Science , 67: 845–856.
  • Janzen, H. H. , Campbell, C. A. , Brandt, S. A. , Lafond, G. P. , and Townley-Smith, L. , 1992: Light-fraction organic matter in soils from long-term crop rotations. Soil Science Society of America Journal , 56: 1799–1806.
  • Johnson, K. L. , 1987: Wildflowers of Churchill and the Hudson Bay Region. Winnipeg: Manitoba Museum of Man and Nature.
  • Kalbitz, K. , Schmerwitz, J. , Schwesig, D. , and Matzner, E. , 2003: Biodegradation of soil-derived dissolved organic matter as related to its properties. Geoderma , 113: 273–291.
  • Kattsov, V. M. , Källen, E. , Cattle, H. , Christensen, J. , Drange, H. , Hanssen-Bauer, I. , Johannesen, T. , Karol, I. , Räisänen, J. , Svensson, G. , and Vavulin, S. , 2005: Future climate change: modeling and scenarios for the Arctic. In Symon, C. , Arris, L. , and Heal, B. (eds.), Arctic Climate Impact Assessment. New York: Cambridge University Press, 99–150.
  • King, R. H. , 1991 : Paleolimnology of a polar oasis, Truelove lowland, Devon Island, N.W.T., Canada. Hydrobiologia , 214: 317–325.
  • Kögel-Knabner, I. , 2002: The macromolecular organic composition of plant and microbial residues as inputs to soil organic matter. Organic Geochemistry , 31: 609–625.
  • Kramer, M. G. , Sollins, P. , and Sletten, R. S. , 2004: Soil carbon dynamics across a windthrow disturbance sequence in southeast Alaska. Ecology , 85: 2230–2244.
  • Kuiters, A. T. , and Mulder, W. , 1993: Water-soluble organic matter in forest soils. 1. Complexing properties and implications for soil equilibria. Plant and Soil , 152: 215–224.
  • Lafleur, P. M. , Griffis, T. J. , and Rouse, W. R. , 2001: Interannual variability in net ecosystem CO2 exchange at the arctic treeline. Arctic, Antarctic, and Alpine Research , 33: 149–157.
  • Lev, A. , and King, R. H. , 1999: Spatial variation of soil development in a high arctic soil landscape: Truelove lowland, Devon Island, Nunavut, Canada. Permafrost and Periglacial Processes , 10: 289–307.
  • Lützow, M. V. , Kögel-Knabner, I. , Ekschmitt, K. , Matzner, E. , Guggenberger, G. , Marschner, B. , and Flessa, H. , 2006: Stabilization of organic matter in temperate soils: mechanisms and their relevance under different soil conditions—A review. European Journal of Soil Science , 57: 426–445.
  • Lützow, M. V. , Kögel-Knabner, I. , Ludwig, B. , Matzner, E. , Flessa, H. , Ekschmitt, K. , Guggenberger, G. , Marschner, B. , and Kalbitz, K. , 2008: Stabilization mechanisms of organic matter in four temperate soils: development and application of a conceptual model. Journal of Plant Nutrition and Soil Science , 171: 111–124.
  • Marschner, B. , Brodowski, S. , Dreves, A. , Gleixner, G. , Gude, A. , Grootes, P. M. , Hamer, U. , Heim, A. , Jandl, G. , Ji, R. , Kaiser, K. , Kalbitz, K. , Kramer, C. , Leinweber, P. , Rethemeyer, J. , Schäffer, A. , Schmidt, M. W. I. , Schwark, L. , and Wiesenberg, G L. B. , 2008: How relevant is recalcitrance for the stabilization of organic matter in soils? Journal of Plant Nutrition and Soil Science, 171: 91–110.
  • Michaelson, G. J. , Ping, C. L. , Epstein, H. , Kimble, J. M. , and Walker, D. A. , 2008: Soils and frost boil ecosystems across the North American arctic transect. Journal of Geophysical ResearchBiogeosciences, 113: G03S11, 11 pp., http://dx.doi.org/10.1029/2007JG000672 .
  • Moore, T. R. , 1998: Dissolved organic carbon: sources, sinks, and fluxes and role in soil carbon cycle. In LaI, R. , Kimble, J. M. , Follett, R. F. , and Stewart, B. A. (eds.), Soil Processes and the Carbon Cycle. Boca Raton, Florida: CRC Press, 281–292.
  • Nadelhoffer, K. J. , Giblin, A. E. , Shaver, G. R. , and Laundre, J. A. , 1991 : Effects of temperature and substrate quality on element mineralization in six Arctic soils. Ecology , 72: 242–253.
  • Neff, J. C. , and Hooper, D. U. , 2002: Vegetation and climate controls on potential CO2, DOC and DON production in northern latitude soils. Global Change Biology , 8: 872–884.
  • Nobrega, S. , and Grogan, P. , 2008: Landscape and ecosystem-level controls on net carbon dioxide exchange along a natural moisture gradient in Canadian low arctic tundra. Ecosystems , 11: 377–396.
  • Nowinski, N. S. , Taneva, L. , Trumbore, S. E. , and Welker, J. M. , 2010: Decomposition of old organic matter as a result of deeper active layers in a snow depth manipulation experiment. Oecologia , 163: 785–792.
  • Oelbermann, M. , English, M. , and Schiff, S. L. , 2008: Evaluating carbon dynamics and microbial activity in arctic soils under warmer temperatures. Canadian Journal of Soil Science , 88: 31–44.
  • Paré, M. C. , and Bedard-Haughn, A. , 2011: Optimum liquid density in separation of the physically uncomplexed organic matter in arctic soils. Canadian Journal of Soil Science , 91: 65–68.
  • Paré, M. C. , and Bedard-Haughn, A. , 2012: Landscape-scale N mineralization and greenhouse gas emissions in Canadian Cryosols. Geoderma , 189–190: 469–479.
  • Paul, E. A. , Collins, H. P. , and Leavitt, S. W. , 2001: Dynamics of resistant soil carbon of Midwestern agricultural soils measured by naturally occurring 14C abundance. Geoderma , 104: 239–256.
  • Pedersen, J. A. , Simpson, M. A. , Bockheim, J. G , and Kumar, K. , 2011: Characterization of soil organic carbon in drained thaw-lake basins of arctic Alaska using NMR and FTIR photoacoustic spectroscopy. Organic Geochemistry , 42: 947–954.
  • Persson, T. , Lundkvist, H. , Wiren, A. , Hyvönen, R. , and Wessen, B. , 1989: Effects of acidification and liming on carbon and nitrogen mineralization and soil organisms in mor humus. Water, Air, & Soil Pollution , 45: 77–96.
  • Ping, C. L. , Michaelson, G. J. , Loya, W. M. , Chandler, R. J. , and Malcolm, R. L. , 1998: Characteristics of soil organic matter in arctic ecosystems of Alaska. In Lal, R. , Kimble, J. M. , Follett, R. F. , and Stewart, B. A. (eds.), Soil Processes and the Carbon Cycle. Boca Raton, Florida: CRC Press, 157–167.
  • Ping, C.-L. , Michaelson, G. J. , Jorgenson, M. T. , Kimble, J. M. , Epstein, H. , Romanovsky, V. E. , and Walker, D. A. , 2008: High stocks of soil organic carbon in the North American arctic region. Nature Geoscience , 1: 615–619.
  • Preston, C. M. , 2001 : Carbon-13 solid-state NMR of soil organic matter—Using the technique effectively. Canadian Journal of Soil Science , 81: 255–270.
  • Quails, R. G. , 2005: Biodegradability of fractions of dissolved organic carbon leached from decomposing leaf litter. Environmental Science & Technology , 39: 1616–1622.
  • Quideau, S. A. , Anderson, M. A. , Graham, R. C. , Chadwick, O. A. , and Trumbore, S. E. , 2000: Soil organic matter processes: characterization by 13C NMR and 14C measurements. Forest Ecology and Management , 138: 19–27.
  • Rampton, V. N. , 2000: Large-scale effects of subglacial meltwater flow in the southern Slave Province, Northwest Territories, Canada. Canadian Journal of Earth Sciences , 37: 81–93.
  • Rinnan, R. , Michelsen, A. , Baath, E. , and Jonasson, S. , 2008: Mineralization and carbon turnover in subarctic heath soil as affected by warming and additional litter. Soil Biology & Biochemistry , 39: 3014–3023.
  • Robinson, C. H. , Michelsen, A. , Lee, J. A. , Whitehead, S. J. , Callaghan, T. V. , Press, M. C. , and Jonasson, S. , 1997: Elevated atmospheric CO2 affects decomposition of Festuca vivipara (L.) Sm. litter and roots in experiments simulating environmental change in two contrasting arctic ecosystems., Global Change Biology 3: 37–49.
  • Rodionow, A. , Flessa, H. , Kazansky, O. , and Guggenberger, G. , 2006: Organic matter composition and potential trace gas production of permafrost soils in the forest tundra in northern Siberia. Geoderma , 135: 49–62.
  • Rydén, B. E. , 1977: Hydrology of Truelove Lowland. In Bliss, L. C. (ed.), Truelove Lowland, Devon Island, Canada: a High Arctic Ecosystem. Edmonton: University of Alberta Press, 107–136.
  • Schmidt, M. W. I. , Torn, M. S. , Abiven, S. , Dittmar, T. , Guggenberger, G. , Janssens, I. A. , Kleber, M. , Kögel-Knabner, I. , Lehmann, J. , Manning, D. A. C. , Nannipieri, P. , Rasse, D. P. , Weiner, S. , and Trumbore, S. E. , 2011: Persistence of soil organic matter as an ecosystem property. Nature, 478: 49–56.
  • Schnitzer, M. , 1991: Soil organic matter—The next 75 years. Soil Science , 151: 41–58.
  • Séguin, V. , Gagnon, C. , and Courchesne, F. , 2004: Changes in water extractable metal, pH and organic carbon concentrations at the soilroot interface of forested soils. Plant and Soil , 260: 1–17.
  • Shaver, G. R. , Johnson, L. C. , Cades, D. H. , Murray, G. , Laundre, J. A. , Rastetter, E. B. , Nadelhoffer, K. J. , and Giblin, A. E. , 1998: Biomass and CO2 flux in wet sedge tundras: responses to nutrients, temperature, and light. Ecological Monographs , 68: 75–97.
  • Shaver, G. R. , Giblin, A. E. , Nadelhoffer, K. J. , Thieler, K. K. , Downs, M. R. , Laundre, J. A. , and Rastetter, E. B. , 2006: Carbon turnover in Alaskan tundra soils: effects of organic matter quality, temperature, moisture and fertilizer. Journal of Ecology , 94: 740–753.
  • Simpson, M. J. , and Preston, C. , 2008: Soil organic matter analysis by solid-state 13C nuclear magnetic resonance spectroscopy. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 681–692.
  • Six, J. , Elliott, E. T. , and Paustian, K. , 2000: Soil macroaggregate turnover and microaggregate formation: a mechanism for C sequestration under no-tillage agriculture. Soil Biology & Biochemistry , 32: 2099–2103.
  • Six, J. , Conant, R. T. , Paul, E. A. , and Paustian, K. , 2002: Stabilization mechanisms of soil organic matter: implications for C-saturation of soils. Plant and Soil , 241: 155–176.
  • Skjemstad, J. O. , and Baldock, J. A. , 2008: Total and organic carbon. In Carter, M. R. , and Gregorich, E. G. (eds.), Soil Sampling and Methods of Analysis. Boca Raton, Florida: CRC Press, 225–237.
  • Skjemstad, J. O. , Clarke, P. , Golchin, A. , and Oades, J. M. , 1997: Characterization of soil organic matter by solid-state 13C NMR spectroscopy. In Cadisch, G. , and Giller, K. E. (eds.), Driven by Nature: Plant Litter Quality and Decomposition. Oxon, U.K.: CAB International, 253–271.
  • Soil Classification Working Group , 1998: The Canadian System of Soil Classification. 3rd edition. Ottawa: Research Branch, Agriculture and Agri-food Canada Publication 1646, 187 pp.
  • Sollins, P. , Homann, P. , and Caldwell, B. A. , 1996: Stabilization and destabilization of soil organic matter: mechanisms and controls. Geoderma , 74: 65–105.
  • Solorzano, L. , 1969: Determination of ammonia in natural waters by the phenolhypochlorite method. Limnology and Oceanography , 14: 799–801.
  • SPSS Inc ., 2004: SPSS for Windows, Version 13.0. Chicago: SPSS Inc.
  • Spycher, G. , Sollins, P. , and Rose, S. , 1983: Carbon and nitrogen in the light fraction of forest soil: vertical distribution and seasonal patterns. Soil Science , 135: 79–87.
  • Strebel, D. , Elberling, B. , Morgner, E. , Knicker, H. E. , and Cooper, E. J. , 2010: Cold-season soil respiration in response to grazing and warming in high-arctic Svalbard. Polar Research , 29: 46–57.
  • Svoboda, J. , 1977: Ecology and primary production of raised beach communities, Truelove lowland. In Bliss, L. C. (ed.), Truelove Lowland, Devon Island, Canada: A High Arctic Ecosystem. Edmonton: University of Alberta Press, 185–216.
  • Swift, R. S. , 1996: Organic matter characterization. In Sparks, D. L. , Page, A. L. , Helmke, P. A. , Loeppert, R. H. , Soltanpour, P. N. , Tabatabai, M. A. , Johnston, C. T. , and Sumner, M. E. (eds.), Methods of Soil Analysis. Part 3. Chemical Methods. Madison, Wisconsin: Soil Science Society of America, Inc. and American Society of Agronomy, Inc., Book Series no. 5, 1011–1069.
  • Tarnocai, C. , Ping, C. L. , and Kimble, J. , 2008: Carbon cycles in the permafrost region of North America. In King, A. W. , Dilling, L. , Zimmerman, G. P. , Fairman, D. M. , Houghton, R. A. , Marland, G. , Rose, A. Z. , and Wilbanks, T. J. (eds.), The First State of the Carbon Cycle Report (SOCCR): The North American Carbon Budget and Implications for the Global Carbon Cycle. Asheville, North Carolina: U.S. Climate Change Science Program and the Subcommittee on Global Change Research, National Oceanic and Atmospheric Administration, National Climatic Data Center, 127–138.
  • Teklay, T. , and Chang, S. X. , 2008: Temporal changes in soil carbon and nitrogen storage in a hybrid poplar chronosequence in northern Alberta. Geoderma, 144: 613–619.
  • Trumbore, S. E. , 1993: Comparison of carbon dynamics in tropical and temperate soils using radiocarbon measurements. Global Biogeochemical Cycles , 7: 275–290.
  • Uhlirova, E. , Santruckova, H , and Davidov, S. P. , 2007: Quality and potential biodegradability of soil organic matter preserved in permafrost of Siberian tussock tundra. Soil Biology & Biochemistry , 39: 1978–1989.
  • Ussiri, D. A. N. , and Johnson, C. E. , 2003: Characterization of organic matter in a northern hardwood forest soil by 13C NMR spectroscopy and chemical methods. Geoderma , 111: 123–149.
  • Walker, D. A. , Raynolds, M. K. , Daniëls, F. J. A. , Einarsson, E. , Elvebakk, A. , Gould, W. A. , Katenin, A. E. , Kholod, S. S. , Markon, C. J. , Melnikov, E. S. , Moskalenko, N. G. , Talbot, S. S. , and Yurtsev, B. A. , 2005: The circumpolar arctic vegetation map. Journal of Vegetation Science , 16: 267–282.
  • Wang, D. , and Anderson, D. W. , 1998: Direct measurement of organic carbon content in soils by the Leco CR-12 carbon analyzer. Communications in Soil Science and Plant Analysis , 29: 15–21.
  • Weintraub, M. N. , and Schimel, J. P. , 2005: Nitrogen cycling and the spread of shrubs control changes in the carbon balance of arctic tundra ecosystems., Bioscience 55: 408–414.
  • Woods, G. C. , Simpson, M. J. , Pautler, B. G. , Lamoureux, S. F. , Lafrenière, M. J. , and Simpson, A. J. , 2011: Evidence for the enhanced lability of dissolved organic matter following permafrost slope disturbance in the Canadian High Arctic. Geochimica et Cosmochimica Acta , 75: 7226–7241.
  • Zsolnay, A. , 1996: Dissolved humus in soil waters. In Piccolo, A. (ed.), Humic Substances in Terrestrial Ecosystems. Amsterdam: Elsevier, 171–223.
  • Zsolnay, A. , 2003: Dissolved organic matter: artefacts definitions, and functions., Geoderma 113: 187–209.

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