Yedoma. Part 1. Annals of geocryological research in the XIX-XX centuries

Author:

Vasil'chuk Yurij Kirillovich

Abstract

The subject of the study is the yedoma i.e. perennially frozen organic-bearing ("1–2% of Corg) and ice-rich (containing 50–90 vol. % of excess ice) silty, sandy loam and fine sand deposit of Late Pleistocene age. Yedoma with multi-stages syngenetic ice wedges (up to 15–20 meters high and up to 3.5 m wide) aged from 11.7 to 50 cal. ca BP often saturated with rock debris and gravel inclusions in intermountain basins and river deltas. The most famous regions of the Siberia, where yedoma is widespread, are the Kolyma and Yana-Indigirka lowlands, the New Siberian Islands, Lena and Vilyui River valley, Lena-Anabar, Anabar-Khatanga and Magadan regions, Yamal, Gydan and Taimyr Peninsula, Olekma, Biryusa valleys. In Alaska, these are slump on the Itkillik River and the Fox Permafrost Tunnel. Yedoma of the Klondike are known in the Yukon. Sections with large ground ice in yedoma were first described in the early 19th century on the Alaska and the New Siberian Islands, the idea of syngenetic accumulation of permafrost arose in the late 19th - early 20th centuries, the mechanism of syngenetic formation of yedoma was described in the middle of the 20th century. In the end of 20th century, studies of yedoma reached a new level. The oxygen and deuterium stable isotopes study of ice wedges together with radiocarbon ages of ice wedges gave the possibility to reconstruct the winter paleotemperature during yedoma formation. It was established the different genesis of yedoma also.

Publisher

Aurora Group, s.r.o

Subject

General Earth and Planetary Sciences,General Engineering,General Environmental Science

Reference119 articles.

1. Vasil’chuk Yu.K., Vasil’chuk A.C. Isotope-Geochemical composition of the ice wedges in the slope yedoma on the Kular Ridge and reconstruction of the mean January air paleotemperature during 47,000-25,000 BP // Earth's Cryosphere. 2020. Vol. XXIV. N3. P. 22-33. doi: 10.21782/EC2541-9994-2020-3(22-33).

2. Schirrmeister L., Froese D., Tumskoy V., Grosse G., Wetterich S. Yedoma: Late Pleistocene ice-rich syngenetic permafrost of Beringia // Encyclopedia of Quaternary Science, Second Edition. Elias SA, Mock CJ (eds). Elsevier: Amsterdam; 2013. Vol. 2. P. 542–552.

3. Strauss J., Laboor S., Schirrmeister L., Fedorov A.N., Fortier D., Froese D., Fuchs M., Günther F., Grigoriev M., Harden J., Hugelius G., Jongejans L.L., Kanevskiy M., Kholodov A., Kunitsky V., Kraev G., Lozhkin A., Rivkina E., Shur Y., Siegert C., Spektor V., Streletskaya I., Ulrich M., Vartanyan S., Veremeeva A., Anthony K.W., Wetterich S., Zimov N., Grosse G. Circum-Arctic Map of the Yedoma Permafrost Domain // Frontiers in Earth Science. 2021. Vol. 9:758360. doi: 10.3389/feart.2021.758360.

4. Strauss, J., Schirrmeister, L., Grosse, G., Fortier, D., Hugelius, G., Knoblauch, C., et al. Deep Yedoma Permafrost: A Synthesis of Depositional Characteristics and Carbon Vulnerability // Earth-Science Reviews. 2017. Vol. 172, p. 75–86. doi:10.1016/j.earscirev.2017.07.007.

5. Kanevskiy M., Shur Y., Bigelow N.H., Bjella K.L., Douglas T.A., Fortier D., Jones B.M., Jorgenson M.T. Yedoma Cryostratigraphy of Recently Excavated Sections of the CRREL Permafrost Tunnel Near Fairbanks, Alaska // Frontiers in Earth Science. 2022. Vol. 9:758800. doi: 10.3389/feart.2021.758800.

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