Items where Author is "Overduin, Pier P"
Number of items: 9.
Article
Angelopoulos, M. , Overduin, P. P. , Jenrich, M. , Nitze, I. , Günther, F. , Strauss, J. , Westermann, S. , Schirrmeister, L. , Kholodov, A. , Krautblatter, M. , Grigoriev, M. N. and Grosse, G.
(2021)
Onshore Thermokarst Primes Subsea Permafrost Degradation
,
Geophysical Research Letters,
48
(20)
.
doi:https://www.doi.org/10.1029/2021gl093881
, hdl:
10013/epic.c7a10565-aebe-4f4c-bd82-ada30374f64c
Miscellaneous
Angelopoulos, M. , Overduin, P. P. , Miesner, F. , Grigoriev, M. N. and Vasiliev, A. A.
,
GRID-Arendal
(2020)
Cover Image
,
[Miscellaneous]
doi:https://www.doi.org/10.1002/ppp.2082
, hdl:
10013/epic.499fcf66-cad5-40ba-99a8-c1b453c52801
Conference
-Paper
Angelopoulos, M. , Overduin, P. P. , Miesner, F. , Grigoriev, M. N. and Vasiliev, A. A.
(2020)
Recent advances in the study of Arctic submarine permafrost
,
Permafrost and Periglacial Processes
doi:https://www.doi.org/10.1002/ppp.2061
, hdl:
10013/epic.799f0b61-7d9c-444b-81c3-0a80d80ca461
Article
Juhls, B. , Stedmon, C. A. , Morgenstern, A. , Meyer, H. , Hölemann, J. , Heim, B. , Povazhnyi, V. and Overduin, P. P.
(2020)
Identifying Drivers of Seasonality in Lena River Biogeochemistry and Dissolved Organic Matter Fluxes
,
Frontiers in Environmental Science,
8
,
53-
.
doi:https://www.doi.org/10.3389/fenvs.2020.00053
, hdl:
10013/epic.ff86d1ec-dc70-4012-b7ce-417857a1e985
Article
Mitzscherling, J. , Horn, F. , Winterfeld, M. , Mahler, L. , Kallmeyer, J. , Overduin, P. P. , Schirrmeister, L. , Winkel, M. , Grigoriev, M. N. , Wagner, D. and Liebner, S.
(2019)
Microbial community composition and abundance after millennia of submarine permafrost warming
,
Biogeosciences,
16
(19),
pp. 3941-3958
.
doi:https://www.doi.org/10.5194/bg-16-3941-2019
, hdl:
10013/epic.0ffce854-e405-4531-bf29-5d8b9c0efbcb
Article
Winkel, M. , Mitzscherling, J. , Overduin, P. P. , Horn, F. , Winterfeld, M. , Rijkers, R. , Grigoriev, M. N. , Knoblauch, C. , Mangelsdorf, K. , Wagner, D. and Liebner, S.
(2018)
Anaerobic methanotrophic communities thrive in deep submarine permafrost
,
Scientific Reports,
8
(1),
1291-
.
doi:https://www.doi.org/10.1038/s41598-018-19505-9
, hdl:
10013/epic.50662d3b-26f5-4733-bc3c-a7cbe921ef74
Article
Mitzscherling, J. , Winkel, M. , Winterfeld, M. , Horn, F. , Yang, S. , Grigoriev, M. N. , Wagner, D. , Overduin, P. P. and Liebner, S.
(2017)
The development of permafrost bacterial communities under submarine conditions
,
Journal of Geophysical Research: Biogeosciences,
122
(7),
pp. 1689-1704
.
doi:https://www.doi.org/10.1002/2017jg003859
, hdl:
10013/epic.51822
Article
Overduin, P. P. , Haberland, C. , Ryberg, T. , Kneier, F. , Jacobi, T. , Grigoriev, M. N. and Ohrnberger, M.
(2015)
Submarine permafrost depth from ambient seismic noise
,
Geophysical Research Letters,
42
(18),
pp. 7581-7588
.
doi:https://www.doi.org/10.1002/2015gl065409
, hdl:
10013/epic.46567
Article
Overduin, P. P. , Yoshikawa, K. , Kane, D. L. and Harden, J. W.
(2005)
Comparing electronic probes for volumetric water content of low‐density feathermoss
,
Sensor Review,
25
(3),
pp. 215-221
.
doi:https://www.doi.org/10.1108/02602280510606507
, hdl:
10013/epic.24837
This list was generated on Fri Nov 29 13:49:47 2024 CET.