2017 Publications

Peer-reviewed publications produced by the Bolin Centre members.

*About 225 articles were reported

Ding, J., Chen, L., Ji C., Hugelius, G., Li, Y., Liu, L., Qin, S., Zhang, B., Yang, G., Li, F., Fang, K., Chen, Y., Peng, Y., Zhao, X., He, H., Smith, P., Fang, J., and Yang, Y., 2017. Decadal soil carbon accumulation across Tibetan permafrost regions. Nature Geoscience. doi 10.1038/NGEO2945.

Shakhova, N., Semiletov, I., Gustafsson, O., Sergienko, V., Lobkovsky, L., Dudarev, O., Tumskoy, V., Grigoriev, M., Mazurov, A., Salyuk, A., Ananiev, R., Koshurnikov, A., Kosmach, D., Charkin, A., Dmitrevsky, N., Karnaukh, V., Gunar, A., Meluzov, A., and Chernykh, D., 2017. Current rates and mechanisms of subsea permafrost degradation in the East Siberian Arctic Shelf. Nature Communications: 8, 10.1038/ncomms15872

Otto-Bliesner, B. L., Braconnot, P., Harrison, S. P., Lunt, D. J., Abe-Ouchi, A., Albani, S., Bartlein, P. J., Capron, E., Carlson, A. E., Dutton, A., Fischer, H., Goelzer, H., Govin, A., Haywood, A., Joos, F., LeGrande, A. N., Lipscomb, W. H., Lohmann, G., Mahowald, N., Nehrbass-Ahles, C., Pausata, F. S. R., Peterschmitt, J.-Y., Phipps, S. J., Renssen, H., and Zhang, Q., 2017. The PMIP4 contribution to CMIP6 – Part 2: Two interglacials, scientific objective and experimental design for Holocene and Last Interglacial simulations, Geosci. Model Dev.: 10, 3979–4003. https://doi.org/10.5194/gmd-10-3979-2017

Latif, M., Hannachi, A. and Faisal, F. S., 2017. Analysis of rainfall trends over Indo-Pak summer monsoon and related dynamics based on CMIP5 climate model simulations. International Journal of Climatology. Doi:10.1002/joc.5391.

Onskog, T., Franzke, C. and Hannachi, A., 2017. Predictability and non-Gaussian characteristics of the North Atlantic Oscillation. Journal of Climate: 31, 537–554. Doi:10.1175/JCLI-D-17-0101.1

Pires, C. and Hannachi, A., 2017. Independent Subspace Analysis of the sea surface temperature variability: non-Gaussian sources and sensitivity to sampling and dimensionality. Complexity. Doi:10.1155/2017/3076810

Hannachi, A. and Trendafilov, N., 2017. Archetypal analysis: mining weather and climate extremes. Journal of Climate.
Doi:10.1175/JCLI-D-16-0798.1. Supplemental material: https://Doi.org/10.1175/JCLI-D-16-0798.1

Chiacchio, M., Pausata, F. S. R., Messori, G., Hannachi, A., Chin, M., Onskong, T., Ekman, A. and Barrie, L., 2017. On the links between meteorological variables, aerosols and global tropical cyclone frequency. Journal of Geophysical research: 122. Doi:10.1002/2015JD024593.

Scher, S., Haarsma, R. J., De Vries, H., Drijfhout, S. S., & Van Delden, A. J., 2017. Resolution dependence of extreme precipitation and deep convection over the Gulf Stream. Journal of Advances in Modeling Earth Systems: 9, 1186–1194, https://doi.org/10.1002/2016MS000903

Ahlm, L., Jones, A., Stjern C. W., Muri, H., Kravitz, B., and Kristjánsson, J. E., 2017. Marine cloud brightening - as effective without clouds, Atmos. Chem. Phys.: 17, 13071–13087, Doi: 10.5194/acp-17-13071-2017.

Hansman, R.J., Ring, U., Thomson, S.N., den Brok, B., and Stübner, K., 2017. Late Eocene Uplift of the Al Hajar Mountains, Oman, Supported by Stratigraphy and Low‐Temperature Thermochronology. Tectonics: 36, 3081–3109. Doi: 10.1002/2017TC004672

Brus, D., Škrabalová, L., Herrmann, E., Olenius, T., Trávničková, T., Makkonen, U., and Merikanto, J., 2017. Temperature-dependent diffusion of H2SO4 in air at atmospherically relevant conditions: Laboratory measurements using laminar flow technique. Atmosphere: 8, 132.
Doi:10.3390/atmos8070132

Olenius, T., Halonen, R., Kurtén, T., Henschel, H., Kupiainen-Määttä, O., Ortega, I. K., Jen, C. N., Vehkamäki, H., and Riipinen, I., 2017. New particle formation from sulfuric acid and amines: Comparison of monomethylamine, dimethylamine, and trimethylamine. Journal of Geophysical Research: Atmospheres: 122, 7103–7118. Doi:10.1002/2017JD026501

Myllys, N., Olenius, T., Kurtén, T., Vehkamäki, H., Riipinen, I., and Elm, J., 2017. Effect of bisulfate, ammonia, and ammonium on the clustering of organic acids and sulfuric acid. Journal of Physical Chemistry A: 121, 4812–4824. Doi:10.1021/acs.jpca.7b03981

Olenius, T., and Riipinen, I., 2017. Molecular-resolution simulations of new particle formation: Evaluation of common assumptions made in describing nucleation in aerosol dynamics models. Aerosol Science & Technology: 51, 397–408. Doi:10.1080/02786826.2016.1262530

Elm, J., Myllys, N., Olenius, T., Halonen, R., Kurtén, T., and Vehkamäki, H., 2017. Formation of atmospheric molecular clusters consisting of sulfuric acid and C8H12O6 tricarboxylic acid. Physical Chemistry Chemical Physics: 19, 4877–4886. Doi:10.1039/C6CP08127D

Aalto, J., Riihimäki, H., Meineri, E., Hylander, K. and Luoto, M., 2017. Revealing topoclimatic heterogeneity using meteorological station data. International Journal of Climatology: 37, 544–556. doi/10.1002/joc.5020/

Meineri, E. and Hylander, K., 2017. Fine‐grain, large‐domain climate models based on climate station and comprehensive topographic information improve microrefugia detection. Ecography: 40, 1003–1013 doi: 10.1111/ecog.02494

Ekholm, A., Roslin, T., Pulkkinen, P., & Tack, A. J. M., 2017. Dispersal, host genotype and environment shape the spatial dynamics of a parasite in the wild. Ecology: 98(10), 2574–2584. doi:10.1002/ecy.1949

Mursinoff, S., & Tack, A. J. M., 2017. Spatial variation in soil biota mediates plant adaptation to a foliar pathogen. New Phytologist: 214(2), 644–654. doi:10.1111/nph.14402

Johansson, H., Lind., E.M., and Wastegård, S., 2017. Compositions of glass in proximal tephras from eruptions in the Azores archipelago and their links with distal sites in Ireland. Quaternary Geochronology: 40, 120–128. DOI: 10.1016/j.quageo.2016.07.006

Pearce, C., Varhelyi, A., Wastegård, S., Muschitiello, F., Barrientos, N., O'Regan, M., Cronin, T.M., Gemery, L., Semiletov, I., Backman, J., and Jakobsson, M., 2017. The 3.6 ka Aniakchak tephra in the Arctic Ocean: a constraint on the Holocene radiocarbon reservoir age in the Chukchi Sea. Climate of the Past: 13, 303–316. DOI: 10.5194/cp-13-303-2017

Watson, E.J., Swindles, G.T,. Lawson, I.T, Savov, I.P., and Wastegård, S., 2017. The presence of Holocene cryptotephra in Wales and southern England. Journal of Quaternary Science: 32, 493–500. DOI: 10.1002/jqs.2942

Iqbal, W., Leung, WN. & Hannachi, A., 2017. Analysis of the variability of the North Atlantic eddy-driven jet stream in CMIP5. Climate Dynamics.
https://doi.org/10.1007/s00382-017-3917-1

Rose, C., Sellegri, K., Moreno, I., Velarde, F., Ramonet, M., Weinhold, K., Krejci, R., Andrade, M., Wiedensohler, A., Ginot, P., Laj, P., 2017. CCN production by new particle formation in the free troposphere. Atmos. Chem. Phys.: 17, 1529–1541. doi:10.5194/acp-17-1529-2017, 2017
http://www.atmos-chem-phys.net/17/1529/2017

Grythe, H., Kristiansen, N.I., Groot Zwaaftink, C.D., Eckhardt, S., Ström, J., Tunved, P., Krejci, R., Stohl, A., 2017. A new aerosol wet removal scheme for the Lagrangian particle model FLEXPART. Geosci. Model Dev: 10, 1447–1466. doi:10.5194/gmd-10-1447-2017. http://www.geosci-model-dev.net/10/1447/2017

Rastak N., Pajunoja, A. Acosta Navarro, J. C., Ma, J., Song, M., Partridge, D. G., Kirkevåg, A., Leong, Y., Hu, W. W., Taylor, N. F., Lambe, A., Cerully, K., Bougiatioti, A., Liu, P., Krejci, R., Pet j, T., Percival, C., Davidovits, P., Worsnop, D. R., Ekman, A. M. L., Nenes, A., Martin, S., Jimenez, J. L., Collins, D. R., Topping, D.O., Bertram, A. K., Zuend, A., Virtanen, A. and Riipinen, I., 2017. Microphysical explanation of the RH-dependent water affinity of biogenic organic aerosol and its importance for climate. Geophys. Res. Lett.: 44. doi:10.1 002/2017GL073056

Dall’Osto, M., Beddows, D.C.S., Tunved, P., Krejci, R., Ström, J., Hansson, H-.C., Yoon, Y.J., Ki-Tae park, Becagli, S., Udisti, R., Onasch, T., O’Dowd, C.D., Simo, R., Harrison, R.M., 2017. Arctic sea ice melt leads to atmospheric new particle formation. Scientific Reports: 7, 3318. doi:10.1038/s41598-017-03328-1. https://www.nature.com/articles/s41598-017-03328-1

An, W., Hou, S., Zhang, Q., Zhang, W., Wu, S., Xu,H., Pang, H., Wang,Y. and Liu,Y., 2017. Enhanced recent local moisture recycling on the northwestern Tibetan Plateau deduced from ice core deuterium excess records. Journal of Geophysical Research: Atmospheres: 122.
https://doi.org/10.1002/2017JD027235

Dey, D., Sil, S., Jana, S., Pramanik, S., & Pandey, P. C., 2017. An assessment of TropFlux and NCEP air-sea fluxes on ROMS simulations over the Bay of Bengal region. Dynamics of Atmospheres and Oceans: 80, 47–61.
https://www.sciencedirect.com/science/article/pii/S0377026517300325​

Moor, H., Rydin, H., Hylander, K., Nilsson, M.B., Lindborg, R. Norberg, J., 2017. Towards a trait-based ecology of wetland vegetation. Journal of Ecology. doi: 10.1111/1365-2745.12734

Lindborg, R., Gordon, L. J., Malinga, R., Bengtsson, J., Peterson, G., Bommarco, R., Deutsch, L., Gren, A., Rundlöf, M., and Smith, H. G., 2017. How spatial scale shapes the generation and management of multiple ecosystem services. Ecosphere: 8(4), e01741. 10.1002/ecs2.1741

Dainese, M., Isaac, N. J. B., Powney, G. D., Bommarco, R., Öckinger, E., Kuussaari, M., Pöyry, J., Benton, T. G., Gabriel, D., Hodgson, J. A., Kunin, W. E., Lindborg, R., Sait, S. M. and Marini, L., 2017. Landscape simplification weakens the association between terrestrial producer and consumer diversity in Europe. Glob Change Biol: 23, 3040–3051. doi:10.1111/gcb.13601

Kuilman, M., Karlsson, B., Benze, S., and Megner, L., 2017. Exploring noctilucent cloud variability using the nudged and extended version of the Canadian Middle Atmosphere Model. Journal of Atmospheric and Solar-Terrestrial Physics: 164, 276-288. https://doi.org/10.1016/j.jastp.2017.08.019

Karlsson, B. and M. Kuilman, 2018: On How the Middle Atmospheric Residual Circulation Responds to the Solar Cycle Close to the Solstices. J. Climate, 31, 401–421. https://doi.org/10.1175/JCLI-D-17-0202.1

Campbell, B., Beare, D., Bennett, E., Hall-Spencer, J., Ingram, J., Jaramillo, F., Ortiz, R., Ramankutty, N., Sayer, J. and Shindell, D., 2017. Agriculture production as a major driver of the Earth system exceeding planetary boundaries. Ecology and Society: 22(4). doi:10.5751/ES-09595-220408.

Cheng, G., Lötstedt, P., & von Sydow, L., 2017. Accurate and stable time stepping in ice sheet modeling. Journal of Computational Physics: 329, 29–47. Doi: 10.1016/j.jcp.2016.10.060

Hedlund, J.S.U., Sjösten, F., Sokolovskis, K., and Jakobsson, S., 2017. Point of no return – absence of returning birds in the otherwise philopatric willow warbler. Journal of Avian Biology: 48, 3, 399–406. http://dx.doi.org/10.1111/jav.00973

Wild, B., Alaei, S., Bengtson, P., Bodé, S., Boeckx, P., Schnecker, J., Mayerhofer, W., Rütting, T., 2017. Short-term carbon input increases microbial nitrogen demand, but not microbial nitrogen mining, in a set of boreal forest soils. Biogeochemistry: 136, 261–278. Doi: 10.1007/s10533-017-0391-0

Mooshammer, M., Hofhansl, F., Frank, A.H., Wanek, W., Hämmerle, I., Leitner, S., Schnecker, J., Wild, B., Watzka, M., Keiblinger, K.M., Zechmeister-Boltenstern, S., Richter, A., 2017. Decoupling of microbial carbon, nitrogen, and phosphorus cycling in response to extreme
temperature events. Science Advances: 3, e1602781. Doi: 10.1126/sciadv.1602781

Turner, S., Meyer-Stüve, S., Schippers, A., Guggenberger, G., Schaarschmidt, F., Wild, B., Richter, A., Dohrmann, R., Mikutta, R., 2017. Microbial utilization of mineral-associated nitrogen in soils. Soil Biology & Biochemistry: 104, 185–196. Doi: 10.1016/j.soilbio.2016.10.010

Norström, E., Katrantsiotis, C., Smittenberg, R.H., Kouli, K., 2017, Chemotaxonomy in some Mediterranean plants and implications for fossil biomarker records. Geochimica et Cosmochimica Acta: 219, 96–110.

Sitoe, S., Risberg, J., Norström, E., Westerberg, L-O., 2017. Late Holocene sea-level changes and paleoclimate recorded in Lake Lungué, southern Mozambique. Palaeogeography, Palaeoclimatology, Palaeoecology: 485, 305–315.

Norström, E., Öberg, H., Sitóe, S.R., Ekblom, A., Westerberg, L-O., Risberg, J., 2017. Vegetation dynamics within the savanna biome in southern Mozambique during late Holocene. The Holocene. Doi: 10.1177/0959683617721327.

Andrén, E., Telford, R J., and Jonsson, P., 2017. Reconstructing the history of eutrophication and quantifying total nitrogen reference conditions in Bothnian Sea coastal waters. Estuarine, Coastal and Shelf Science: 198, 320–328. Doi: https://doi.org/10.1016/j.ecss.2016.07.015

Snoeijs-Leijonmalm, P., and Andrén, E., 2017. Why is the Baltic Sea so special to live in? Chapter 2. 23–84. In: P. Snoeijs-Leijonmalm et al. (eds.), Biological Oceanography of the Baltic Sea. Doi: 10.1007/978-94-007-0668-2_2

Weckström, K., Lewis, J.P., Andrén, E., Ellegaard, M., Rasmussen, P., Ryves, D.B., Telford, R.J., 2017. Palaeoenvironmental History of the Baltic Sea: One of the Largest Brackish-water Ecosystems in the World. 615-652. In: K. Weckström, K. M. Saunders, P. A. Gell, C. G. Skilbeck (eds.) Applications of Paleoenvironmental Techniques in Estuarine Studies. Springer. Doi: 10.1007/978-94-024-0990-1

Warnock, J. P., Bauersachs, T., Kotthoff, U., Brandt, H.-T., Andrén, E., 2017. Holocene environmental history of the Ångermanälven Estuary, northern Baltic Sea. Boreas. Doi: https://doi.org/10.1111/bor.12281.

Winiger, P., Andersson, A., Eckhardt, S., Stohl, A., Semiletov, I., Dudarev, O., Charkin, A., Shakhova, N., Klimont, Z., Heyes, C., and Gustafsson, Ö., 2017. Siberian Arctic black carbon sources constrained by model and observation. Proceedings of the National Academy of Sciences: 114 (7), E1054–E1061. DOI:10.1073/pnas.1613401114.

Obrochta, S. P., Andrén, T., Fazekas, S. Z., Lougheed, B. C., Snowball, I., Yokoyama, Y., Miyairi, Y., Kondo, R, Kotilainen, A. T., Hyttinen, O. & Fehr, A., 2017. The undatables: Quantifying uncertainty in a highly expanded Late Glacial-Holocene sediment sequence recovered from the deepest Baltic Sea basin – IODP Site M0063. G3. Geochemistry, Geophysics, Geosystems: 18, 1–14. doi:10.1002/2016GC006697.

van Helmond, N.A.G.M., Quintana Krupinski, N.B., Lougheed, B.C., Obrochta, S.P., Andrén, T. & Slomp C.P., 2017. Seasonal hypoxia was a natural feature of the coastal zone in the Little Belt, Denmark, during the past 8 ka. Marine Geology. http://dx.doi.org/10.1016/j.margeo.2017.03.008.

Kotthoff, U., Groeneveld, J., Ash, J. L., Fanget, A.-S., Krupinski, N. Q., Peyron, O., Stepanova, A., Warnock, J., Van Helmond, N. A. G. M., Passey, B. H., Clausen, O. R., Bennike, O., Andrén, E., Granoszewski, W., Andrén, T., Filipsson, H. L., Seidenkrantz, M.-S., Slomp, C. P., and Bauersachs, T., 2017. Reconstructing Holocene temperature and salinity variations in the western Baltic Sea region: a multi-proxy comparison from the Little Belt (IODP Expedition 347, Site M0059). Biogeosciences: 14, 5607–5632. https://doi.org/10.5194/bg-14-5607-2017.

Sörensen, J., and Mobini, S., 2017. Pluvial, urban flood mechanisms and characteristics – Assessment based on insurance claims. Journal of Hydrology: 555, 51–67. Doi: 10.1016/j.jhydrol.2017.09.039

Merinero, S., Méndez, M., Aragón, G., and Martínez, I., 2017. Variation in the reproductive strategy of a lichenized fungus along a climatic gradient. Annals of Botany: 120: 63–70. Doi: 10.1093/aob/mcx045.

Keys, P. W., Wang-Erlandsson, L., Gordon, L. J., Galaz, V. and Ebbesson, J., 2017. Approaching moisture recycling governance. Global Environmental Change: 45, pp. 15–23. doi: https://doi.org/10.1016/j.gloenvcha.2017.04.007.

Destouni, G., Fischer, I., and Prieto, C., 2017. Water quality and ecosystem management: Data-driven reality check of effects in streams and lakes. Water Resources Research: 53, 6395–6404. Doi: 10.1002/2016WR019954

Engström, R. E., Howells, M., Destouni, G., Bhatt, V., Bazilian, M., and Rogner, H.-H., 2017. Connecting the resource nexus to basic urban service provision - with focus on water-energy interactions in New York City. Sustainable Cities and Society: 31, 83–94. Doi: 10.1016/j.scs.2017.02.007

Rafiee, M., Lyon, S.W., Zahraie, B., Destouni, G., and Jaafarzadeh, N., 2017. Optimal wastewater loading under conflicting goals and technology limitations in a riverine system. Water Environment Research: 89 (3), 211–220. Doi: 10.2175/106143016X14798353399494

Finné, M., Holmgren, K., Shen, C.-C., Hu, H.-M., Boyd, M., and Stocker, S., 2017. Late bronze age climate change and the destruction of the Mycenaean Palace of Nestor at Pylos. PLoS ONE: 12 (12), art. no. e0189447. Doi: 10.1371/journal.pone.0189447

Menounos, B., Goehring, B.M., Osborn, G., Margold, M., Ward, B., Bond, J., Clarke, G.K.C., Clague, J.J., Lakeman, T., Koch, J., Caffee, M.W., Gosse, J., Stroeven, A.P., Seguinot, J., and Heyman, J., 2017. Cordilleran Ice Sheet mass loss preceded climate reversals near the Pleistocene Termination. Science: 358, 781–784. Doi: 10.1126/science.aan3001.

Patton, H., Hubbard, A., Andreassen, K., Auriac, A., Whitehouse, P.L., Stroeven, A.P., Shackleton, C., Winsborrow, M., Heyman, J., and Hall, A.M., 2017. Deglaciation of the Eurasian ice sheet complex. Quaternary Science Reviews: 169, 148–172. Doi: 10.1016/j.quascirev.2017.05.019.

 Gribenski, N., Lukas, S., Stroeven, A.P., Jansson, K.N., Harbor, J.M., Blomdin, R., Ivanov, M.N., Heyman, J., Petrakov, D.A., Rudoy, A., Clifton, T., Lifton, N.A., Caffee, M.W., 2017. Reply to comment received from J. Herget et al. regarding “Complex patterns of glacier advances during the late glacial in the Chagan Uzun Valley, Russian Altai” by Gribenski et al. (2016), Quaternary Science Reviews: 149, 288–305. Quaternary Science Reviews: 168, 219–221.
Doi: 10.1016/j.quascirev.2017.04.013.

Jungclaus, J. H., Bard, E., Baroni, M., Braconnot, P., Cao, J., Chini, L. P., Egorova, T., Evans, M., González-Rouco, J. F., Goosse, H., Hurtt, G. C., Joos, F., Kaplan, J. O., Khodri, M., Klein Goldewijk, K., Krivova, N., LeGrande, A. N., Lorenz, S. J., Luterbacher, J., Man, W., Maycock, A. C., Meinshausen, M., Moberg, A., Muscheler, R., Nehrbass-Ahles, C., Otto-Bliesner, B. I., Phipps, S. J., Pongratz, J., Rozanov, E., Schmidt, G. A., Schmidt, H., Schmutz, W., Schurer, A., Shapiro, A. I., Sigl, M., Smerdon, J. E., Solanki, S. K., Timmreck, C., Toohey, M., Usoskin, I. G., Wagner, S., Wu, C.-J., Yeo, K. L., Zanchettin, D., Zhang, Q., and Zorita, E., 2017. The PMIP4 contribution to CMIP6 – Part 3: The last millennium, scientific objective, and experimental design for the PMIP4 past1000 simulations, Geosci. Model Dev.: 10, 4005–4033. https://doi.org/10.5194/gmd-10-4005-2017

Kageyama, M., Albani, S., Braconnot, P., Harrison, S. P., Hopcroft, P. O., Ivanovic, R. F., Lambert, F., Marti, O., Peltier, W. R., Peterschmitt, J.-Y., Roche, D. M., Tarasov, L., Zhang, X., Brady, E. C., Haywood, A. M., LeGrande, A. N., Lunt, D. J., Mahowald, N. M., Mikolajewicz, U., Nisancioglu, K. H., Otto-Bliesner, B. L., Renssen, H., Tomas, R. A., Zhang, Q., Abe-Ouchi, A., Bartlein, P. J., Cao, J., Li, Q., Lohmann, G., Ohgaito, R., Shi, X., Volodin, E., Yoshida, K., Zhang, X., and Zheng, W., 2017. The PMIP4 contribution to CMIP6 – Part 4: Scientific objectives and experimental design of the PMIP4-CMIP6 Last Glacial Maximum experiments and PMIP4 sensitivity experiments, Geosci. Model Dev.: 10, 4035–4055. https://doi.org/10.5194/gmd-10-4035-2017

Possner, A., Ekman, A. M., L., and Lohmann, U. 2017. Cloud response and feedback processes in stratiform mixed‐phase clouds perturbed by ship exhaust. Geophys. Res. Lett.: 44. Doi:10.1002/2016GL071358.

Acosta Navarro, J. C., Ekman, A. M. L., Pausata, F., Lewinschal, A., Varma, V., Seland, Ø., Gauss, M., Iversen, T., Kirkevåg, A., Riipinen, I., Hansson, H.-C., 2017. Future response of temperature and precipitation to reduced aerosol emission as compared with increased greenhouse gas concentrations. Journal of Climate.: 30, 939–954. Doi: 10.1175/JCLI-D-16-0466.1

Egholm, D.L., Jansen, J.D., Brædstrup, C.F., Pedersen, V.K., Andersen, J.L., Ugelvig, S.V., Larsen, N.K., and Knudsen, M.F., 2017. Formation of plateau landscapes on glaciated continental margins. Nature Geoscience: 10, 592–597. Doi: 10.1038/ngeo2980

Strunk, A., Knudsen, M.K., Egholm, D.L., Jansen, J.D., Levy, L.B., Jacobsen, B.H., and Larsen, N.K., 2017. One million years of glaciation and denudation history in west Greenland. Nature Communications: 8, 14199. Doi: 10.1038/ncomms1419

Hartung, K., Svensson, G., and Kjellström E., 2017. Resolution, physics and atmosphere-ocean interaction – How do they influence climate model representation of Euro-Atlantic atmospheric blocking?. Tellus. Series A, Dynamic meteorology and oceanography: 69. doi: 10.1080/16000870.2017.1406252

Sánchez Goñi, M.F. et al. (with 69 co-authors including Helmens, K.F.), 2017. The ACER pollen and charcoal database: a global resource to document vegetation and fire response to abrupt climate changes during the last glacial period. Earth System Science Data: 9, 679–695.

Shala, S., Helmens, K.F., Luoto, T.P., Salonen, J.S., Väliranta, M., and Weckström, J., 2017. Comparison of quantitative Holocene temperature reconstructions using multiple proxies from a northern boreal lake. The Holocene: 27, 1745–1755.

Pietroń, J., Chalov, S.R., Chalova, A.S., Alekseenko, A.V. and Jarsjö, J., 2017. Extreme spatial variability in riverine sediment load inputs due to soil loss in surface mining areas of the Lake Baikal basin. Catena: 152, 82–93. Doi: 10.1016/j.catena.2017.01.008

Anderson, L.G., Ek, J., Ericson, Y., Humborg, C., Semiletov, I., Sundbom, M., and Ulfsbo, A., 2017. Export of calcium carbonate corrosive waters from the East Siberian Sea. Biogeosciences, 14, 1811–1823. Doi: 10.5194/bg-14-1811-2017

Elmhagen, B., Berteaux, D., Burgess, R.M., Ehrich, D., Gallant, D., Henttonen, H., Ims, R.A., Killengreen, S.T., Niemimaa, J., Norén, K., Ollila, T., Rodnikova, A., Sokolov, A.A., Sokolova, N.A., Stickney, A.A., and Angerbjörn, A., 2017. Homage to Hersteinsson and Macdonald: climate warming and resource subsidies cause red fox range expansion and Arctic fox decline. Polar Research: 36, sup1:3. doi: 10.1080/17518369.2017.1319109.

van Peer, T.E., Xuan, C., Lippert, P.C., Liebrand, D., Agnini, C., Wilson, P.A., 2017. Extracting a detailed magnetostratigraphy from weakly magnetized, Oligocene to early Miocene sediment drifts recovered at IODP Site U1406 (Newfoundland Margin, Northwest Atlantic Ocean). Geochemistry, Geophysics, Geosystems, 18, 3910–3928. https://doi.org/10.1002/2017GC007185

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