2024 Publications
Peer-reviewed publications produced by the Bolin Centre members
*About 141 articles have been reported until now
Shen, J., Russell, D.M., DeVivo, J. et al.(including I. Riipinen and R. Bardakov), 2024. New particle formation from isoprene under upper-tropospheric conditions. Nature 636, 115–123. https://doi.org/10.1038/s41586-024-08196-0
Machado, L.A.T., Unfer, G.R., Brill, S. et al (including I. Riipinen and R. Krejci), 2024. Frequent rainfall-induced new particle formation within the canopy in the Amazon rainforest. Nat. Geosci. 17, 1225–1232. https://doi.org/10.1038/s41561-024-01585-0
Blichner, S.M., Yli-Juuti, T., Mielonen, T. et al. (including L. Heikkinen and I. Riipinen), 2024. Process-evaluation of forest aerosol-cloud-climate feedback shows clear evidence from observations and large uncertainty in models. Nat Commun 15, 969. https://doi.org/10.1038/s41467-024-45001-y
Bardakov, R., Thornton, J. A., Ekman, A. M. L., Krejci, R., Pöhlker, M. L., Curtius, J., Williams J., Lelieveld J., Riipinen I., 2024. High concentrations of nanoparticles from isoprene nitrates predicted in convective outflow over the Amazon. Geophysical Research Letters, Vol.: 51, Issue: 23. e2024GL109919. https://doi.org/10.1029/2024GL109919
Pereira Freitas, G., Kopec, B., Adachi, K., Krejci, R., Heslin-Rees, D., Yttri, K. E., Hubbard, A., Welker, J. M., and Zieger, P., 2024. Contribution of fluorescent primary biological aerosol particles to low-level Arctic cloud residuals, Atmos. Chem. Phys., 24, 5479–5494. https://doi.org/10.5194/acp-24-5479-2024
Heikkinen, L., Partridge, D. G., Blichner, S., Huang, W., Ranjan, R., Bowen, P., Tovazzi, E., Petäjä, T., Mohr, C., and Riipinen, I., 2024. Cloud response to co-condensation of water and organic vapors over the boreal forest, Atmos. Chem. Phys., 24, 5117–5147. https://doi.org/10.5194/acp-24-5117-2024
Heslin-Rees, D., Tunved, P., Ström, J., Cremer, R., Zieger, P., Riipinen, I., Ekman, A. M. L., Eleftheriadis, K., and Krejci, R., 2024. Increase in precipitation scavenging contributes to long-term reductions of light-absorbing aerosol in the Arctic, Atmos. Chem. Phys., 24, 2059–2075. https://doi.org/10.5194/acp-24-2059-2024
Posada-Marín, J., Wang-Erlandsson, L., Salazar, J., Jaramillo, F., & Rulli, M. C., 2024. Upwind moisture supply increases risk to water security. Nature Water. Advance online publication. https://doi.org/10.1038/s44221-024-00291-w
Geoffroy, G., Pollmann, F. and Nycander, J., 2024. Tidal conversion into vertical normal modes by near-critical topography. J. Phys. Oceanogr.: vol. 54, pp 1949–1969. doi: 10.1175/JPO-D-23-0255.1
Nilsson, J., Kallmyr, J.A. and Isachsen, P.E., 2024. Topographic steering of the upper Arctic Ocean circulation by deep flows. Tellus A: 76(1), 206–226. doi: 10.16993/tellusa.4072
Bender, F.A.-M., Lord, T., Staffansdotter, A., Jung, V. and Undorf, S., 2024. Machine Learning Approach to Investigating the Relative Importance of Meteorological and Aerosol-Related Parameters in Determining Cloud Microphysical Properties. Tellus B: Chemical and Physical Meteorology: 76(1), p. 1–18. https://doi.org/10.16993/tellusb.1868.
van Tiel, M., Aubry-Wake, C., Somers, L. et al., 2024. Cryosphere–groundwater connectivity is a missing link in the mountain water cycle. Nat Water: 2, 624–637. https://doi.org/10.1038/s44221-024-00277-8
Andrén, E., Vinogradova, O., Lönn, M., Belle, S., Dahl, M., Palm, V., Katrantsiotis, C., Nielsen, A.B., Jakobsson, M., Rönnby, J., Andrén, T., 2024. Modern land use changes drive shifts in nutrient cycling and diatom assemblages in the Baltic Sea coastal zone: A millennial perspective with a case study from Gamlebyviken, Swedish east coast. Quaternary Science Reviews: 346, 109058. https://doi.org/10.1016/j.quascirev.2024.109058
Jakobsson, M., Mohammad, R., Karlsson, M., Salas-Romero, S., Vacek, F., Heinze, F., Bringensparr, C., Castro, C.F., Johnson, P., Kinney, J., Cardigos, S., Bogonko, M., Accettella, D., Amblas, D., An, L., Bohan, A., Brandt, A., Bünz, S., Canals, M., Casamor, J.L., Coakley, B., Cornish, N., Danielson, S., Demarte, M., Di Franco, D., Dickson, M.-L., Dorschel, B., Dowdeswell, J.A., Dreutter, S., Fremand, A.C., Hall, J.K., Hally, B., Holland, D., Hong, J.K., Ivaldi, R., Knutz, P.C., Krawczyk, D.W., Kristofferson, Y., Lastras, G., Leck, C., Lucchi, R.G., Masetti, G., Morlighem, M., Muchowski, J., Nielsen, T., Noormets, R., Plaza-Faverola, A., Prescott, M.M., Purser, A., Rasmussen, T.L., Rebesco, M., Rignot, E., Rysgaard, S., Silyakova, A., Snoeijs-Leijonmalm, P., Sørensen, A., Straneo, F., Sutherland, D.A., Tate, A.J., Travaglini, P., Trenholm, N., van Wijk, E., Wallace, L., Willis, J.K., Wood, M., Zimmermann, M., Zinglersen, K.B., Mayer, L., 2024. The International Bathymetric Chart of the Arctic Ocean Version 5.0. Sci Data: 11, 1420. https://doi.org/10.1038/s41597-024-04278-w
Hocking, T., Mauritsen, T., and Megner, L., 2024. Sampling the diurnal and annual cycles of the Earth's energy imbalance with constellations of satellite-borne radiometers. Atmos. Meas. Tech.: 17, 7077–7095, https://doi.org/10.5194/amt-17-7077-2024.
Uribe, A., Bender, F. A.-M., and Mauritsen, T., 2024. Constraining net long-term climate feedback from satellite-observed internal variability possible by the mid-2030s. Atmos. Chem. Phys.: 24, 13371–13384, https://doi.org/10.5194/acp-24-13371-2024.
Martínez-Abarca R., Pérez L., Brenner, M., Schenk, F., Obrist-Farner, J., Correa-Metrio, A., Bauersachs, T. and Schwalb, A., 2024. Climate, environment and human history in lowland Central America: Insights from Guatemalan lake sediments. Past Global Changes Magazine 32(2), 80–81. https://doi.org/10.22498/pages.32.2.80
Power, K., & Zhang, Q., 2024. The impacts of reduced ice sheets, vegetation, and elevated CO2 on future Arctic climates. Arctic, Antarctic, and Alpine Research, 56(1). https://doi.org/10.1080/15230430.2024.2433860
Bromfält, E., & Wastegård, S., 2024. Was there a 4.2 ka BP event in Sweden? Evidence from peat, tree-rings and lake sediments. Geografiska Annaler: Series A, Physical Geography, 1–26. https://doi.org/10.1080/04353676.2024.2440845
R. Bardakov, J.A. Thornton, A.M.L. Ekman, R. Krejci, M. L. Pöhlker, J. Curtius, J. Williams, J. Lelieveld, I. Riipinen, 2024. High Concentrations of Nanoparticles From Isoprene Nitrates Predicted in Convective Outflow Over the Amazon. Geophysical Research Letters: 51, e2024GL109919. https://doi.org/10.1029/2024GL109919.
Pallandt, M.M.T.A., Jung, M., Arndt, K., Natali, S.M., Rogers, B.M., Virkkala, A-M., Göckede, M., 2024. High-Latitude Eddy Covariance Temporal Network Design and Optimization. JGR Biogeosciences: 129, 10. https://doi.org/10.1029/2024JG008406
Seemann, F. and Sannel, A.B.K., 2024. Morphology and dynamics of thermokarst ponds in a subarctic permafrost peatland, northern Sweden. Earth Surface Processes and Landforms: 1–13. doi:10.1002/esp.6021. https://onlinelibrary.wiley.com/doi/10.1002/esp.6021
Nyasulu M. K., Fetzer I., Stenzel F., Wang-Erlandsson L., Gerten D., Rockström J., & Falkenmark M †. African Rainforest Moisture Feedback on Agricultural Production. (2024). Agricultural and Forest Meteorology 346, 109867, https://doi.org/10.1016/j.agrformet.2023.109867
† Deceased
Baumgartner, S.A., Smith, S.W., Bartzke, G.S., Laizar, O., Ploechl, J.F., Michler, L.M., Naro, E.M., Treydte, A.C., 2024. Love your wet grass! Dry season grazing reserves show highest grass regrowth in communal semi-arid rangelands of Tanzania. PloS one: 19(11):e0313818. https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0313818
Mosso, A., Hocking, T. and Mauritsen, T., 2024. The presence of clouds lowers climate sensitivity in the MPI-ESM1.2 climate model. Atmospheric Chemistry and Physics. https://doi.org/10.5194/acp-24-12793-2024.
Razmjooei, M.J, and O’Regan, M., 2024. Improved paired light and scanning electron microscope imaging technique for identifying nannofossils in Arctic sediments. Geobios. 4, , ISSN 0016-6995. https://doi.org/10.1016/j.geobios.2024.08.016
Christiansen, H.H., Sjöberg, Y., Blume-Werry, G., Dorrepaal, E., Etzelmüller, B., Farnsworth, W.R., Hjort, J., Ingeman-Nielsen, T., Malenfant-Lepage, J., Petterson, R., Sannel, A.B.K., Siewert, M., Tomaskovicova, S., Väliranta, M., 2024. A roadmap for developing permafrost higher education in Norden. Nordic Journal of STEM Education: 8 (2), doi:10.5324/njsteme.v8i2.5127. https://www.ntnu.no/ojs/index.php/njse/article/view/5127
Boukrouche, R., Caballero, R., Janson, M., 2024. The impact of water clouds on the prospective emission spectrum of Teegarden's Star b as observed by LIFE. Astrophysical Journal. https://arxiv.org/abs/2411.07922
Lantz, B., Uusma, B., and Tjernström, M., 2024 The lost message of Nils Strindberg: Re-examining an 1897 Andrée balloon expedition mystery. Polar Record: 60, e21, DOI: https://doi.org/10.1017/S0032247424000196
Hugelius, G., Ramage, J., Burke, E.,Chatterjee, A., Smallman, T. L., Aalto, T., et al., 2024. Permafrost region greenhouse gas budgets suggest a weak CO2 sink and CH4 and N2O sources, but magnitudes differ between top‐down and bottom‐up methods. Global Biogeochemical Cycles: 38, e2023GB007969. https://doi.org/10.1029/2023GB007969
Xu, G., Broadman E., Dorado-Liñán, I., Klippel, L., Meko, M., Büntgen, U., De Mil, T., Esper, J., Gunnarson, B., Hartl, H., Krusic, P.J., Linderholm, H.W., Ljungqvist, F.C., Ludlow, F., Panayotov, M., Seim, A., Wilson, R., Zamora-Reyes, D. & Trouet, V., 2024. Jet stream controls on European climate and agriculture since 1300 CE. Nature: 634, 600–608. https://doi.org/10.1038/s41586-024-07985-x
Chen, F., Wang, T., Zhao, X., Esper, J., Ljungqvist, F.C., Büntgen, U., Linderholm, H.W., Meko, D., Xu, H., Yue, W., Wang, S., Yuan, Y., Zheng, J., Pan, W., Roig, F., Hadad, M., Hu, M., Wei, J. & Chen, F., 2024. Coupled Pacific Rim megadroughts contributed to the fall of the Ming Dynasty’s capital in 1644 CE. Science Bulletin: 69, 3106–3114. https://doi.org/10.1016/j.scib.2024.04.029
Ljungqvist, F.C. & Seim, A., 2024. Reassessing grain price variability in early modern Europe (c. 1500–1800). European Economic Review: 170, 104852. https://doi.org/10.1016/j.euroecorev.2024.104852
Martínez-Abarca, R., Pérez, L., Bauersachs, T., Schenk, F., Kutterolf, S., Brenner, M., Guilderson, T., Correa-Metrio, A., Anselmetti, F.S., Brown, R., Ariztegui, D., Macario-González, L., Cruz-Silva, E., Beltran-Martinez, J.C., Bush, M., Stockhecke, M., Curtis, J., and Schwalb, A., 2024. Precipitation variability and environmental change across late Quaternary glacial-interglacial cycles in lowland Central America: Insights from Lake Petén Itzá (Guatemala) sediments. Quaternary Science Reviews: 344, 108985, https://doi.org/10.1016/j.quascirev.2024.108985
Page, J., Zhou, H., Pan, H., Zhou, C., Pei, P., Kalantari, Z., 2024. (Non-)terrestrial and (Non-)local pathways of behavioral policy diffusion in European cities' climate action plans: Contextual, cultural, and leadership framing. Land Use Policy: 147, 107373. https://doi.org/10.1016/j.landusepol.2024.107373
Sanczuk, P., ... Greiser, C., ....et al., 2024. Unexpected westward range shifts in European forest plants link to nitrogen deposition. Science: 386, 6718, 193-198. https://www.science.org/doi/10.1126/science.ado0878
Chen, N.-C., O’Regan, M., Hong, W.-L., Andrén, T., Rodellas, V., Roth, F., Mörth, C.-M., Regnéll, C., Marxen, H.S., ten Hietbrink, S., Huang, T.-H., Gyllencreautz, R., Stranne, C., Linderholm, A., Garcia-Orellana, J., Humborg, C., Jakobsson, M., 2024. Investigation of submarine groundwater discharge into the Baltic Sea through varved glacial clays. Continental Shelf Research: 282, 105337. https://doi.org/10.1016/j.csr.2024.105337
Hällberg, P.L., Smittenberg, R., Kylander, M.E., Villanueva, J., Davtian, N., Hapsari, A., Sjöström, J.K., Axelsson, J., Jarne-Bueno, G., Yamoah, K., Rifai, H., and Schenk, F., 2024. Disentangling seasonal and annual precipitation signals in the tropics over the Holocene: Insights from δD, alkanes and GDGTs. Quaternary Science Reviews: 344, 108948, ISSN 0277-3791. https://doi.org/10.1016/j.quascirev.2024.108948
Hermant, A., Huusko, L., and Mauritsen, T., 2024. Increasing aerosol direct effect despite declining global emissions in MPI-ESM1.2, Atmos. Chem. Phys.: 24, 10707–10715. https://doi.org/10.5194/acp-24-10707-2024.
Stier, P., van den Heever, S. C., Christensen, M. W., Gryspeerdt, E., Dagan, G., Saleeby, S. M., Bollasina, M., Donner, L., Emanuel, K., Ekman, A. M. L., Feingold, G., Field, P., Forster, P., Haywood, J. et al., 2024. Multifaceted aerosol effects on precipitation. Nature Geoscience: 17, 719-732. https://www.nature.com/articles/s41561-024-01482-6.
Li, X., Leizeaga, A., Rousk, J., Zhou, S., Hugelius, G., & Manzoni, S., 2024. Recovery of Soil Microbial Metabolism After Rewetting Depends on Interacting Environmental Conditions and Changes in Functional Groups and Life History Strategies. Global Change Biology: 30(10), e17522. https://doi.org/10.1111/gcb.17522
Jago, S., Elliott, K.F.V.A., Tovar, C. et al., 2024. Adapting wild biodiversity conservation approaches to conserve agrobiodiversity. Nature Sustainability. https://doi.org/10.1038/s41893-024-01427-2
Xu, G., Broadman, E., Dorado-Liñán, I. et al., 2024. Jet stream controls on European climate and agriculture since 1300 ce. Nature. https://doi.org/10.1038/s41586-024-07985-x
Aminjafari, S., Frappart, F., Papa, F., Brown, I., & Jaramillo, F., 2024. Enhancing the temporal resolution of water levels from altimetry using D-InSAR: A case study of 10 Swedish Lakes. Science of Remote Sensing: 10, 100162. https://doi.org/10.1016/j.srs.2024.100162
Aminjafari, S., Brown, I. A., & Jaramillo, F., 2024. Evaluating D-InSAR performance to detect small water level fluctuations in two small lakes in Sweden. Environmental Research Communications: 6(9), 091006. https://doi.org/10.1088/2515-7620/ad7701
Arheimer, B., Cudennec, C., Castellarin, A., Grimaldi, S., Heal, K. V., Lupton, C., ... Jaramillo, F., ... et al., 2024. The IAHS Science for Solutions decade, with Hydrology Engaging Local People IN one Global world (HELPING). Hydrological Sciences Journal: 69(11), 1417–1435. https://doi.org/10.1080/02626667.2024.2355202
Ning, Z., Zhang, J., Hashemi, H., Jaramillo, F., Naghibi, A., Wu, N., et al., 2024. Climate change dominated runoff change in the eastern Tibetan Plateau. CATENA: 245, 108304. https://doi.org/10.1016/j.catena.2024.108304
Han, J., Destouni, G., Jarsjö, J., Zhang, Q., Cantoni, J., and Zhang, C., 2024. Legacy sources determine current water quality: nitrogen and phosphorus in streams of Australia, China, Sweden and USA, Science of the Total Environment: 176407. https://doi.org/10.1016/j.scitotenv.2024.176407
AGU Editorial Network (incl. G Destouni in group authorship), Challenges Facing Scientific Publishing in the Field of Earth & Space Sciences, AGU Advances, 5, e2024AV001334, 2024. https://doi.org/10.1029/2024AV001334
Grodofzig, R., Renoult, M., Mauritsen, T., 2024. Observation-inferred resilience loss of the Amazon rainforest possibly due to internal climate variability. Earth System Dynamics: 15(4), pp. 913–927. https://esd.copernicus.org/articles/15/913/2024
Wharton, J.H., Renoult, M., Gebbie, G., ... Oppo, D.W., Thornalley, D.J.R., 2024. Deeper and stronger North Atlantic Gyre during the Last Glacial Maximum. Nature, 2024, 632(8023), pp. 95–100. https://www.nature.com/articles/s41586-024-07655-y
Andresen, C.S., Karlsson, N.B., Straneo, F., ... Vermassen, F., Gundel, I.E., 2024. Sediment discharge from Greenland’s marine-terminating glaciers is linked with surface melt. Nature Communications: 15(1), 1332. https://www.nature.com/articles/s41467-024-45694-1
Wang, K.J., Huang, Y., Kartzinel, T., ... Andresen, C.S., Vermassen, F., 2024. Group 2i Isochrysidales thrive in marine and lacustrine systems with ice cover. Scientific Reports: 14(1), 11449. https://www.nature.com/articles/s41598-024-62162-4
Salonen, J.S., Kuosmanen, N., Alsos, I.G., Heintzman, P.D., Schenk, F.,... Väliranta, M., Helmens, K.F., 2024. Uncovering Holocene climate fluctuations and ancient conifer populations: Insights from a high-resolution multi-proxy record from Northern Finland. Global and Planetary Change: 237, 104462. https://www.sciencedirect.com/science/article/pii/S0921818124001097?via%3Dihub
Johnson, E., Regnéll, C., Heintzman, P.D., Linderholm, A., 2024. The potential of lacustrine sedimentary ancient DNA for revealing human postglacial recolonization patterns in northern Sweden – a review. Boreas: 53(3), pp. 347–359. https://onlinelibrary.wiley.com/doi/10.1111/bor.12660
Ellenbogen, J.B., Borton, M.A., McGivern, B.B., Crill, P.M., ... Rich, V.I., Wrighton, K.C., 2024. Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrost. mSystems: 9(1). https://journals.asm.org/doi/10.1128/msystems.00698-23
Li, Z., Grant, R.F., Chang, K.-Y., ... Crill, P.M., Riley, W.J., 2024. Soil incubation methods lead to large differences in inferred methane production temperature sensitivity. Environmental Research Letters: 19(4), 044069.
Kuhn, M.A., Varner, R.K., McCalley, C.K., Crill, P.M., ... Turetsky, M.R., Waldrop, M.P., 2024. Controls on Stable Methane Isotope Values in Northern Peatlands and Potential Shifts in Values Under Permafrost Thaw Scenarios. Journal of Geophysical Research: Biogeosciences: 129(7), e2023JG007837. https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023JG007837
Ketzer, M. , Stranne, C. , Rahmati-Abkenar, M. , ... Josefsson, S. , Zillén, L., 2024. Near seafloor methane flux in the world's largest human-induced dead zone is regulated by sediment accumulation rate. Marine Geology: 468, 107220. https://www.sciencedirect.com/science/article/pii/S0025322724000045?via%3Dihub
Żygadłowska, O.M., Roth, F., van Helmond, N.A.G.M., Stranne, C., ... Jetten, M.S.M. , Slomp, C.P., 2024. Eutrophication and Deoxygenation Drive High Methane Emissions from a Brackish Coastal System . Environmental Science and Technology: 58(24), pp. 10582–10590. https://pubs.acs.org/doi/10.1021/acs.est.4c00702
Borg, C.B. , Skelton, A., 2024. A critical utopian shared socioeconomic pathway. Futures: 163, 103437. https://www.sciencedirect.com/science/article/pii/S0016328724001204?via%3Dihub
Lepp, A.P. , Miller, L.E. , Anderson, J.B., O'Regan, M., ... Prothro, L.O. , Podolskiy, E.A., 2024. Insights into glacial processes from micromorphology of silt-sized sediment. Cryosphere: 18(5), pp. 2297–2319. https://tc.copernicus.org/articles/18/2297/2024
Hermans, M., Stranne, C., Broman, E.,... Mörth, C-M., ten Hietbrink, S., ... Jilbert, T., Humborg, C., 2024. Ebullition dominates methane emissions in stratified coastal waters. Science of the Total Environment: 945, 174183. https://www.sciencedirect.com/science/article/pii/S0048969724043316?via%3Dihub
Dahl, M., Gullström, M., Bernabeu, I., ... Kylander, M.E., ... Smittenberg, R., Mateo, M.A., 2024. A 2,000-Year Record of Eelgrass (Zostera marina L.) Colonization Shows Substantial Gains in Blue Carbon Storage and Nutrient Retention. Global Biogeochemical Cycles: 38(3), e2023GB008039. https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023GB008039
Regnéll, C., Peterson Becher, G., Öhrling, C., Greenwood, S.L., Gyllencreutz, R., 2024. Reply to the comment by T. Faulkner on our paper “Ice-dammed lakes and deglaciation history of the Scandinavian Ice Sheet in central Jämtland, Sweden” (C. Regnéll et al.). Quaternary Science Reviews: 328, 108537. https://www.sciencedirect.com/science/article/pii/S0277379124000386?via%3Dihub
Acosta, R.P., Burls, N.J., Pound, M.J., ... de Boer, A.M., Zhang, Z., 2024. A Model-Data Comparison of the Hydrological Response to Miocene Warmth: Leveraging the MioMIP1 Opportunistic Multi-Model Ensemble. Paleoceanography and Paleoclimatology: 39(1), e2023PA004726. https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023PA004726
Steinig, S., Abe-Ouchi, A., de Boer, A.M., ... Meckler, A.N., Lunt, D.J., 2024. DeepMIP-Eocene-p1: multi-model dataset and interactive web application for Eocene climate research. Scientific Data: 11(1), 970. https://www.nature.com/articles/s41597-024-03773-4
Hedberg, P., Olsson, M., Höglander, H., Brüchert, V., Winder, M., 2024. Climate change effects on plankton recruitment from coastal sediments. Journal of Plankton Research: 46(2), pp. 117–125. https://academic.oup.com/plankt/article/46/2/117/7608766
Tsola, S.L., Zhu, Y., Chen, Y., ... Brüchert, V., Eyice, Ö., 2024. Methanolobus use unspecific methyltransferases to produce methane from dimethylsulphide in Baltic Sea sediments. Microbiome: 12(1), 3. https://microbiomejournal.biomedcentral.com/articles/10.1186/s40168-023-01720-w
He, X., Abs, E., Allison, S., Tao, F., Huang, Y., Manzoni, S., Abramoff, R., Bruni, E., Bowring, S., Chakrawal, A., Ciais, P., Elsgaard, L., Friedlingstein, P., Georgiou, K., Hugelius, G., Busk, Holm, L., Li, W., Luo, Y., Marmasse, G., Nunan, N., Qiu, C., Sitch, S., Wang, Y.-P., and Goll, D., 2024. Emerging multiscale insights on microbial carbon use efficiency in the land carbon cycle. Nature Communications: 15, 8010. https://doi.org/10.1038/s41467-024-52160-5
Manzoni, S. and Cotrufo, F., 2024. Mechanisms of soil organic carbon and nitrogen stabilization in mineral associated organic matter – Insights from modelling in phase space. Biogeosciences: 21, 4077–4098.
https://doi.org/10.5194/bg-21-4077-2024
Luo, Z., Ren, J., Manzoni, S., and Fatichi, S., 2024. Temperature controls the relation between soil organic carbon and microbial carbon use efficiency. Global Change Biology: 30(9), e17492. https://doi.org/10.1111/gcb.17492.
Vieira Passos, M., Kan, J.C., Destouni, G., Barquet, K., and Kalantari, Z., 2024. Identifying regional hotspots of heatwaves, droughts, floods, and their co-occurrences. Stoch Environ Res Risk Assess. https://doi.org/10.1007/s00477-024-02783-3
Miao, C., Hu, J., Moradkhani, H., and Destouni, G., 2024. Hydrological research evolution: A large language model‐based analysis of 310,000 studies published globally between 1980 and 2023. Water Resources Research: 60, e2024WR038077. https://doi.org/10.1029/2024WR038077
Ståhl, E., Linderholm, A., and Brüchert, V., 2024. A Spatially Restricted Distribution of Thermophilic Endospores in Laptev Sea Shelf Sediments Suggests a Limited Dispersal by Local Geofluids. Geobiology: 22, 5 September, e12618. https://onlinelibrary.wiley.com/doi/full/10.1111/gbi.12618
Wendisch, M. et al., including Karalis, M. and Svensson, G., 2024. Overview: quasi-Lagrangian observations of Arctic air mass transformations – introduction and initial results of the HALO–(𝒜𝒜 𝒞𝒞) 3 aircraft campaign. Atmos. Chem. Phys.: 23. https://acp.copernicus.org/articles/24/8865/2024.
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Carlsson, I., Rosqvist, G., Wennbom, J.M., Brown, I.A., 2024 Synthetic Aperture Radar Monitoring of Snow in a Reindeer-Grazing Landscape. Remote Sensing: 16, 2329. https://doi.org/10.3390/rs16132329
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Kirchner, N., Weckström, J., Jansen, J., Schenk, F., Barnett, J., Granebeck, A., Leppäranta, M., & Korhola, A., 2024. Water temperature, mixing, and ice phenology in the arctic–alpine Lake Darfáljávri (Lake Tarfala), northern Sweden. Arctic, Antarctic, and Alpine Research: 56:1. DOI: 10.1080/15230430.2023.2287704
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Last updated: 2025-11-26
Source: Bolin Centre for Climate Research