Geohazards Research Unit

Prof. Witold Szczuciński

E-mail: witek@amu.edu.pl
Tel.: 0048-61-829 6025 
Room: 161

Head of Geohazards Research Unit  

Position: professor

Leader of POB01 AgriEarth: Agricultural and Biological Science; Earth and Planetary Sciences within IDUB AMU

Deputy Chair of The Committee of Geological Sciences of the Polish Academy of Sciences

Member of the Steering Committee of PalaeoArc

Member of the Sustainable Development Advisory Team at Adam Mickiewicz University, Poznań  

Member of the Reasearch Council on the Earth and Environmental Sciences of Adam Mickiewicz University, Poznań  

Member of Scientific Council of the Institute of Paleobiology of Polish Academy of Sciences in Warsaw

Member of advisory council of bachelor course „Changes of Earth’s Climate” 

Principal Investigator of TSUNASTORM project

 

Scientific interests

I studied geology (AMU Poznań, Poland) and Coastal Geosciences and Engineering (Kiel University, Germany). My interests include geohazards, sedimentology, marine geology, geochemistry and polar research, however most of my research is interdisciplinary. I study primarily sediments, the processes leading to their formation, and the sedimentary records of climate and environmental changes, especially those related to extreme events (tsunamis, storms, floods, meteorite impacts). I work both on land and at sea, mainly in the polar regions (e.g., Spitsbergen), eastern Asia (e.g., Japan, Thailand and Vietnam) and in Poland. My research employs mostly sedimentological and geochemical methods (including 210Pb and 137Cs dating).       I am also interested in the philosophy of science. 

Publications

2023
  • Majewski, W., Szczuciński, W., Gooday, A.J., 2023 Unique benthic foraminiferal communities (stained) in diverse environments of sub-Antarctic fjords, South Georgia. Biogeosciences v.20 523-544. [link]
  • Pleskot, K., Cwynar, L., Kowalczyk, C.P., Kokociński, M.Sz., Szczuciński, W., 2023 Refining the history of extreme coastal events in southern Newfoundland, NW Atlantic, with lake sediment archives. Quaternary Science Reviews v.322 p. 1-19 [link]
  • Szcześniak, M., Kokociński, M., Jagodziński, R., Pleskot, K., Zajączkowski, M., Szczuciński, W., 2023 Late Holocene Vistula River floods recorded in grain size distributions and diatom assemblages of marine sediments of the Gulf of Gdańsk (Baltic Sea). Palaeogeography, Palaeoclimatology, Palaeoecology v.617 111499 . [link]
  • Ruben, M., Hefter, J., Schubotz, F., Geibert, W., Butzin, M., Gentz, T., Grotheer, H., Forwick, M., Szczuciński, W., Mollenhauer, G., 2023 Fossil organic carbon utilization in marine Arctic fjord sediments by subsurface micro-organisms. Nature Geoscience. [link]

2022

  • Słowiński, M., Orembska, M., Avirmed, D., Woszczyk, M., Adiya, S., Łuców, D.A., Mroczkowska, A., Halaś, A., Szczuciński, W., Kruk, A., Lamentowicz, M.G., Stańczak, J., Rudaya, N., 2022 Fires, vegetation, and human—The history of critical transitions during the last 1000 years in Northeastern Mongolia. Science of the Total Environment v.838  155660. [link]
  • Rozwalak, P., Podkowa, P., Buda, J.A., Niedzielski, P., Kawecki, S., Ambrosini, R., Azzoni, R.S., Baccolo, G., Ceballos, J.L., Cook, J., Di Mauro, B., Ficetola, G,F., Franzetti, A., Ignatiuk, D., Klimaszyk, P., Łokas, E., Ono, M., Parnikoza, I., Pietryka, M., Pittino, F., Poniecka, E., Porazińska, D.L., Ricjter, L., Schmidt, S.K., Sommers, P., Soza-Kasprzyk, J.S., Stibal, M., Szczuciński, W., Uetake, J., Wejnerowski, Ł., Yde, J., Takeuchi, N., Zawierucha, K., 2022 Cryoconite – From minerals and organic matter to bioengineered sediments on glacier’s surfaces. Science of the Total Environment v.807 150874. [link]
  • Rachlewicz, G., Szczuciński, W., 2022 Geologiczna historia Góry Moraskiej. KMP Kronika Miasta Poznania v.2 338-352.
  • Moskalewicz, D., Szczuciński, W., Mroczek, P., 2022 Characterization of storm surge deposits along the shore of the Gulf of Gdańsk (Baltic Sea) applying heavy mineral analysis. Quaternary International v.630 34-47. [link]
  • Losiak, A., Belcher, C.M., Plado, J., Jõeleht, A., Herd, C.D.K., Kofman, R.S., Szokaluk, M., Szczuciński, W., Muszyński, A., Wild, E.M., Baker, S.J., 2022 Small impact cratering processes produce distinctive charcoal assemblages. Geology v.50 1276-1280. [link]
  • Leszczyńska, K., Stattegger, K., Moskalewicz, D., Jagodziński, R., Kokociński, M.S., Niedzielski, P., Szczuciński, W., 2022  Controls on coastal flooding in the southern Baltic Sea revealed from the late Holocene sedimentary records. Scientific Reports v.12 1-14. [link]

2021

  • Brzozowski, M., Kowalewski, G., Szczuciński, W., Kaczmarek, L., Pełechaty, M., 2021. Preliminary evidence of an endangered species benefiting from moderate climate warming: A palaeolimnological study of the charophyte Lychnothamnus barbatusAquatic Conservation: Marine and Freshwater Ecosystems, v.31 2673-2689. [link]
  • Milecka, K., Kowalewski, G., Lewandowska, A, Szczuciński, W., Goslar, T.E., 2021 Coexistence of Lobelia dortmanna and Cladium mariscus, an ecological and paleobotanical study. Acta Palaeobotanica v.61 195-217. [link]
  • Majewski, W., Szczuciński, W., 2021 Wyprawa na Georgię Południową – badania historii klimatu i wielorybnictwa zapisanej w osadach. Biuletyn Polarny v.23-25 8-12. [link]

2020

  • Bellanova, P., Frenken, M., Reicherter, K., Jaffe, B., Szczuciński, W., Schwarzbauer, J. 2020. Anthropogenic pollutants and biomarkers for the identification of 2011 Tohoku-oki tsunami deposits (Japan). Marine Geology, 422: 106117. [link]
  • Dziuba, M.K., Herdegen-Radwan, M., Pluta, E., Wejnerowski, Ł., Szczuciński, W., Cerbin, S. 2020. Temperature increase altered Daphnia community structure in artificially heated lakes: a potential scenario for a warmer future. Scientific Reports, 10: 13956.[link]
  • Engel, M., Schön, I., Patel, T., Pawłowski, J., Szczuciński W., Dawson, S., Garrett, E., Heyvaert, V.M.A., 2020. Chapter 20 – Paleogenetic approaches in tsunami deposit studies. In: Engel, M., Pilarczyk, J., May, S.M., Brill, D., Garrett, E. (eds.)Geological Records of Tsunamis and Other Extreme Waves, Elsevier, 427-442. [link]
  • Jagodziński, R., Sternal, B., Stattegger, K., Szczuciński, W., 2020. Sediment distribution and provenance on the continental shelf off the Mekong River, SE Vietnam: Insights from heavy mineral analysis. Journal of Asian Earth Sciences, 196: 104357. https://doi.org/10.1016/j.jseaes.2020.104357 [link]
  • Jang, K., Bayon, G., Han, Y., Joo, Y.J., Kim, J.H., Ryu, J.S., Woo, J., Forwick, M., Szczuciński, W., Kim, J.H., Nam, S.I., 2020. Neodymium isotope constraints on chemical weathering and past glacial activity in Svalbard. Earth and Planetary Science Letters, 542: 116319. https://doi.org/10.1016/j.epsl.2020.116319 [link
  • Łącka, M., Michalska, D., Pawłowska, J., Szymańska, N., Szczuciński, W., Forwick, M., Zajączkowski, M., 2020. Multiproxy paleoceanographic study from the western Barents Sea reveals dramatic Younger Dryas onset followed by oscillatory warming trend. Scientific Reports, 10: 15667. [link]
  • Moskalewicz, D., Szczuciński, W., Mroczek, P., Vaikutiene, G., 2020. Sedimentary record of historical extreme storm surges on the Gulf of Gdańsk coast, Baltic Sea. Marine Geology, 420: 106084. [link
  • Strzelecki, M.C., Szczuciński, W., Dominiczak, A., Zagórski, P., Dudek, J., Knight, J., 2020. New fjords, new coasts, new landscapes: The geomorphology of paraglacial coasts formed after recent glacier retreat in Brepollen (Hornsund, southern Svalbard). Earth Surface Processes and Landforms, 45(5): 1325-1334.[link]
  • Szczuciński, W., 2020. Chapter 21 – Post-depositional changes to tsunami deposits and their preservation potential. In: Engel, M., Pilarczyk, J., May, S.M., Brill, D., Garrett, E. (eds.) Geological Records of Tsunamis and Other Extreme Waves, Elsevier, 443-469. [link]
  • Szczuciński, W., Muszyński, A., 2020. Meteoryty, kratery uderzeniowe i inne ślady kosmicznej katastrofy w rejonie Moraska pod Poznaniem. Przegląd Geologiczny, 68(8): 637-644.[link]

2019

  • Szokaluk M., Jagodziński R., Muszyński A., Szczuciński W., 2019 – Geology of the Morasko craters, Poznań, Poland – small impact craters in unconsolidated sediments. Meteoritics & Planetary Science. 54 (7): 1478–1494. doi: 10.1111/maps.13290. [link]
  • Lyså, A., Benediktsson, I, O., Emery, A., Gregoire, L., Jennings, A., Morigi, C., Müller, J., O’Regan, M., Sarala, P., Stokes, C., Szczuciński, W., Winsborrow, M., 2019 The First International Conference on ‘Processes and Palaeo-Environmental Changes in the Arctic: From Past to Present’ (PalaeoArc). Geologos v.25 175-179. [link]
  • Vött, A., Bruins, H.J., Gawehn, M., Goodman-Tchernov B.N., De Martini P.M., Kelletat D.; Mastronuzzi G., Reicherter K., Rötbke B.R., Scheffers A., Willershätuser T., Avramidis P., Bellanova P., Costa P.J.M., Finkler C., Hadler H., Koster B., Lario J., Reinhardt E., Mathes-Schmidt M., Ntageretzis K., Pantosti D., Papanikolaou I., Sansò P., Scicchitano G., Smedile A., Szczuciński W., 2019 – Publicity waves based on manipulated geoscientific data suggesting climatic trigger for majority of tsunami findings in the Mediterranean – Response to ‘Tsunamis in the geological record: Making waves with a cautionary tale from the Mediterranean’ by Marriner et al. (2017). Zeitschrift für Geomorphologie, 62, Suppl. 2: 7-45. [link]
  • Zawierucha K., Baccolo G., Di Mauro B., Nawrot A., Szczuciński W., Kalińska E., 2019 – Micromorphological features of mineral matter from cryoconite holes on Arctic (Svalbard) and alpine (the Alps, the Caucasus) glaciers. Polar Science, 22: 100482. [link]

2018

  • Benjamin J.,Rosser N.J., Dunning S.A., Hardy, R.J., Kelfoun K., Szczuciński W., 2018 – Transferability of a calibrated numerical model of rock avalanche run-out: application to 20 rock avalanches on the Nuussuaq Peninsula, West Greenland. Earth Surface Processes and Landforms, 43(15): 3057-3073. doi: 10.1002/esp.4469. [link]
  • Ćwiąkała J., Moskalik M., Forwick M., Wojtysiak K., Giżejewski J., Szczuciński W., 2018 – Submarine geomorphology at the front of the retreating Hansbreen tidewater glacier, Hornsund fjord, southwest Spitsbergen. Journal of Maps, 14(2): 123-134. [link]
  • Gradziński M., Nowak J., Rachlewicz G., Siarzewski W., Strug K., Szczuciński W., 2018 – Ice Caves in Poland. In: A. Perşoiu and S.E. Lauritzen (eds.) Ice Caves,  Elsevier, 493-510. [link]
  • Lyså A., Larsen E.A., Høgaas F., Jensen M.A., Klug M., Rubensdotter L., Szczuciński, W., 2018 – A temporary glacier-surge ice-dammed lake, Braganzavågen, Svalbard. Boreas, 47(3): 837-854. [link]
  • Moskalik M., Ćwiąkała J., Szczuciński W., Dominiczak A., Głowacki O. Wojtysiak K., Zagórski P., 2018 – Spatiotemporal changes in the concentration and composition of suspended particulate matter in front of Hansbreen, a tidewater glacier in Svalbard. Oceanologia, 60(4): 446-463. [link]
  • Pleskot K., Tjallingii R., Makohonienko M., Nowaczyk N., Szczuciński W., 2018 – Holocene paleohydrological reconstruction of Lake Strzeszyńskie (western Poland) and its implications for the central European climatic transition zone. Journal of Paleolimnology, 59(4): 443-459. [link]
  • Telesiński M.M., Przytarska J.E., Sternal B., Forwick M., Szczuciński W., Łącka M., Zajączkowski M., 2018 – Palaeoceanographic evolution of the SW Svalbard shelf over the last 14 000 years. Boreas, 47(2): 410-422.[link]

2017

  • Chagué-Goff C., Szczuciński W., Shinozaki T., 2017 – Applications of geochemistry in tsunami research: A review. Earth-Science Reviews, 165: 203-244. [link]
  • Kirkham J.D., Rosser N.J., Wainwright J., Vann Jones E.C., Dunning S.A., Lane V.S., Hawthorn D.E., Strzelecki M.C., Szczuciński W., 2017 – Drift-dependent changes in iceberg size-frequency distributions. Scientific Reports7, article number: 15991.[link]
  • Pawłowska J.,  Zajączkowski M., Szczuciński W., Zaborska A., Kucharska M., Jernas, P.E., Forwick, M., 2017 – The influence of Coriolis force driven water circulation on the palaeoenvironment of Hornsund (S Spitsbergen) over the last century. Boreas, 46: 737–749. [link]
  • Piotrowski A., Szczuciński W., Sydor P., Kortys B., Rzodkiewicz M., Krzymińska J., 2017 – Sedimentary evidence of extreme storm surge or tsunami events in the sothern Baltic Sea (Rogowo area, NW Poland). Geological Quarterly, 61(4): 973-986.[link]
  • Włodarski W., Papis J., Szczuciński W., 2017 – Morphology of the Morasko crater field (western Poland): Influences of pre-impact topography, meteoroid impact processes, and post-impact alterations. Geomorphology, 295: 586-597. [link]

2016

  • Skolasińska K., Rachlewicz G., Szczuciński W., 2016 – Micromorphology of modern tills in southwestern Spitsbergen – insights into depositional and post-depositional processes. Polish Polar Research, 37(4): 435–456. [link]
  • Szczuciński W., Pawłowska J., Lejzerowicz F., Nishimura Y., Kokociński M., Majewski W., Nakamura Y., Pawlowski J., 2016 – Ancient sedimentary DNA reveals past tsunami deposits. Marine Geology, 381: 29-33. [link]
  • Jagodziński, R., Muszyński, A., Szczuciński, W., Szokaluk, M., 2016 Properties of ejecta blanket deposits surrounding Morasko meteorite impact craters (Poland). Meteoritics & Planetary Science v.51 A610-A610. [link]
  •  

2015

  • Buchwał A., Szczuciński W., Strzelecki M., Long A.J., 2015 – New insights into the 21 November 2000 tsunami in west Greenland from analyses of tree-ring structure of Salix glauca. Polish Polar Research, 36(1): 51-65. [link]
  • Long A.J., Szczuciński W., Lawrence T., 2015 – Sedimentary evidence for a mid-Holocene iceberg-generated tsunami in a coastal lake, west Greenland. Arktos, 1(6), doi: 10.1007/s41063-015-0007-7. [link]
  • Łącka M., Zajączkowski M., Forwick M., Szczuciński W., 2015 – Late Weichselian and Holocene paleoceanography of Storfjordrenna, southern Svalbard. Climate of the Past, 11(3): 587-603. [link]
  • Skolasińska K., Szczuciński W., Mitręga M., Jagodziński R., Lorenc S., 2015 – Sedimentary record of 2010 and 2011 Warta River seasonal floods in the region of Poznań, Poland. Geological Quarterly, 59(1): 47-60. [link]
  • Streuff K., Forwick M., Szczuciński W., Andreassen K., Ó Cofaigh C., 2015 – Submarine landform assemblages and sedimentary processes related to glacier surging in Kongsfjorden, Svalbard. Arktos, 1(14), doi: 10.1007/s41063-015-0003-y. [link]

2014

  • Chagué-Goff C., Wong H.K.Y., Sugawara D., Goff J., Nishimura Y., Beer J., Szczuciński W., Goto K., 2014 – Impact of Tsunami Inundation on Soil Salinisation: Up to One Year After the 2011 Tohoku-Oki Tsunami. In: Tsunami Events and Lessons Learned – Environmental and Societal Significance. Advances in Natural and Technological Hazards Research, 35: 193-214.[link]
  • Drewniak M., Strzelecki M., Szczuciński, W., 2014 – Factors controlling beach development in Vaigat Strait, West Greenland – insights from automated grain size analysis. In: Migała K. (ed.) Diversity and state of polar ecosystems. Results of the 35th Polar Symposium Wrocław, 5-7 of June 2014, University of Wroclaw. [link]
  • Grzelak, K., Szczuciński, W., Kotwicki, L., Sugawara, D., 2014 – Ecological Status of Sandy Beaches After Tsunami Events: Insights from Meiofauna Investigations After the 2011 Tohoku-oki Tsunami, Sendai Bay, Japan. In: Tsunami Events and Lessons Learned – Environmental and Societal Significance. Advances in Natural and Technological Hazards Research, 35: 177-191. [link]
  • Pawłowska J., Lejzerowicz F., Esling P., Szczuciński W., Zajączkowski M., Pawłowski J., 2014 – Ancient DNA sheds new light on the Svalbard foraminiferal fossil record of the last millennium. Geobiology, 12: 277-288. [link]
  • Sternal B., Szczuciński W., Forwick M., Zajączkowski M., Lorenc S., Przytarska J., 2014 – Postglacial variability in near-bottom current speed on the continental shelf off south-west Spitsbergen. Journal of Quaternary Science, 29: 767–777. [link]
  • Unverricht D., Nguyen T.C., Heinrich C., Szczuciński W., Lahajnar N., Stattegger K., 2014 – Suspended sediment dynamics during the inter-monsoon season in the subaqueous Mekong Delta and adjacent shelf, Southern Vietnam. Journal of Asian Earth Sciences, 79: 509-519. [link]
  • Witus A.E., Branecky C.M., Anderson J.B., Szczuciński W., Schroeder D., Blankenship D.D., Jakobsson M., 2014 – Meltwater Intensive Glacial Retreat in Polar Environments and Investigation of Associated Sediments: Example from Pine Island Bay, West Antarctica. Quaternary Science Reviews, 85: 99–118. [link]

2013

  • Lejzerowicz F., Esling P., Majewski W., Szczuciński W., Decelle J., Obadia C., Arbizu P.M., Pawlowski J., 2013 – Ancient DNA complements microfossil record in deep-sea subsurface sediments. Biology Letters, 9(4): No. 20130283. [link]
  • Rachlewicz, G., Szczuciński, W., 2013 – Raised marine terraces in the vicinity of the north part of Billefjorden [Podniesione terasy morskie w otoczeniu północnej części Billefjorden]. In: Ancient and modern geoecosystems of Spitsbergen – Polish geomorphological research [Dawne i współczesne geoekosystemy Spitsbergenu – Polskie badania geomorfologiczne], Zwoliński, Z., Kostrzewski, A., Pulina, M. (eds). Bogucki Wydawnictwo Naukowe, 379-389. [link]
  • Szczuciński W., Jagodziński R., Hanebuth T.J.J., Stattegger K., Wetzel A., Mitręga M., Unverricht D., Phach P.V., 2013 – Modern sedimentation and sediment dispersal pattern on the continental shelf off the Mekong River delta, South China Sea. Global and Planetary Change, 110: 195-213. [link]
  • Unverricht D., Szczuciński W., Stattegger K., Jagodziński R., Le X.T., Kwong L.L.W., 2013 – Modern sedimentation and morphology of the subaqueous Mekong Delta, Southern Vietnam. Global and Planetary Change, 110: 223-235. [link]

2012

  • Chagué-Goff C., Andrew A., Szczuciński W., Goff J., Nishimura Y., 2012 – Geochemical signatures up to the maximum inundation of the 2011 Tohoku-oki tsunami — implications for the 869 AD Jōgan and other palaeotsunamis. Sedimentary Geology, 282: 65-77. [link]
  • Chagué-Goff C., Niedzielski P., Wong H.K.Y., Szczuciński W., Sugawara D., Goff J., 2012 – Environmental impact assessment of the 2011 Tohoku-oki tsunami on the Sendai Plain. Sedimentary Geology, 282: 175-187. [link]
  • Feldens P., Schwarzer K., Sakuna D., Szczuciński W., Sompongchaiyakul P., 2012 – Sediment distribution on the inner continental shelf off Khao Lak (Thailand) after the 2004 Indian Ocean Tsunami. Earth, Planets and Space, 64: 875-887. [link]
  • Jagodziński R., Sternal B., Szczuciński W., Chagué-Goff C., Sugawara D., 2012 – Heavy minerals in the 2011 Tohoku-oki tsunami deposits—insights into sediment sources and hydrodynamics. Sedimentary Geology, 282: 57-64. [link]
  • Majewski, W., Wellner, J.S., Szczuciński, W., Anderson, J.B., 2012 – Holocene oceanographic and glacial changes recorded in Maxwell Bay, West Antarctica. Marine Geology, 326-328: 67-79. [link]
  • Richmond B., Szczuciński W., Chagué-Goff C., Goto K., Sugawara D., Witter R., Tappin D.R., Jaffe B., Fujino S., Nishimura Y., Goff J., 2012 – Erosion, deposition and landscape change on the Sendai coastal plain, Japan, resulting from the March 11, 2011 Tohoku-oki tsunami. Sedimentary Geology, 282: 27-39. [link]
  • Sakuna D., Szczuciński W., Feldens P., Schwarzer K., Khokiattiwong S., 2012 – Sedimentary deposits left by the 2004 Indian Ocean tsunami offshore Khao Lak, Andaman Sea (Thailand). Earth, Planets and Space, 64: 931-943. [link]
  • Szczuciński, W., 2012 – The post-depositional changes of the onshore 2004 tsunami deposits on the Andaman Sea coast of Thailand. Natural Hazards 60(1): 115-133. [link]
  • Szczuciński, W., Kokociński, M., Rzeszewski, M., Chagué-Goff, C., Cachao, M., Goto, K., Sugawara, D., 2012 – Sediment sources and sedimentation processes of 2011 Tohoku-oki tsunami deposits on the Sendai Plain, Japan – insights from diatoms, nannoliths and grain size distribution. Sedimentary Geology, 282: 40-56. [link]
  • Szczuciński, W., Rachlewicz, G., Chaimanee, N., Saisuttichai, D., Tepsuwan, T., Lorenc, S., 2012 – 26 December 2004 tsunami deposits left in areas of various tsunami runup in coastal zone of Thailand. Earth, Planets and Space, 64: 843-858 [link]
  • Szczuciński, W., Zajączkowski, M., 2012 – Factors controlling downward fluxes of particulate matter in glacier-contact and non-glacier contact settings in a subpolar fjord (Billefjorden, Svalbard). Sediments, Morphology and Sedimentary Processes on Continental Shelves: Advances in technologies, research and applications (Special Publication 44 of the IAS), Li M., Sherwood C., Hill P. (eds). Wiley-Blackwell Publishing, 369-386. [link]
  • Yawsangratt S., Szczuciński W., Chaimanee N., Chatprasert S., Majewski W., Lorenc S., 2012 – Evidence of probable paleotsunami deposits on Kho Khao Island, Phang Nga Province, Thailand. Natural Hazards, 63: 151-163. [link]

2011

  • Goto, K., Chagué-Goff, C., Fujino, S., Goff, J., Jaffe, B., Nishimura, Y., Richmond, B., Suguwara, D., Szczuciński, W., Tappin, D.R., Witter, R., Yulianto, E., 2011 – New insights into tsunami risk from the 2011 Tohoku-oki event. Marine Geology 290: 46-50.[link]

2010

  • Zajączkowski, M., Darecki, M., Szczuciński, W., 2010 – Report on the development of the Vistula river plume in the coastal waters of the Gulf of Gdańsk during the May 2010 flood. Oceanologia 52(2):311-317. [link]
  • Zajączkowski, M., Szczuciński, W., Plessen, B., Jernas, P., 2010 – Benthic foraminifera in Hornsund, Svalbard – Implications for paleoenvironmental reconstructions. Polish Polar Research, 31(4): 349-375. [link]

2009

  • Feldens, P., Schwarzer, K., Szczuciński, W., Stattegger, K., Sakuna, D., Somgpongchaiykul, P., 2009 – Impact of the 2004 Indian Ocean tsunami on seafloor morphology and sediments offshore Pakarang Cape, Thailand. Polish Journal of Environmental Studies 18(1): 63-68. [link]
  • Grzelak, K., Kotwicki, L., Szczuciński, W., 2009 – Monitoring of sandy beach meiofaunal assemblages and sediments after the 2004 tsunami in Thailand. Polish Journal of Environmental Studies 18(1): 43-51. [link]
  • Jagodziński, R., Sternal, B., Szczuciński, W., Lorenc, S., 2009 – Heavy minerals in the 2004 tsunami deposits on Kho Khao island, Thailand. Polish Journal of Environmental Studies 18(1):103-110. [link]
  • Kokociński, M., Szczuciński, W., Zgrundo, A., Ibragimow, A., 2009 – Diatom assemblages in 26 December 2004 tsunami deposits from coastal zone of Thailand as sediment provenance indicators. Polish Journal of Environmental Studies18(1): 93-101. [link]
  • Majewski, W., Szczuciński, W., Zajączkowski, M., 2009 – Interactions of Arctic and Atlantic water masses and associated environmental changes during the last millennium, Hornsund (SW Svalbard). Boreas 38(3):529-544. [link]
  • Szczuciński, W., Stattegger, K., Scholten, J., 2009 – Modern sediments and sediment accumulation rates on the narrow shelf off central Vietnam, South China Sea. Geo-Marine Letters 29(1): 47-59. [link]
  • Szczuciński, W., Zajączkowski, M., Scholten, J., 2009 – Sediment accumulation rates in subpolar fjords – impact of post-Little Ice Age glaciers retreat, Billefjorden, Svalbard. Estuarine, Coastal and Shelf Science 85(3): 345-356. [link]
  • Yawsangratt, S., Szczuciński, W., Chaimanee, N., Jagodziński, R., Lorenc, S., Chatprasert, S., Saisuttichai, D., Tepsuwan, T., 2009 – Depositional effects of the 2004 tsunami and hypothetical paleotsunami near Thap Lamu Navy Base in Phang Nga Province, Thailand. Polish Journal of Environmental Studies 18(1): 17-23. [link]
  • Zioła-Frankowska, A., Frankowski, M., Szczuciński, W., Siepak, J., 2009 – Analysis of labile aluminium form in grain size fractions of tsunami deposits in Thailand. Polish Journal of Environmental Studies 18(1): 77-85. [link]

2008

  • Kozak, L., Niedzielski, P., Szczuciński, W., 2008 – The methodology and results of determination of inorganic arsenic species in mobile fractions of tsunami deposits by a hyphenated technique of HPLC-HG-AAS. International Journal of Environmental Analytical Chemistry 88: 989-1003. [link]
  • Rachlewicz, G., Szczuciński, W., 2008 – Changes in thermal structure of permafrost active layer in a dry polar climate, Petuniabukta, Svalbard. Polish Polar Research 29(3): 261-278. [link]
  • Szczuciński, W., 2008 – Potencjalne skutki geologiczne i środowiskowe tsunami na wybrzeżu Bałtyku. In: Rotnicki K., Jasiewicz J., Woszczyk M. [eds] Holoceńskie przemiany wybrzeży i wód południowego Bałtyku – przyczyny, uwarunkowania i skutki. Wydawnictwo Tekst sp. z o. o., Poznań-Bydgoszcz: 119-125. [link]

2007

  • Rachlewicz, G., Szczuciński, W., Ewertowski, M., 2007 – Post-“Little Ice Age” retreat rates of glaciers around Billefjorden in central Spitsbergen, Svalbard. Polish Polar Research 28: 159-186. [link]
  • Szczuciński, W., Niedzielski, P., Kozak, L., Frankowski, M., Zioła, A., Lorenc, S., 2007 – Effects of rainy season on mobilization of contaminants from tsunami deposits left in a coastal zone of Thailand by the 26 December 2004 tsunami. Environmental Geology 53: 253-264 .[link]
  • Szczuciński, W., Rachlewicz, G., 2007 – Geological setting of the Petuniabukta region. Landform Analysis 5: 212-215 and 220. [link]

2006

  • Boszke, L., Kowalski, A., Szczuciński, W., Rachlewicz, G., Lorenc, S., Siepak, J., 2006 – Assessment of mercury mobility and bioavailability by fractionation method in sediments from coastal zone inundated by the 26 December 2004 tsunami in Thailand. Environmental Geology 51: 527-536. [link]
  • Kotwicki, L., Szczuciński, W., 2006 – Meiofauna assemblages and sediment characteristic of sandy beaches on the west coast of Thailand after the 2004 tsunami event. Phuket Marine Biological Centre Research Bulletin 67: 39-47. [link]
  • Szczuciński, W., Chaimanee, N., Niedzielski, P., Rachlewicz, G., Siasuttichai, D., Tepsuwan, T., Lorenc, S., Siepak, J., 2006 – Environmental and geological impacts of the 26 December 2004 tsunami in coastal zone of Thailand – overview of short and long-term effects. Polish Journal of Environmental Studies 15(5): 793-810.[link]

2005

  • Gibas, J. Rachlewicz, G., Szczuciński, W., 2005 – Application of DC resistivity soundings and geomorphological surveys in studies of modern Arctic glacier marginal zones, Petuniabukta, Spitsbergen. Polish Polar Research, 26(4): 239-258. [link]
  • Szczuciński, W., Jagodziński, R., Nguyen, T.T., Kubicki, A., Stattegger, K., 2005 – Sediment dynamics and hydrodynamics during low river discharge conditions in Nha Trang Bay, Vietnam. Meyniana, 57: 117-132.[link]
  • Szczuciński, W., Niedzielski, P., Rachlewicz, G., Sobczyński, T., Zioła, A., Kowalski, A., Lorenc, S., Siepak, J., 2005 – Contamination of tsunami sediments in a coastal zone inundated by the 26 December 2004 tsunami in Thailand. Environmental Geology, 49(2): 321-331.[link]

2004

  • Rachlewicz, G., Szczuciński, W., 2004 – Seasonal, annual and decadal ice mass balance changes in Jaskinia Lodowa w Ciemniaku, the Tatra Mountains, Poland. Theoretical and Applied Karstology, 17: 11-18.[link]
  • Zajączkowski, M., Szczuciński, W., Bojanowski, R., 2004 – Recent changes in sediment accumulation rates in Adventfjorden, Svalbard. Oceanologia, 46: 217-231.[link]

2003

  • Gulińska, J., Rachlewicz, G., Szczuciński, W., Barałkiewicz, D., Kózka, M., Bulska, E., Burzyk, M., 2003 – Soil contamination in the High Arctic Areas of Human Impact, Central Spitsbergen, Svalbard. Polish Journal of Environmental Studies, 12: 701-707.[link]
  • Karczewski, A., Rachlewicz, G., Szczuciński, W., 2003 – Sediment texture in contemporary glacial environment – examples from Hansbreen, southern Spitsbergen. Geologos, 6: 111-131.[link]

2001

  • Szczuciński, W., Stattegger, K., 2001 – Style and rate of shelf sedimentation offshore Nha Trang, Vietnam, South China Sea. Meyniana, 53: 143-162. [link]

2000

  • Jagodziński, R., Lorenc, S., Szczuciński, W., 2000 – Z badań geologicznych na Morzu Południowochińskim. Przegląd Geologiczny, 48: 753-754.[link]
  • Rachlewicz, G., Szczuciński, W., 2000 – Ice tectonics and bedrock relief control on glacial sedimentation – an example from Hansbreen, Spitsbergen. Polish Polar Studies. 27th Polar Symposium: 259-275.[link]
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