{"id":2061,"date":"2025-08-22T20:50:42","date_gmt":"2025-08-22T17:50:42","guid":{"rendered":"https:\/\/hydro-chemistry-ecology.knu.ua\/?page_id=2061"},"modified":"2025-08-22T20:56:24","modified_gmt":"2025-08-22T17:56:24","slug":"%d1%86%d0%b8%d0%b3%d0%b0%d0%bd%d0%b5%d0%bd%d0%ba%d0%be-%d0%b4%d0%b7%d1%8e%d0%b1%d0%b5%d0%bd%d0%ba%d0%be-%d1%96-%d1%8e-%d0%ba%d1%96%d1%80%d0%b5%d0%b9%d1%86%d0%b5%d0%b2%d0%b0-%d0%b3-%d0%b2-%d1%85","status":"publish","type":"page","link":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/%d1%86%d0%b8%d0%b3%d0%b0%d0%bd%d0%b5%d0%bd%d0%ba%d0%be-%d0%b4%d0%b7%d1%8e%d0%b1%d0%b5%d0%bd%d0%ba%d0%be-%d1%96-%d1%8e-%d0%ba%d1%96%d1%80%d0%b5%d0%b9%d1%86%d0%b5%d0%b2%d0%b0-%d0%b3-%d0%b2-%d1%85\/","title":{"rendered":"TSYHANENKO-DZIUBENKO I.YU., KIREITSEVA H.V., KHAMDOSH I.N., VOVK V.M. BIBLIOMETRIC ANALYSIS OF GLOBAL SEDIMENT RESEARCH: PUBLICATION TRENDS AND DEVELOPMENT DIRECTIONS IN SEDIMENTOLOGY"},"content":{"rendered":"\n<p><strong>DOI: <a href=\"https:\/\/doi.org\/10.17721\/2306-5680.2025.2.1\">https:\/\/doi.org\/10.17721\/2306-5680.2025.2.1<\/a><\/strong><\/p>\n\n\n\n<p><a href=\"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/issn2306-5680-%d0%b3%d1%96%d0%b4%d1%80%d0%be%d0%bb%d0%be%d0%b3%d1%96%d1%8f-%d0%b3%d1%96%d0%b4%d1%80%d0%be%d1%85%d1%96%d0%bc%d1%96%d1%8f-%d1%96-%d0%b3%d1%96%d0%b4%d1%80%d0%be%d0%b5%d0%ba%d0%be%d0%bb-18\/\" target=\"_blank\" rel=\"noreferrer noopener\">Hydrology, Hydrochemistry and Hydroecology. 2025. \u2116 2(76)<br><\/a><strong>Publication language: <\/strong>Ukrainian<br><strong>Authors:<br><\/strong>Tsyhanenko-Dziubenko I.Yu., State University &#8220;Zhytomyr Polytechnic&#8221;<br>Kireitseva H.V., State University &#8220;Zhytomyr Polytechnic&#8221;<br>Khamdosh I.N., State University &#8220;Zhytomyr Polytechnic&#8221;<br>Vovk V.M., State University &#8220;Zhytomyr Polytechnic&#8221;<\/p>\n\n\n\n<p><em>A comprehensive bibliometric analysis of global sediment research for the period 2020-2024 was conducted based on 3,457 scientific publications from the Scopus database using VOSviewer software package for scientific network visualization and cluster analysis. The study encompassed systematization of publications by key terms &#8220;sediment*&#8221;, &#8220;bottom deposit*&#8221;, &#8220;lacustrine sediment*&#8221;, &#8220;marine sediment*&#8221;, &#8220;river sediment*&#8221; with subsequent terminology standardization and relevance verification. Cluster analysis revealed five main thematic groups of modern sedimentology: pollution and toxicity assessment (green cluster), ecosystem processes and biodiversity (red cluster), marine and coastal research (blue cluster), biogeochemical cycles (yellow cluster), and methodological approaches (purple cluster). Advanced data preprocessing protocols ensured temporal consistency and spatial correlation analysis across research domains. The analysis incorporated co-occurrence mapping of keywords, co-citation analysis of influential works, and bibliographic coupling to identify research collaboration patterns. Network visualization parameters were optimized with minimum term occurrence threshold of 5, association strength normalization, and Leiden clustering algorithm with resolution parameter 1.0 for optimal cluster delineation. Geographic analysis demonstrated dominance of USA (1,000 publications, 29%) and China (450 publications, 13%) in global research structure. Thematic classification revealed transformation of sedimentology from geological discipline to integrated environmental science with Environmental Science dominance (39.8% of publications). Temporal dynamics characterized by U-shaped curve with minimum in 2022 (630 publications) and recovery to 706 publications in 2024. Current research directions include heavy metal studies (25-30% of publications), microplastics research (15-20%), and environmental monitoring (20-25%). Emerging development areas encompass artificial intelligence applications, nanopollutant research, microbiome studies, and digital twins of aquatic ecosystems, demonstrating revolutionary potential for transforming methodological approaches and practical applications of sedimentology in sustainable water resource management context. The study provides evidence-based framework for strategic research planning and international collaboration optimization in critical environmental science domains.<\/em><\/p>\n\n\n\n<p><strong><em>Keywords:<\/em><\/strong><em> bibliometric analysis, sediments, sedimentology, VOSviewer, publication activity, aquatic ecosystem pollution, microplastics, heavy metals, environmental monitoring.<\/em><em><\/em><\/p>\n\n\n\n<p><strong>References<\/strong>:<br>1.&nbsp;&nbsp;&nbsp; Bloesch J., Evans R.D. The impact of sediment resuspension on phosphorus cycling in shallow lakes \/\/ Aquatic Sciences. 2006. Vol. 68, No. 2. P. 124-138. DOI: 10.1007\/s00027-006-0740-5<br>2.&nbsp;&nbsp;&nbsp; Salomons W., F\u00f6rstner U. Metals in the hydrocycle. Berlin: Springer-Verlag, 2012. 349 p. DOI: 10.1007\/978-3-642-69325-0<br>3.&nbsp;&nbsp;&nbsp; Liu J., Zhang W., Chen H. Heavy metal contamination in river sediments: spatial distribution and ecological risk assessment \/\/ Environmental Pollution. 2023. Vol. 318. P. 2156-2168. DOI: 10.1016\/j.envpol.2022.120789<br>4.&nbsp;&nbsp;&nbsp; Mart\u00ednez F., Gonz\u00e1lez P., Ruiz A. Mediterranean coastal sediments: pollution patterns and biogeochemical processes \/\/ Marine Environmental Research. 2022. Vol. 175. P. 445-458. DOI: 10.1016\/j.marenvres.2022.105567<br>5.&nbsp;&nbsp;&nbsp; Petersen K., Larsen T., Nielsen B. Bioavailability assessment of heavy metals in contaminated sediments \/\/ Environmental Toxicology and Chemistry. 2023. Vol. 42, No. 4. P. 678-689. DOI: 10.1002\/etc.5234<br>6.&nbsp;&nbsp;&nbsp; Anderson M., Wilson R. Microplastic distribution in North Sea sediments: implications for marine ecosystems \/\/ Marine Pollution Bulletin. 2021. Vol. 167. P. 123-135. DOI: 10.1016\/j.marpolbul.2021.112234<br>7.&nbsp;&nbsp;&nbsp; Tanaka S., Yamamoto K., Sato H. Deep-sea microplastic transport mechanisms in Pacific sediments \/\/ Deep Sea Research Part I. 2022. Vol. 183. P. 234-247. DOI: 10.1016\/j.dsr.2022.103567<br>8.&nbsp;&nbsp;&nbsp; Kowalski P., Schmidt M., Weber J. Microbial communities in lake sediments: carbon and nitrogen cycling \/\/ Applied and Environmental Microbiology. 2023. Vol. 89, No. 8. P. 567-579. DOI: 10.1128\/AEM.01234-23<br>9.&nbsp;&nbsp;&nbsp; Garc\u00eda-L\u00f3pez C., Thompson L., Harrison S. Arctic lake sedimentation and climate change interactions \/\/ Global Change Biology. 2022. Vol. 28, No. 12. P. 345-361. DOI: 10.1111\/gcb.16089<br>10.&nbsp;&nbsp; Brown D., Johnson E. Urban pond sediment quality: pollution assessment and management strategies \/\/ Water Research. 2023. Vol. 231. P. 789-801. DOI: 10.1016\/j.watres.2023.119567<br>11.&nbsp;&nbsp; Lindqvist A. Ecological risk assessment of contaminated sediments: new methodological approaches \/\/ Environmental Science &amp; Technology. 2022. Vol. 56, No. 7. P. 456-468. DOI: 10.1021\/acs.est.1c08234<br>12.&nbsp;&nbsp; Rosenberg T., Mitchell C., Adams K. Paleoecological reconstructions from lake sediment cores \/\/ Quaternary Science Reviews. 2023. Vol. 298. P. 890-905. DOI: 10.1016\/j.quascirev.2022.107234<br>13.&nbsp;&nbsp; Wang X., Li Y. Dam impacts on river sedimentation processes: a comparative study \/\/ River Research and Applications. 2022. Vol. 38, No. 2. P. 234-248. DOI: 10.1002\/rra.3923<br>14.&nbsp;&nbsp; M\u00fcller H., Fischer L., Becker T. Geochemical markers in marine sediments: environmental indicators \/\/ Marine Chemistry. 2023. Vol. 249. P. 678-692. DOI: 10.1016\/j.marchem.2023.104156<br>15.&nbsp;&nbsp; Clark J., Davis M. Remote sensing applications in sediment monitoring: technological advances \/\/ Remote Sensing of Environment. 2022. Vol. 279. P. 123-137. DOI: 10.1016\/j.rse.2022.113089<br>16.&nbsp;&nbsp; Tsyhanenko-Dziubenko I., Kireitseva H., Demchuk L., Vovk V. Hydrochemical Determination of the Teteriv River and the Kamianka River Eutrophication Potential. 17th International Conference Monitoring of Geological Processes and Ecological Condition of the Environment. 2023. No. 1. P. 1-5.<br>17.&nbsp;&nbsp; Tsyhanenko-Dziubenko I., Kireitseva H., Shomko O., Gandziura V., Khamdosh I. Analytical assessment of heavy metals polyelement distribution in urbanized hydroecosystem components: spatial differentiation and migration patterns. Journal Environmental Problems. 2025. Vol. 10(2). P. 135-144.<br>18.&nbsp;&nbsp; Kapelista I., Kireitseva H., Tsyhanenko-Dziubenko I., Khomenko S., Vovk V. Review of Innovative Approaches for Sustainable Use of Ukraine&#8217;s Natural Resources. Grassroots Journal of Natural Resources. 2024. Vol. 7, no. 3. P. 378-395.<br>19.&nbsp;&nbsp; Kireitseva H., Tsyhanenko-Dziubenko I. Antropohenni determinanty dehradatsii hidrokhimichnykh pokaznykiv vodnykh obiektiv [Anthropogenic determinants of degradation of hydrochemical indicators of water objects]. Visnyk Khmelnytskoho natsionalnoho universytetu. Seriia: Tekhnichni nauky. 2025. Tom 349, \u2116 2. S. 540-548. DOI: https:\/\/doi.org\/10.31891\/2307-5732-2025-349-80<br>20.&nbsp;&nbsp; Tsyhanenko-Dziubenko I., Kireitseva H., Herasymchuk O., Skyba H., Khomenko S. Osoblyvosti planuvannia ta realizatsii monitorynhu malykh richok v umovakh urbanizatsii ta viiskovykh dii [Features of planning and implementation of small rivers monitoring under urbanization and military actions conditions]. Naukovyi visnyk KhDU Seriia Heohrafichni nauky. 2024. \u2116 21. URL: https:\/\/doi.org\/10.32999\/ksu2413-7391\/2024-21-4<br>21.&nbsp;&nbsp; Kireitseva H., Tsyhanenko-Dziubenko I., Zamula I., Demchuk L. Analiz stanu ta monitorynh poverkhnevykh vodnykh obiektiv Chernihivskoi oblasti [Analysis of the state and monitoring of surface water objects of Chernihiv region]. Visnyk Kremenchutskoho natsionalnoho universytetu imeni Mykhaila Ostrohradskoho, 2024, Vypusk 1(144), S. 84-91. URL: https:\/\/doi.org\/10.32782\/1995-0519.2024.1.11<\/p>\n\n\n\n<p><a href=\"https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2025\/08\/1-\u0413\u0413\u0413-\u2116276_2025.pdf\" target=\"_blank\" rel=\"noreferrer noopener\">READ THE FULL ARTICLE<br><img loading=\"lazy\" decoding=\"async\" width=\"150\" height=\"44\" class=\"wp-image-853\" style=\"width: 150px;\" src=\"https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535.png\" alt=\"\" srcset=\"https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535.png 5256w, https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535-300x88.png 300w, https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535-1024x299.png 1024w, https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535-768x224.png 768w, https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535-1536x449.png 1536w, https:\/\/hydro-chemistry-ecology.knu.ua\/wp-content\/uploads\/2021\/07\/downloadable-pdf-button-png-hd-image-png-all-download-pdf-png-5256_1535-2048x598.png 2048w\" sizes=\"auto, (max-width: 150px) 100vw, 150px\" \/><\/a><\/p>\n\n\n\n<p>HOW TO CITE<\/p>\n\n\n\n<p>Tsyhanenko-Dziubenko, I.&nbsp;Yu., Kireitseva, H.V., Khamdosh, I.N., Vovk, V.M. (2025). Bibliometric analysis of global sediment research: publication trends and development directions in sedimentology. <em>Hidrolohiia, hidrokhimiia i hidroekolohiia<\/em> [Hydrology, Hydrochemistry and Hydroecology], 2 (76), 6-20 (in Ukrainian, abstr. in English). https:\/\/doi.org\/10.17721\/2306-5680.2025.2.1<\/p>\n","protected":false},"excerpt":{"rendered":"<p>DOI: https:\/\/doi.org\/10.17721\/2306-5680.2025.2.1 Hydrology, Hydrochemistry and Hydroecology. 2025. \u2116 2(76)Publication language: UkrainianAuthors:Tsyhanenko-Dziubenko I.Yu., State University &#8220;Zhytomyr Polytechnic&#8221;Kireitseva H.V., State University &#8220;Zhytomyr Polytechnic&#8221;Khamdosh I.N., State University &#8220;Zhytomyr Polytechnic&#8221;Vovk V.M., State University &#8220;Zhytomyr Polytechnic&#8221; A comprehensive bibliometric analysis of global sediment research for [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-2061","page","type-page","status-publish","hentry"],"translation":{"provider":"WPGlobus","version":"3.0.0","language":"en","enabled_languages":["uk","en"],"languages":{"uk":{"title":true,"content":true,"excerpt":false},"en":{"title":true,"content":true,"excerpt":false}}},"_links":{"self":[{"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/pages\/2061","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/comments?post=2061"}],"version-history":[{"count":3,"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/pages\/2061\/revisions"}],"predecessor-version":[{"id":2066,"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/pages\/2061\/revisions\/2066"}],"wp:attachment":[{"href":"https:\/\/hydro-chemistry-ecology.knu.ua\/en\/wp-json\/wp\/v2\/media?parent=2061"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}