The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)

Sandy coasts are one of the most dynamic spheres; continuously changing due to natural processes (severe weather and rising water levels) and human activities (coastal protection or port construction). Coastal geodynamic processes lead to beach sediment erosion or accumulation. The coast’s dynamic t...

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Main Authors: Dovilė Karlonienė, Donatas Pupienis, Darius Jarmalavičius, Aira Dubikaltinienė, Gintautas Žilinskas
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/3/1106
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spelling doaj-16992ac9c27548c3a6d5af4528a933472021-01-26T00:06:23ZengMDPI AGApplied Sciences2076-34172021-01-01111106110610.3390/app11031106The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)Dovilė Karlonienė0Donatas Pupienis1Darius Jarmalavičius2Aira Dubikaltinienė3Gintautas Žilinskas4Faculty of Chemistry and Geosciences, Naugarduko st. 24, LT 03225 Vilnius, LithuaniaFaculty of Chemistry and Geosciences, Naugarduko st. 24, LT 03225 Vilnius, LithuaniaNature Research Centre, Akademijos st. 2, Vilnius LT 08412, LithuaniaFaculty of Chemistry and Geosciences, Naugarduko st. 24, LT 03225 Vilnius, LithuaniaNature Research Centre, Akademijos st. 2, Vilnius LT 08412, LithuaniaSandy coasts are one of the most dynamic spheres; continuously changing due to natural processes (severe weather and rising water levels) and human activities (coastal protection or port construction). Coastal geodynamic processes lead to beach sediment erosion or accumulation. The coast’s dynamic tendencies determine the changes in the volume of beach sediments; grain size; mineralogical; and geochemical composition of sediments. In addition to lithological and mineralogical analysis of sediments, geochemical analysis can provide valuable information about the local and regional patterns of sediment transport, distribution, provenance, and coasts’ conditions. The study aims to assess trace metals’ temporal and spatial distribution determined in the sandy beach sediments along the south-eastern Baltic Sea coast (Lithuania) during 2011–2018. The Lithuanian seacoast is divided into two parts: mainland and spit coast. Our results revealed that the dominant group of elements on the mainland includes Ca–Mg–Mn–Ti and on the Curonian Spit Fe–Pb–As–Co–Cr–Ni–Al, which remain unchanged during the years. The analysis included additional parameters such as beach volume, grain size and sorting, and heavy mineral concentration on the beach. The spatial analysis of trace elements indicated that the trace metal content depends on the coastal processes, but it differs in the mainland and spit sea coast. We identified a higher concentration of trace metals in the erosion-dominated areas in all analysed years on the mainland coast. On the spit coast, the trace metal concentration increased in areas associated with relict coarse sand and where the loading of sediments was active on the beach due to the northward along-shore transport.https://www.mdpi.com/2076-3417/11/3/1106trace metalsbeach sedimentscoastal processeslithology
collection DOAJ
language English
format Article
sources DOAJ
author Dovilė Karlonienė
Donatas Pupienis
Darius Jarmalavičius
Aira Dubikaltinienė
Gintautas Žilinskas
spellingShingle Dovilė Karlonienė
Donatas Pupienis
Darius Jarmalavičius
Aira Dubikaltinienė
Gintautas Žilinskas
The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
Applied Sciences
trace metals
beach sediments
coastal processes
lithology
author_facet Dovilė Karlonienė
Donatas Pupienis
Darius Jarmalavičius
Aira Dubikaltinienė
Gintautas Žilinskas
author_sort Dovilė Karlonienė
title The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
title_short The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
title_full The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
title_fullStr The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
title_full_unstemmed The Impact of Coastal Geodynamic Processes on the Distribution of Trace Metal Content in Sandy Beach Sediments, South-Eastern Baltic Sea Coast (Lithuania)
title_sort impact of coastal geodynamic processes on the distribution of trace metal content in sandy beach sediments, south-eastern baltic sea coast (lithuania)
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-01-01
description Sandy coasts are one of the most dynamic spheres; continuously changing due to natural processes (severe weather and rising water levels) and human activities (coastal protection or port construction). Coastal geodynamic processes lead to beach sediment erosion or accumulation. The coast’s dynamic tendencies determine the changes in the volume of beach sediments; grain size; mineralogical; and geochemical composition of sediments. In addition to lithological and mineralogical analysis of sediments, geochemical analysis can provide valuable information about the local and regional patterns of sediment transport, distribution, provenance, and coasts’ conditions. The study aims to assess trace metals’ temporal and spatial distribution determined in the sandy beach sediments along the south-eastern Baltic Sea coast (Lithuania) during 2011–2018. The Lithuanian seacoast is divided into two parts: mainland and spit coast. Our results revealed that the dominant group of elements on the mainland includes Ca–Mg–Mn–Ti and on the Curonian Spit Fe–Pb–As–Co–Cr–Ni–Al, which remain unchanged during the years. The analysis included additional parameters such as beach volume, grain size and sorting, and heavy mineral concentration on the beach. The spatial analysis of trace elements indicated that the trace metal content depends on the coastal processes, but it differs in the mainland and spit sea coast. We identified a higher concentration of trace metals in the erosion-dominated areas in all analysed years on the mainland coast. On the spit coast, the trace metal concentration increased in areas associated with relict coarse sand and where the loading of sediments was active on the beach due to the northward along-shore transport.
topic trace metals
beach sediments
coastal processes
lithology
url https://www.mdpi.com/2076-3417/11/3/1106
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