Environmental assessment of urban beaches using geotechnologies in a case study from the Vesuvian coast, Italy

Mariarca D’Aniello , Luca Lämmle , Vinicius Borges Moreira , Ilaria Panero , Archimedes Perez Filho , Carlo Donadio

Anthropocene Coasts ›› 2026, Vol. 9 ›› Issue (1) : 9

PDF
Anthropocene Coasts ›› 2026, Vol. 9 ›› Issue (1) :9 DOI: 10.1007/s44218-025-00119-4
Research Article
research-article

Environmental assessment of urban beaches using geotechnologies in a case study from the Vesuvian coast, Italy

Author information +
History +
PDF

Abstract

Urban beaches are fragile transitional environments increasingly exposed to anthropogenic pressures and natural degradation processes. This study presents for the first time an integrated environmental and morphosedimentary approach of the San Giovanni a Teduccio shoreline, an urban beach located in eastern Naples, Italy, integrating drone imagery, bathymetry, and sediment analysis. UAV-based photogrammetry and bathymetric surveys provided high-resolution spatial data, which were processed using GIS and interpolation tools to construct morphometric and bathymetric models. Surface sediment samples collected along beach transects were analyzed for granulometric composition, grain shape, and microplastic content. Shoreline change analysis revealed a consistent erosional trend, moderately sorted medium to coarse sands, and a high prevalence of anthropogenic debris. Despite urbanization, native psammophilous vegetation persists, playing a crucial role in ecosystem stability. The findings underscore the urgent need for ecologically sound coastal management strategies and offer a replicable framework for analyzing similar urban coastal systems under the pressures of the Anthropocene.

Keywords

Coastal geomorphology / Transitional environments / Sustainable coastal management / Anthropocene coasts

Cite this article

Download citation ▾
Mariarca D’Aniello, Luca Lämmle, Vinicius Borges Moreira, Ilaria Panero, Archimedes Perez Filho, Carlo Donadio. Environmental assessment of urban beaches using geotechnologies in a case study from the Vesuvian coast, Italy. Anthropocene Coasts, 2026, 9(1): 9 DOI:10.1007/s44218-025-00119-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Adomat Y, Kahl M, Musch, F, Grischek T (2022) Evaluation of microplastics sediment sampling techniques—efficiency of common methods and new approaches. Microplastics and Nanoplastics 2(27). https://doi.org/10.1186/s43591-022-00047-x

[2]

Alomar C, Estarellas F, Deudero S. Microplastics in the Mediterranean Sea: deposition in coastal shallow sediments, spatial variation and preferential grain size. Mar Environ Res, 2016, 115: 1-10

[3]

Angelucci A, Palmerini V. Studio sedimentologico delle sabbie rosse di Priverno (Lazio sud-occidentale). Geol Romana, 1964, 3: 203-226

[4]

Antonioli F, Deino A, Esposito A, Silenzi S. Holocene relative sea-level changes and tectonic uplift in the Bay of Naples. Italy Quaternary Science Reviews, 2007, 26(19–21): 2445-2456

[5]

Arienzo M, Bolinesi F, Aiello G, Barra D, Donadio C, Stanislao C, Ferrara L, Mangoni O, Toscanesi M, Giarra A, Trifuoggi M (2020) The Environmental Assessment of an Estuarine Transitional Environment, Southern Italy. J Mar Sci Eng 8(9):628. https://doi.org/10.3390/jmse8090628

[6]

Arienzo M, Donadio C. Microplastic–pharmaceuticals interaction in water systems. J Mar Sci Eng, 2023, 11(7): 1437

[7]

Ascione A, Aucelli PPC, Cinque A, Di Paola G, Mattei G, Ruello M, Ermoli ER, Santangelo N, Valente E (2020) Geomorphology of Naples and the Campi Flegrei: human and natural landscapes in a restless land. J Maps 17(4):18–28. https://doi.org/10.1080/17445647.2020.1768448

[8]

Avanzinelli R, Cioni R, Conticelli S, Giordano G, Isaia R, Mattei M, Melluso L, Sulpizio R. The Vesuvius and the other volcanoes of Central Italy. Geological Field Trips, 2017, 91.11-158

[9]

Balduzzi A, Carniel S, Sclavo M. Morphodynamic behaviour of pocket beaches: a review. Coast Eng, 2014, 88: 7-21

[10]

Barra D, Donadio C, Lämmle L, Perez Filho A, Stamatopoulos L, Valente A, Kontopoulos N, Stanislao C, Parisi R, Aiello G. Morphogenetic and palaeoenvironmental evolution of the lagoon of Kotychi in western Peloponnese, Greece, during the Holocene. Quat Int, 2024, 710: 66-94

[11]

Beck HE, McVicar TR, Vergopolan N, Berg A, Lutsko NJ, Dufour A, Zeng Z, Jiang X, van Dijk AIJM, Miralles DG. High-resolution (1 km) Köppen-Geiger maps for 1901–2099 based on constrained CMIP6 projections. Sci Data, 2023, 10(1): 724

[12]

Bhatt, I D, Negi V S, Rawal R S (2020) Promoting nature-based solution (NbS) through restoration of degraded landscapes in the Indian Himalayan region. In: Gupta A K, Goyal A K, André L (ed) Nature-based solutions for resilient ecosystems and societies. Springer, Singapore pp. 197–211. https://doi.org/10.1007/978-981-15-4712-6_12

[13]

Blott SJ, Pye K. GRADISTAT: a grain size distribution and statistics package for the analysis of unconsolidated sediments. Earth Surf Process Landf, 2001, 26: 1237-1248

[14]

Brandolini P, Cappadonia C, Luberti GM, Donadio C, Stamatopoulos L, Di Maggio C, Faccini F, Stanislao C, Vergari F, Paliaga G, Agnesi V, Alevizos G, Del Monte M. Geomorphology of the Anthropocene in Mediterranean urban areas. Prog Phys Geogr Earth Environ, 2019, 44(4): 461-494

[15]

Buscombe D, Masselink G. Concepts in gravel beach dynamics. Earth-Sci Rev, 2006, 79(1–2): 33-52

[16]

Carofaro G. Rimozione delle microplastiche dalle acque marine, 2023, Tesi di Laurea Magistrale, Università degli Studi di Napoli Federico II

[17]

Cozzolino L, Nicastro KR, Zardi GI, de los Santos CB. Species-specific plastic accumulation in the sediment and canopy of coastal vegetated habitats. Sci Total Environ, 2020, 723 138018

[18]

Cristiano SC, Portz LC, Anfuso G, Rockett GC, Barboza EG. Coastal scenic evaluation at Santa Catarina (Brazil): implications for coastal management. Ocean Coast Manage, 2018, 160: 146-157

[19]

D’Ambrogi C, Pini GA, Scandone P. Geological framework of the Campania Plain and the Bay of Naples, Italy: stratigraphy and tectonics. J Mediterr Geol, 2008, 30(2): 123-138

[20]

de los Santos CB, Krång AS, Infantes E. Microplastic retention by marine vegetated canopies: simulations with seagrass meadows in a hydraulic flume. Environ Pollut, 2021, 269 116050

[21]

Del Vecchio S, Fantinato E, Roscini M, Acosta ATR, Bacchetta G, Buffa G. The germination niche of coastal dune species as related to their occurrence along a sea–inland gradient. J Veg Sci, 2020, 31(3): 477-489

[22]

Delogu Met al.. Environmental and geomorphic aspects of urban beaches of Naples, southern Italy. Bulletin of Regional Natural History, 2024, 3(3): 1-22

[23]

Di Ruocco I, Polverino S, Sivo S, Regalbuto S. Una strategia sostenibile per l’area portuale di San Giovanni a Teduccio. Famagazine Rivista di Architettura e Urbanistica, 2018, 20(2): 141-152

[24]

Folk RL, Ward WC. Brazos River: a study in the significance of grain size parameters. J Sediment Petrol, 1957, 27: 3-26

[25]

Giordano CM, Girelli VA, Lambertini A, Tini MA, Zanutta A. UAV data collection co-registration: LiDAR and photogrammetric surveys for coastal monitoring. Drones, 2025, 9(1): 1-25

[26]

Giraudi C, Ruggieri G, Schillaci C. Quaternary stratigraphy and depositional environments in the Bay of Naples coastal plain. Ital J Geosci, 2005, 124(3): 293-305

[27]

Graham DJ, Midgley NG. Technical communication. Graphical representation of particle shape using triangular diagrams: an Excel spreadsheet method. Earth Surf Process Landf, 2000, 25: 1473-1477

[28]

Köppen W. Köppen W, Geiger R. Das geographische System der Klimate. Handbuch der Klimatologie, 1936, Berlin, Gebrüder Borntraeger44

[29]

Kottek M, Grieser J, Beck C, Rudolf B, Rubel F. World map of the Köppen-Geiger climate classification updated. Meteorol Z, 2006, 15(3): 259-263

[30]

Kraus NC, Rosati J D (1997) Interpretation of Shoreline—Position Data for Coastal Engineering Analysis, Coastal Engineering Technical Note, CETN II-39. U.S. Army, Engineer Research and Development Centre, Vicksburg, MS, USA.

[31]

Lämmle L, Perez Filho A, Donadio C, Arienzo M, Ferrara L, Santos CDJ, Souza AO. Anthropogenic pressure on hydrographic basin and coastal erosion in the delta of Paraíba do Sul River, Southeast Brazil. J Mar Sci Eng, 2022, 10(11): 1585

[32]

Marques ES, Pinheiro L, Claudino-Sales V. Identification and mapping of coastal flooding occurrences in the city of Camocim. Northeast Brazil J Coast Conserv, 2025, 29: 20

[33]

Massari, F. (2021). Storm signature in the Messinian and Pleistocene record of drift- and swash-aligned Mediterranean gravel beaches: Role of precession-driven intensification of the Mediterranean cyclogenesis. Journal of Mediterranean Earth Sciences 13:31–76. https://doi.org/10.13133/2280-6148/17480

[34]

Ocean Vines. (2023). The Seabin Project: An Innovative Initiative to Reduce Ocean Pollution. https://oceanvines.org/the-seabin-project-an-innovative-initiative-to-reduce-ocean-pollution/. Accessed 26 June 2025.

[35]

Panero I, D'aniello M, Jacomini C, Strumia S, Santangelo A, Lämmle L, Cambria VE, Trifuoggi M, Fabrini G, Toscanesi M, Di Natale G, Verga MN, Donadio C. A new green protocol for selecting translocation sites for coastal cliff endemic plants: a case study from southern Italy. J Environ Manage, 2025, 395 127735

[36]

Pennetta M, Brancato VM, De Muro S, Gioia D, Kalb C, Stanislao C, Valente A, Donadio C. Morpho-sedimentary features and sediment transport model of the ‘Pineta della foce del Garigliano’ SCI Site (Caserta, southern Italy). J Maps, 2016, 12S1139-146

[37]

Petropoulos A, Kapsimalis V, Evelpidou N, Giannikopoulou K, Syrides G. Simulation of the nearshore sediment transport pattern and beach morphodynamics in the semi-enclosed bay of Myrtos, Cephalonia Island, Ionian Sea. Journal of Marine Science and Engineering, 2022, 10(8): 1015

[38]

Petrosino P, Angrisani AC, Barra D, Donadio C, Aiello G, Allocca V, Coda S, De Vita P, Jicha BR, Calcaterra D. Multiproxy approach to urban geology of the historical center of Naples, Italy. Quat Int, 2021, 577: 147-165

[39]

Pica A, Lämmle L, Burnelli M, Del Monte M, Donadio C, Faccini F, Lazzari M, Mandarino A, Melelli L, Perez Filho A, Russo F, Stamatopoulos L, Stanislao C, Brandolini P. Urban geomorphology methods and applications as a guideline for understanding the city environment. Land, 2024, 13: 907

[40]

Prata JC, da Costa JP, Lopes I, Duarte AC, Rocha-Santos T. Environmental exposure to microplastics: an overview on possible human health effects. Sci Total Environ, 2020, 702 134455

[41]

Quadrado GP, Dillenburg SR, Goulart ES, Barboza EG. Historical and geological assessment of shoreline changes at an urbanized embayed sandy system in Garopaba, Southern Brazil. Reg Stud Mar Sci, 2021, 42 101622

[42]

Rafique A, Mahmood M S, Abbas R Z, Ashraf A, Nasir S, Jabeen F, Sultana T, Sultana S, Abbas G, Luqman M, Abbas A, Albaayit S F A (2021) Analysis of different factors contributing the rodent infestations in urban areas in Faisalabad, Pakistan. Pakistan Journal of Agricultural Sciences 58(4): 1197–1203. https://doi.org/10.21162/PAKJAS/21.132

[43]

Ricci Lucchi F. Introduction to sedimentology, 1980, Bologna, Zanichelli

[44]

Rodella S, Bianchi M, Tognaccini R. Urban beaches and sustainable tourism: balancing ecosystem services and human impacts. Coast Manage, 2019, 47(5): 413-429

[45]

Rolandi G, Paone A, Di Lascio M, Calcaterra D. Eruptive history of Somma-Vesuvius stratovolcano, Italy (25 ky–Present). J Volcanol Geoth Res, 2008, 177(4): 313-328

[46]

Romano G, Ricci GF, Leronni V, Venerito P, Gentile F. Soil bioengineering techniques for Mediterranean coastal dune restoration using autochthonous vegetation species. J Coast Conserv, 2022, 26 71

[47]

Rossi Met al.. A new green protocol for the identification of microplastics and microfibers in marine sediments, a case study from the Vesuvian coast, southern Italy. J Hazard Mater, 2024, 477 135272

[48]

Scarelli FM, Cantelli L, Barboza EG, Rosa MLCC, Gabbianelli G. Natural and anthropogenic coastal system comparison using DSM from a low cost UAV survey (Capão Novo, RS/Brazil). J Coast Res, 2016, 75: 1232-1236

[49]

Scarelli FM, Sistilli F, Fabbri S, Cantelli L, Barboza EG, Gabbianelli G. Seasonal dune and beach monitoring using photogrammetry from UAV surveys to apply in the ICZM on the Ravenna coast (Emilia-Romagna, Italy). Remote Sens Appl Soc Environ, 2017, 7: 27-39

[50]

Seabin Project (2023) Annual Impact Report 2023. https://seabin.io/how. Accessed 20 June 2025

[51]

Sembiring E, Fajar M, Handajani M. Performance of rapid sand filter – single media to remove microplastics. Water Supply, 2021, 21(5): 2273-2284

[52]

Silva R. Urban coastal dynamics and the role of beaches in city environments. Environ Sci Policy, 2017, 7: 44-50

[53]

Thepsiriamnuay H, Pumijumnong N. Sandy beach erosion: impacts and adaptation strategies in Thailand. Environ Dev Sustain, 2024

[54]

Trewartha G, Horn L. Introduction to climate, 19805Michigan, McGraw-Hill

[55]

Tripathi RN, Ghazi MG, Badola R, Hussain SA. Feasibility study of UAV based ecological monitoring and habitat assessment of cervids in the floating meadows of Keibul Lamjao National Park in Manipur, India. Measurement, 2024, 229 114411

[56]

Valente M. Beaches as social and economic assets in Mediterranean urban areas. Tour Manage, 1999, 20(2): 225-234

[57]

Valente E, Allocca V, Riccardi U, Camanni G, Di Martire D. Studying a subsiding urbanized area from a multidisciplinary perspective: the inner sector of the Sarno Plain (Southern Apennines, Italy). Remote Sens, 2021, 13(16): 3323

[58]

Wolff S, Weber F, Kerpen J, Winklhofer M, Engelhart M, Barkmann L. Elimination of microplastics by downstream sand filters in wastewater treatment. Water, 2021, 13133

[59]

Wulandari M, Marpaung K, Prasaningtyas A, Yorika R, Harfadli MM, Zulfikar A. Performance of rapid sand filter dual media for microplastic removal in the water: the effect of microplastic size and effective size of filter media. Journal of Community Based Environmental Engineering and Management, 2024, 81103-110

[60]

Xiao S, Udo K, Zhang Y (2024) Assessment of beach vulnerability to coastal erosion in China considering protective measures in beach area. In: Xiao S, Udo K, Zhang Y (ed) Proceedings of the 11th International Conference on Asian and Pacific Coasts, Springer, pp. 747–755. https://doi.org/10.1007/978-981-99-7409-2_68

[61]

Zanutta A, Lambertini A, Vittuari L. Uav photogrammetry and ground surveys as a mapping tool for quickly monitoring shoreline and beach changes. J Mar Sci Eng, 2020, 8(1): 1-16

Funding

Fundação de Amparo à Pesquisa do Estado de São Paulo(2024/17682-1)

RIGHTS & PERMISSIONS

The Author(s)

PDF

4

Accesses

0

Citation

Detail

Sections
Recommended

/