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Monitoring air pollutants in urbanized hydrothermal areas: challenges and benefits of traditional measurement strategies

Leonardo Fantini; Stefania Venturi; Francesco Capecchiacci; Tullio Ricci; Rebecca Biagi; Franco Tassi
Environmental Geochemistry and Health · Vol. 47, Issue 4 · 2025

Abstract

Carbon- and sulfur-bearing gases are emitted at relevant amounts from hydrothermal manifestations at Tivoli Terme (Latium, central Italy), where different potential anthropogenic contaminant sources also occur. This study presents a geochemical dataset including CO 2 , CH 4 , SO 2, and H 2 S concentrations and δ 13 C-CO 2 and δ 13 C-CH 4 values measured in air at the center of Tivoli town. The main aim was to evaluate the impact on air quality of hydrothermal manifestations and anthropogenic activities employing a traditional stationary monitoring strategy. The analytical results reveal significant air contamination from both natural and anthropogenic emissions, although gas levels were below outdoor air quality thresholds. Carbon dioxide and CH 4 were primarily linked to anthropogenic sources, while hydrothermal emissions played a secondary role. However, H 2 S concentrations up to 282 ppb highlighted a notable impact from hydrothermal emissions surrounding the measurement station, where SO 4 -rich pools are located. Nevertheless, the geochemical data did not provide a reliable estimate of the specific contributions from each source. The study identifies key limitations in relying on a single fixed monitoring station, as weather conditions highly influence it and cannot reliably capture the relative impacts of various sources across a broad area. Additionally, compositional and isotopic geochemical parameters often produce ambiguous results, complicating the differentiation of pollution sources. An integrated approach is recommended, combining mobile stations for periodic pollutant mapping with low-cost instruments deployed at strategic locations near potential sources and progressively farther away. This strategy could better track the spatial and temporal evolution of contaminant concentrations, addressing the shortcomings of current monitoring systems and enhancing mitigation efforts.

Bibliographic Information

JournalEnvironmental Geochemistry and Health
PublisherSpringer
Publication Date2025-04-01
Publication Year2025
Volume47
Issue4
Document TypeJournal Article
Print ISSN0269-4042
eISSN1573-2983
DOI10.1007/s10653-025-02422-y

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NARA Access Coverage1979-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10653
Publisher PageOpen Publisher Page
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