Abstract
Land snail shells represent a rapidly accumulating, high-resolution terrestrial archive with unique potential for reconstructing past weather-scale environmental changes. To date, studies relied exclusively on the oxygen isotopes in shells, leaving the potential of other proxies (i.e., trace-element ratios) largely unexplored. Here, we present the first in-situ, high-resolution profiles of Na/Ca, Mg/Ca, Sr/Ca, Ba/Ca, and Mn/Ca from modern Cathaica fasciola shells collected from the Chinese Loess Plateau. Na/Ca, Sr/Ca, and Ba/Ca exhibit consistent covariation, likely reflecting shared lattice-substitution behavior and transport pathways, whereas Mg/Ca and Mn/Ca may be more influenced by organic mediation and local calcification dynamics. Trace-element incorporation may be jointly controlled by biological processes and environmental forcing, including growth rate, calcification dynamics and hydro-chemical variability. Weather-scale rainfall events may be associated with transient shifts in soil-solution chemistry that are reflected in the shells as short-term excursions. The frequency of trace-element excursions broadly matches the counts of rainfall occurrence, suggesting a possible link between shell geochemistry and weather-scale hydrological variability. During a “once-in-a-millennium” rainstorm, snail shell Mg/Ca and Mn/Ca exhibited a pronounced spike and a sustained anomaly, respectively, highlighting their sensitivity to extreme events, whereas Na/Ca, Sr/Ca, and Ba/Ca show more reproducible covariation among samples and may be better suited for reconstructing the frequency of weather-scale rainfall event. These results provide preliminary evidence that trace-element in land snail shells may hold potential for tracking environmental variability at weather timescales, though the underlying mechanisms are complex and warrant further study.
| Original language | English |
|---|---|
| Article number | 114035 |
| Journal | Palaeogeography, Palaeoclimatology, Palaeoecology |
| Volume | 699 |
| DOIs | |
| State | Published - 1 Oct 2026 |
| Externally published | Yes |
Keywords
- Land snail shells
- Paleoweather
- Rainstorm
- Trace-element ratios
- Weather-scale
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