Variations of dissolved trace elements in precipitation and stream water in Japanese forest area: additional evidence of changing air pollution in the region

Author:

Morohashi Masayuki,Saito Tatsuyoshi,Takahashi Masaaki,Inomata Yayoi,Nakata Makoto,Ohno Masaki,Kose Tomohiro,Ohizumi Tsuyoshi,Shin Ki-Cheol,Tayasu Ichiro,Sase Hiroyuki

Abstract

AbstractTrace elements released into the atmosphere by human activities, such as fossil fuel combustion, flow into forest ecosystems via wet and dry deposition and can flow out via mountainous stream water. The Kajikawa catchment site in Niigata Prefecture, located on the Sea of Japan side in central Japan, suffers from large amounts of acidic substance deposition due to its geographical conditions and meteorological seasonality and is affected by transboundary air pollution originating from the Asian continent due to northwesterly seasonal winds in winter. This study determined the concentrations of trace elements dissolved in precipitation and stream water to comprehensively evaluate the effects of transboundary air pollution on forest ecosystems. The results showed that the concentrations of trace elements and major inorganic ions in precipitation tended to be high in winter and low in summer. The fluxes of many trace elements also increased in winter, reflecting high precipitation amount. Except for Sr, the enrichment factors of the highly enriched trace elements did not show clear seasonality. Therefore, they were continuously influenced by anthropogenic activities. Furthermore, the stable Pb isotope ratio changed significantly during the observation period; however, this was not explained by seasonal changes. This study revealed that trace elements are transported to the Sea of Japan side in central Japan, especially in winter; however, their quantity and content change in response to changes in local and transboundary air pollution. Graphical Abstract

Funder

Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Reference54 articles.

1. Avila, A., & Rodrigo, A. (2004). Trace metal fluxes in bulk deposition, throughfall and stemflow at two evergreen oak stands in NE Spain subject to different exposure to the industrial environment. Atmospheric Environment, 38(2), 171–3180. https://doi.org/10.1016/j.atmosenv.2003.09.067

2. Azimi, S., Cambier, P., Lecuyer, I., & Thevenot, D. (2004). Heavy metal determination in atmospheric deposition and other fluxes in Northern France Agrosystems. Water, Air, and Soil Pollution, 157, 295–313. https://doi.org/10.1023/B:WATE.0000038903.25700.5a

3. Bringmark, L., Lundin, L., Augustaitis, A., Beudert, B., Dieffenbach-Fries, H., Dirnböck, T., Grabner, M.-T., Hutchins, M., Kram, P., Lyulko, I., Ruoho-Airola, T., & Vana, M. (2013). Trace metal budgets for forested catchments in Europe—Pb, Cd, Hg, Cu and Zn. Water, Air, and Soil Pollution, 224, 1502. https://doi.org/10.1007/s11270-013-1502-8

4. Brugnone, F., D’Alessandro, W., Parello, F., Brusca, L., Saiano, F., Li, V. L., Sprovieri, M., & Calabrese, S. (2023). Atmospheric deposition around the industrial areas of Milazzo and Priolo Gargallo (Sicily–Italy)—Part B: Trace elements. Atmosphere, 14(4), 737. https://doi.org/10.3390/atmos14040737

5. Castillo, S., De La Rosa, J., Sánchez De La Campa, A., González-Castanedo, Y., & Fernández-Camacho, R. (2013). Heavy metal deposition fluxes affecting an Atlantic coastal area in the southwest of Spain. Atmospheric Environment, 77, 509–517. https://doi.org/10.1016/j.atmosenv.2013.05.046

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