137Cs transport flux to surface water due to shallow groundwater discharge from forest hillslope

Yuma Niwano,Hiroaki Kato, Satoru Akaiwa,Donovan Anderson, Hikaru Iida, Miyu Nakanishi,Yuichi Onda,Hikaru Sato, Tadafumi Niizato

crossref(2023)

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摘要
<p>Groundwater systems and surface water can interact in a complex manner that influences catchment discharge, which then becomes more complex in forest slopes. A large amount of Radioactive cesium (<sup>137</sup>Cs) deposited on forests due to the Fukushima Daiichi Nuclear Power Plant accident remains in terrestrial environments and is transported downstream as suspended or dissolved forms by surface water. Generally, the concentration of dissolved <sup>137</sup>Cs in surface water increases especially during runoff. While the leaching behavior of <sup>137</sup>Cs from contaminated forest materials and soils to surface water has been heavily studied, the influence of <sup>137</sup>Cs concentration in shallow groundwater systems in forest slopes have not been investigated. Therefore, detailed hydrological observations of groundwater on a forest hillslope will enable quantitative analysis of the influence of groundwater flow on the formation of dissolved <sup>137</sup>Cs concentrations in surface water during base flow and during runoff. Our results showed that the dissolved <sup>137</sup>Cs concentration in surface water increases during water discharge. The average concentration of dissolved <sup>137</sup>Cs in shallow groundwater was 0.64 Bq/L, which was higher than that in surface water (average 0.10 Bq/L). Furthermore, it was also observed that a part of the shallow groundwater on the slope moves toward the river channel at the time of water runoff. This suggests that shallow groundwater may have flowed into the surface water during the outflow and contributed to the increase of <sup>137</sup>Cs in the surface water. In this study, the contribution of groundwater in forest slopes to the dissolved <sup>137</sup>Cs concentration in surface water was estimated using the hydrodynamic gradient distribution of groundwater in forest slopes and the measured dissolved <sup>137</sup>Cs concentration in groundwater.</p>
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