Estimation Of The Rate Of Cs-137 Root Uptake Into Stemwood Of Japanese Cedar Using An Isotopic Approach

SCIENCE OF THE TOTAL ENVIRONMENT(2021)

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摘要
Japanese cedar (Cryptomeria japonica) is the main timber species in Japan. The prediction of the temporal changes in the Cs-137 concentration in the stemwood of Japanese cedar after the Fukushima nuclear accident is essential for optimizing forest management in contaminated areas. However, it is difficult to estimate the respective contributions of root and foliar uptake to Cs-137 accumulation in stemwood from simple field measurements, especially in trees that contain the residue of initially-deposited Cs-137. In this study, we devised a method for estimating the rate of Cs-137 root uptake into stemwood using the Cs-133 content in stemwood and the Cs-137/Cs-133 ratio in the exchangeable fraction of soil. As a trial, the method was applied to a cedar stand in Fukushima Prefecture, using available monitoring data from prior studies over 5 years from August 2011 to August 2016. The mean annual rate of Cs-137 root uptake into stemwood over this period was estimated as 53 +/- 20 Bq m(-2) yr(-1). We note that our method likely provided a maximum estimate, because it is based on the assumptions that Cs-133 in wood is exclusively supplied by root uptake, and that Cs isotopes are taken up by roots in the top 5 cm of mineral soil. Moreover, the mean annual increase of the Cs-137 inventory in stemwood during the study period was measured as 108 Bq m(-2) yr(-1), although this value was associated with considerable uncertainty (95% confidence interval from -109 to 324 Bq m(-2) yr(-1)). As a result, the maximum estimated rate of Cs-137 root uptake into stemwood accounted for around half of the measured rate of Cs-137 accumulation in stemwood. Our results show that the Cs isotopic approach has potential to distinguish the main pathway of stemwood contamination (i.e., root vs. foliar uptake) following radioactive fallout. (C) 2020 The Authors. Published by Elsevier B.V.
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关键词
Fukushima Daiichi Nuclear Power Plant accident, Isotopic ratio, Radiocesium, Stable cesium, Translocation
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