使用 D2 气体测量农田土壤的氢沉积速度。

IF 0.8 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Radiation protection dosimetry Pub Date : 2024-11-13 DOI:10.1093/rpd/ncae055
Masaru Nagai, Hideki Kakiuchi, Tsuyoshi Masuda
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引用次数: 0

摘要

本研究以 D2 气体为基质,调查了日本青森县六所村后处理厂周围农田土壤的氢沉积速度。为了确定氢沉积速度,在种植日本萝卜的农田土壤上设置了带风扇的封闭室,并通过气相色谱法测量了室内 D2 浓度的变化。结果表明,六种土壤的氢沉积速度在 1.0 × 10-4 ~ 2.0 × 10-4 m s-1 范围内。实验后在土壤中检测到重水(HDO)的形成,表明 D2 被氧化并转化为水。研究了所获得的氢沉积速度与土壤温度、湿度和孔隙度等环境条件之间的关系。结果发现,氢沉积速度与土壤气相速率之间存在相关性(r = 0.98,p<0.05)。
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Measurements of hydrogen deposition velocities by farmland soil using D2 gas.

Using D2 gas as a substrate, this study investigated the hydrogen deposition velocities of farmland soils around a reprocessing plant located in Rokkasho Village, Aomori, Japan. To determine the hydrogen deposition velocities, closed chambers with fans were set on the soils of farmlands that grow Japanese radishes, and changes in D2 concentration in the chambers were measured by gas chromatography. Results showed hydrogen deposition velocities of six soils were within the range of 1.0 × 10-4 ~ 2.0 × 10-4 m s-1. The heavy water (HDO) formations were detected in the soil after the experiment, showing the oxidation of D2 and conversion to water. Relationships between the obtained hydrogen deposition velocities and environmental conditions such as soil temperature, moisture and porosity were examined. A correlation was found between the hydrogen deposition velocities and soil gas phase rate (r = 0.98, p < 0.05).

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来源期刊
Radiation protection dosimetry
Radiation protection dosimetry 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
1.40
自引率
10.00%
发文量
223
审稿时长
6-12 weeks
期刊介绍: Radiation Protection Dosimetry covers all aspects of personal and environmental dosimetry and monitoring, for both ionising and non-ionising radiations. This includes biological aspects, physical concepts, biophysical dosimetry, external and internal personal dosimetry and monitoring, environmental and workplace monitoring, accident dosimetry, and dosimetry related to the protection of patients. Particular emphasis is placed on papers covering the fundamentals of dosimetry; units, radiation quantities and conversion factors. Papers covering archaeological dating are included only if the fundamental measurement method or technique, such as thermoluminescence, has direct application to personal dosimetry measurements. Papers covering the dosimetric aspects of radon or other naturally occurring radioactive materials and low level radiation are included. Animal experiments and ecological sample measurements are not included unless there is a significant relevant content reason.
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