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XAFS analysis of ruthenium in simulated iron phosphate radioactive waste glass

岡本 芳浩; 小林 秀和; 塩飽 秀啓; 捧 賢一; 畠山 清司*; 永井 崇之

Journal of Non-Crystalline Solids, 551, p.120393_1 - 120393_8, 2021/01



福島第一原子力発電所廃炉作業環境における遠隔放射線イメージング技術の開発と実証; 統合型放射線イメージングシステムiRISの構築

佐藤 優樹; 寺阪 祐太; 鳥居 建男

日本原子力学会誌, 62(11), p.645 - 649, 2020/11



Construction of virtual reality system for radiation working environment reproduced by gamma-ray imagers combined with SLAM technologies

佐藤 優樹; 峯本 浩二郎*; 根本 誠*; 鳥居 建男

Nuclear Instruments and Methods in Physics Research A, 976, p.164286_1 - 164286_6, 2020/10

 被引用回数:0 パーセンタイル:100(Instruments & Instrumentation)

The Fukushima Daiichi Nuclear Power Station (FDNPS), operated by Tokyo Electric Power Company Holdings, Inc., experienced a meltdown as a result of a large tsunami caused by the Great East Japan Earthquake on March 11, 2011. At that time, it was necessary to understand the aspects of the decommissioning working environment inside the FDNPS, such as establishing how the radioactive substances were distributed across the site, for work to be done efficiently without exposure to large amounts of radiation. Therefore, virtual reality (VR) emerged as a solution. There have been previous reports done on a technique for visualizing the distribution of radioactive substances in three dimensions utilizing a freely moving gamma-ray imager combined with simultaneous localization and mapping (SLAM) technology. In this paper, we introduce imaging technologies for the acquisition of image data from radioactive substances and three-dimensional (3D) structural models of the working environment, using a freely moving gamma-ray imager combined with SLAM technology. For this research, we also constructed a VR system and displayed the 3D data in a VR space, which enables users to experience the actual working environment without radiation exposure. In creating the VR system, any user can implement this method by donning an inexpensive head-mounted display apparatus and using a free, or low-cost, application software.


Retracted article; Visualization and integration of images of radioactive substances as point cloud data in 3-D environment models

佐藤 優樹; 鳥居 建男

Nuclear Technology, 206(7), p.v - xvi, 2020/07

 被引用回数:1 パーセンタイル:24.17(Nuclear Science & Technology)

The Fukushima Daiichi Nuclear Power Station (FDNPS) suffered a meltdown as a result of a large tsunami triggered by the Great East Japan Earthquake on March 11, 2011. Understanding the distribution of radioactive substances inside the FDNPS is essential to execute appropriate decommissioning tasks. In this paper, we propose method for visualizing three-dimensional (3D) images of radioactive substances as a point cloud data (PCD) and integrating these data into 3D environment models. To demonstrate the usefulness of the proposed methods, a Compton camera was first employed to capture 3D images of radiation sources. The resulting PCD were then integrated into a 3D environment model of a measurement area acquired using the 3D light detection and ranging (LiDAR). This allowed in successful construction of a map to visually recognize the positions of radiation sources.


Monte Carlo radiation transport modelling of the current-biased kinetic inductance detector

Malins, A.; 町田 昌彦; Vu, TheDang; 相澤 一也; 石田 武和*

Nuclear Instruments and Methods in Physics Research A, 953, p.163130_1 - 163130_7, 2020/02

 被引用回数:2 パーセンタイル:8.37(Instruments & Instrumentation)

Radiation transport simulations were used to analyse neutron imaging with the current-biased kinetic inductance detector (CB-KID). The PHITS Monte Carlo code was applied for simulating neutron, $$^{4}$$He, $$^{7}$$Li, photon and electron transport, $$^{10}$$B(n,$$alpha$$)$$^{7}$$Li reactions, and energy deposition by particles within CB-KID. Slight blurring in simulated CB-KID images originated $$^{4}$$He and $$^{7}$$Li ions spreading out in random directions from the $$^{10}$$B conversion layer in the detector prior to causing signals in the $$X$$ and $$Y$$ superconducting Nb nanowire meander lines. 478 keV prompt gamma rays emitted by $$^{7}$$Li nuclei from neutron-$$^{10}$$B reactions had negligible contribution to the simulated CB-KID images. Simulated neutron images of $$^{10}$$B dot arrays indicate that sub 10 $$mu$$m resolution imaging should be feasible with the current CB-KID design. The effect of the geometrical structure of CB-KID on the intrinsic detection efficiency was calculated from the simulations. An analytical equation was then developed to approximate this contribution to the detection efficiency. Detection efficiencies calculated in this study are upper bounds for the reality as the effects of detector temperature, the bias current, signal processing and dead-time losses were not taken into account. The modelling strategies employed in this study could be used to evaluate modifications to the CB-KID design prior to actual fabrication and testing, conveying a time and cost saving.



若井田 育夫; 長谷川 秀一*; 田所 孝広*

日本機械学会誌, 122(1211), p.18 - 20, 2019/10

廃炉国際ワークショップ(FDR 2019) Track4での議論について概説した。放射線計測分野では、耐放射線性を意識した検出素子・検出機器開発、プラントモニタリングへの適用、そして廃炉作業現場で、まず最初に不可欠となる放射線源(汚染源)の可視化(イメージング)技術に関する議論が展開された。検出素子や周辺機器の耐放射線性が確実に進展していること、可視化技術が実用レベルにある状況が報告される一方、その基本が単一フォトン検出手法の領域にあり、高放射線場における高カウントレート核種同定の困難さが改めて認識された。今後の重要課題といえる。レーザー利用計測分野については、特定元素・同位体の選択的共鳴励起・イオン化による質量分析手法の高度化技術と、遠隔その場分析を可能とするLaser Induced Breakdown Spectroscopy(LIBS)等の発光分光技術に関する議論等が展開された。新奇で革新的な手法への挑戦よりも、これまで構築してきた手法を基本とし、その確実性に着眼する方向性が見られ、レーザー分析で重要となる光源の改善検討も含め、実現に向けた取り組みが問われていることが理解できる。



岡本 芳浩; 永井 崇之; 塩飽 秀啓; 狩野 茂; 姫野 晴行*; 小林 大志*; 中谷 三喜雄*

JAEA-Research 2018-013, 18 Pages, 2019/03


模擬廃液を利用したガラス固化体モックアップ試験のうち、高レベル模擬廃液供給20バッチ分の流下ガラス試料中の元素の化学状態および局所構造を、放射光XAFS分析によって調べた。セリウム元素の分析の結果、バッチが進むにつれて、緩やかに酸化が進む傾向が確認された。マンガン, 鉄, 亜鉛については、バッチ間の違いはほとんど認められず、ガラスの骨格構造に入り込んで安定化しているものとみられた。EXAFS解析の結果では、白金族元素を除き、明らかに結晶性と思われる元素は無かった。イメージング分析の結果、ジルコニウムやモリブデンでは、目立った析出はほとんど観察されなかった。白金族元素では、筋状の析出が認められたが、いずれも小さなものであった。


放射光分析技術によるガラス固化技術高度化への貢献; 廃棄物ガラスの化学状態分析から、健全性を証明する構造解析への展開

岡本 芳浩; 永井 崇之; 塩飽 秀啓

溶融塩および高温化学, 62(1), p.11 - 17, 2019/01



Gamma-ray imaging system for Fukushima Daiichi Nuclear Power Plant using silicon strip detector

冠城 雅晃; 佐藤 優樹; 吉原 有里*; 島添 健次*; 高橋 浩之*; 鳥居 建男

Reactor Dosimetry; 16th International Symposium on Reactor Dosimetry (ISRD-16) (ASTM STP 1608), p.405 - 414, 2018/11

 被引用回数:0 パーセンタイル:100

On March 11, 2011, a massive earthquake occurred in the Tohoku region of Japan, and a large tsunami hit the Fukushima Daiichi Nuclear Power Plant (1F), resulting in a nuclear accident. Despite the years that have passed since the accident, decommissioning remains a concern. Radiation measurement techniques are very important for accelerating the decommissioning and ensuring low radiation exposure to workers. Our gamma-ray imaging system is the detection device for determining the three dimensional radioactive distributions of nuclear fuel debris, measuring high-energy gamma rays (greater than 1 MeV). Silicon semiconductor detectors are among the candidate detectors for radiation measurements in our system because of their radiation-hardness and high counting rate capability. We have been developing a stacked amorphous-silicon (Si)/crystal-Si heterojunction Si strip detector, which has 1-mm-pitch striped electrodes (0.5 mm wide) and 1.2-mm-pitch stacked technology. The detector consists of an Si strip mounted on a thin printed circuit board, front-end readout electronics with a complementary metal oxide semiconductor application specific integrated circuit, and a field programmable gate array. The threshold level of energy deposition of each pulse signal in each channel can be set from the application-specific integrated circuit, and gamma-ray images with energy discrimination can be obtained. The energy threshold level for discrimination of $$^{60}$$Co gamma rays from $$^{137}$$Cs gamma rays was investigated experimentally and by means of simulation, and it was found to be about 500 keV. Therefore, our Si strip detector has the required position sensitivity and energy discrimination ability for identifying high-energy gamma-ray source distributions.



上野 一貴*; 鈴木 裕士; 小山 拓*; 西尾 悠平*; 兼松 学*

コンクリート構造物の補修,補強,アップグレード論文報告集(CD-ROM), 18, p.647 - 650, 2018/10




岡本 芳浩; 永井 崇之; 塩飽 秀啓

放射光, 31(4), p.274 - 280, 2018/07




関根 麻里子*; 鈴木 裕士; 兼松 学*

コンクリート工学年次論文集(DVD-ROM), 40(1), p.1545 - 1550, 2018/07




佐藤 優樹; 鳥居 建男

Isotope News, (757), p.44 - 47, 2018/06




甲斐 哲也; 篠原 武尚; 廣井 孝介; Su, Y.; 及川 健一

非破壊検査, 67(5), p.209 - 216, 2018/05




岡本 芳浩; 永井 崇之; 塩飽 秀啓; 猪瀬 毅彦*; 佐藤 誠一*

日本原子力学会和文論文誌, 16(4), p.180 - 190, 2017/12



Development of multi-colored neutron talbot-lau interferometer with absorption grating fabricated by imprinting method of metallic glass

關 義親; 篠原 武尚; Parker, J. D.*; 矢代 航*; 百生 敦*; 加藤 宏祐*; 加藤 秀実*; Sadeghilaridjani, M.*; 大竹 淑恵*; 鬼柳 善明*

Journal of the Physical Society of Japan, 86(4), p.044001_1 - 044001_5, 2017/03

 被引用回数:12 パーセンタイル:20.61(Physics, Multidisciplinary)

パルス中性子源において効率的な位相イメージングを行うために、複数波長で機能する多色Talbot-Lau干渉計を設計・開発した。J-PARC物質・生命科学実験施設のエネルギー分解型中性子イメージング装置「螺鈿」において、中心波長0.25, 0.50, 0.75nmそれぞれに由来する異なるビジビリティーのモアレ縞を同一セットアップで確認することで、その動作原理の実証を行った。さらに、入射波長の波長分解能を18%から50%まで変化させながら、モアレ縞のビジビリティーの減衰を測定し、高波長分解能が実現できるパルスビームの利点を示した。さらに、中心波長0.5nmを用いて、アルミニウム、鉛、銅のロッドをテストサンプルとしたイメージングも行い、吸収像に加えて、境界がエンハンスされた微分位相像、ビジビリティー像も取得することに成功した。この干渉計では、アナライザー用吸収格子の製作方法として、初めて金属ガラスのインプリント法を採用した。中心波長でのモアレ縞のコントラストは68%と良好であり、従来のガドリニウムの斜め蒸着法を用いた格子と比較すると、形状の精密なコントロールが可能である。


Experimental evaluation of neutron absorption grating fabricated by oblique evaporation of gadolinium for phase imaging

關 義親; 篠原 武尚; 上野 若菜; Parker, J. D.*; 佐本 哲雄*; 矢代 航*; 百生 敦*

Physics Procedia, 88, p.217 - 223, 2017/00

 被引用回数:6 パーセンタイル:1.54

Talbot-Lau interferometry with three gratings is a powerful imaging method which produces a radiography image, a differential phase imaging, and a visibility contrast image at one measurement. We develop a new neutron Talbot-Lau interferometer at "RADEN" beam line on the Materials and Life Science Experimental Facility (MLF) in Japan Proton Accelerator Research Complex (J-PARC). Since the alignment condition of Talbot-Lau interferometer allows use of several wavelengths at the same setup of gratings, we can carry out wavelength-resolved phase contrast imaging with time-of-flight measurement. This method utilizes intensive beam of spallation neutron source with avoidance of chromatic aberration at the sample, and gives more detailed sample information depending on wavelength. We have successfully performed Talbot-Lau imaging for several types of metal rods with wavelengths of 2.5, 5.0 and 7.5 A.


Development of micro-structured fluorescent plates for high-resolution imaging

酒井 卓郎; 安田 良; 飯倉 寛; 松林 政仁

JPS Conference Proceedings (Internet), 11, p.020005_1 - 020005_6, 2016/11

We have developed novel fluorescent plates for high-resolution imaging. The devices consist of capillary plates and fine phosphor grains, namely each capillary is filled with the grains. We used the capillary plates (HAMAMATSU, J5112-25D25U1TB) as substrates. The thickness of the plate is 1 mm and the diameter of each hole is 25 $$mu$$m. The phosphor grains are sifted silver-activated zinc sulfide (ZnS:Ag). The mean particle size is approximately 7 $$mu$$m. The fabricated fluorescent plates are observed using an optical microscope and a scanning electron microscope. The observation results show that all capillaries are filled with grains very well. The imaging experiment is performed using a small X-ray source. The results show that the fluorescent plates are expected to be compatible with both spatial resolution and detection efficiency.



呉田 昌俊

化学工学, 80(8), p.464 - 467, 2016/08



Imaging of radiocesium dynamics in soybean by using a high-resolution gamma camera

尹 永根; 河地 有木; 鈴井 伸郎; 石井 里美; 吉原 利一*; 渡部 浩司*; 山本 誠一*; 藤巻 秀

JAEA-Review 2015-022, JAEA Takasaki Annual Report 2014, P. 112, 2016/02

Large areas of agricultural fields were contaminated with radiocesium ($$^{134}$$Cs and $$^{137}$$Cs) in Japan by the accident of The Tokyo Electric Power Company Fukushima Daiichi Nuclear Power Station in March 2011. Many agricultural studies, such as fertilizer management and plant breeding, are undertaken for reducing radiocesium uptake in crops or enhancing of uptake and transportation via phytoremediation. These studies examine the control of radiocesium transport into/within plant bodies from the viewpoint of plant physiology. Radiotracer imaging is one of the few methods that enable the observation of the movement of substances in a living plant, like a video camera, without sampling of the plant tissues. In this study, we performed the imaging of $$^{137}$$Cs uptake and transport from root to aerial part by using a new gamma camera in intact soybean plants because contamination of soybean by radiocesium has currently become a major problem in agriculture in Fukushima.

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