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論文

Water fraction dependence of the aggregation behavior of hydrophobic fluorescent solutes in water-tetrahydrofuran

辻 勇人*; 中畑 雅樹*; 菱田 真史*; 瀬戸 秀紀*; 元川 竜平; 井上 大傑*; 江川 泰暢*

Journal of Physical Chemistry Letters (Internet), 14(49), p.11235 - 11241, 2023/12

 被引用回数:0 パーセンタイル:0.01(Chemistry, Physical)

This work investigates the water-fraction dependence of the aggregation behavior of hydrophobic solutes in water-tetrahydrofuran (THF) and the elucidation of the role of THF using fluorescence microscopy, dynamic light scattering, neutron and X-ray scattering, as well as photoluminescence measurements. Based on the obtained results, the following model is proposed: hydrophobic molecules are molecularly dispersed in the low-water-content region (10-20 vol %), while they form mesoscopic particles upon increasing the water fraction to $$sim$$30 vol percent. This abrupt change is due to the composition fluctuation of the water-THF binary system to form hydrophobic areas in THF, followed by THF-rich droplets where hydrophobic solutes are incorporated and form loose aggregates. Further increasing the water content prompts the desolvation of THF, which decreases the particle size and generates tight aggregates of solute molecules. This model is consistent with the luminescence behavior of the solutes and will be helpful to control the aggregation state of hydrophobic solutes in various applications.

論文

高温ガス炉と水素製造施設の接続技術開発; HTTR-熱利用試験計画

石井 克典; 守田 圭介; 野口 弘喜; 青木 健; 水田 直紀; 長谷川 武史; 永塚 健太郎; 野本 恭信; 清水 厚志; 飯垣 和彦; et al.

第27回動力・エネルギー技術シンポジウム講演論文集(インターネット), 4 Pages, 2023/09

JAEA initiated the HTTR heat application test project coupling a hydrogen production facility to the HTTR (high temperature engineering test reactor). The project aims to establish "coupling technologies" between HTGR and hydrogen production achieving large-scale, stable and economically competitive carbon-free hydrogen production using the HTGR heat. Important considerations towards establishment of coupling technologies are development of system technologies for HTGR hydrogen production systems and components required for coupling between two facilities. This paper explains a system concept of the HTTR heat application system which can maintain safe and stable operation of the HTTR against temperature transients induced by abnormal events in a hydrogen production plant with the results of operational scheme as well as heat and mass balance of the system. Development plans for hot gas duct, high temperature isolation valves and helium gas circulators are also presented.

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