粉体工学会誌
Online ISSN : 1883-7239
Print ISSN : 0386-6157
ISSN-L : 0386-6157
60 巻, 5 号
選択された号の論文の7件中1~7を表示しています
論文
  • 橋本 一輝, 山口 哲正, 白井 裕三
    原稿種別: 論文
    2023 年 60 巻 5 号 p. 252-259
    発行日: 2023/05/10
    公開日: 2023/07/01
    ジャーナル フリー

    Contents of three forms of water in coal: free water, bound water, and nonfreezable water were measured with a coal prepared at different humid conditions (23–25°C, 53, 75, 97% relative humidity (RH), as received basis) by using differential scanning calorimetry. The obtained data showed that coal prepared at 97%RH or below contained one or two forms of water: only nonfreezable water or nonfreezable water and bound water. Contents of two forms of water, oxygen-containing functional groups (phenolic hydroxyl and carboxyl groups), specific surface area and pore volume of coals were measured with five coals, and the relationships between the contents of two forms of water and the coal structures were evaluated. It was clarified that the contents of nonfreezable water had good correlations with total contents of the phenolic hydroxyl and carboxyl groups, and the contents of bound water prepared at 97%RH was more correlated with pore volume than specific surface area.

解説
技術資料
  • 藤田 雄大, 藤田 勇仁, 切石 壮, 眞鍋 雄一郎
    原稿種別: 技術資料
    2023 年 60 巻 5 号 p. 275-279
    発行日: 2023/05/10
    公開日: 2023/07/01
    ジャーナル 認証あり

    It was successful to obtain water containing reactive oxygen species with high-concentration by developing novel electrode for the electrolysis of water. The concentration of reactive oxygen species is more than 5 ppm in terms of ozone mass. This concentration is quite high comparing with that of ozone water having obtained by usual methods such as bubbling. We conducted researches to examine the effect of the water on the sanitization of fungus and inactivation of several infective viruses. Then it was clarified that the water with high-concentration reactive oxygen species showed excellent inactivation for at least tested SARS-CoV-2 and Influenza A virus. However the effectiveness of concentration of 2.5 ppm was restricted to show about 90% of Influenza A virus was inactivated. The lower concentration could inactivate less virus and the concentration of 0.5 ppm was not statistically significant comparing with tap water. We successfully developed the atomizer to spray water containing reactive oxygen species. We also conducted researches to clarify the effectiveness of mist spray to space on the sanitization of fungus and inactivation of several infective viruses. Consequently it was revealed that spray of mist containing reactive oxygen species to space is also effective more or less.

新・基礎粉体工学講座
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