粉体工学会誌
Online ISSN : 1883-7239
Print ISSN : 0386-6157
ISSN-L : 0386-6157
52 巻, 5 号
選択された号の論文の4件中1~4を表示しています
論文
  • 東野 元春, 前田 剛志, 福井 国博, 吉田 英人
    2015 年 52 巻 5 号 p. 252-259
    発行日: 2015/05/10
    公開日: 2015/05/28
    ジャーナル フリー
    The accurate particle classification of separation size from 10 to 100μm is required in practical particle handling process. The cut size of louver type separator can be controlled from 10 to 50μm in size range. This report examines the improvement methods of particle separation performance in louver type separator by use of numerical simulation. The several new methods to improve separation performance are found based on simulation and experimental studies. The separation performance of new type louver separator is higher than that of the standard type. It is also found that the separation performance increases by use of flow rectifier section after the inlet flow. The adhesion probability of particle on inclined louver blades was measured experimentally. The adhesion probability indicated maximum value for particle diameter about 15μm. The results of numerical simulation, which includes flow rectifier section and particle adhesion probability, agreed with the experimental data.
  • 吉岡 謙, 神谷 秀博
    2015 年 52 巻 5 号 p. 260-267
    発行日: 2015/05/10
    公開日: 2015/05/28
    ジャーナル フリー
    To activate the photocatalytic behavior of predominantly amorphous TiO2 fine particles, the surfaces of the particles were modified by immersion in sulfuric acid aqueous solutions with different concentration, followed by heating at 525℃ for 1 h. The photocatalytic activity for acetaldehyde decomposition under UV irradiation increased on increasing the sulfuric acid concentration in the solutions used for immersion from 0.001 N to 1 N ; however, intermediate products, such as acetic acid, methanol and formic acid, were generated and remained in the case of immersion in 1 N sulfuric acid aqueous solution. The rate of decomposition of acetaldehyde remarkably increased, without generation of intermediate products, on using 0.001 N sulfuric acid for the immersion of amorphous TiO2 fine particles. Since only immersion in a sulfuric acid aqueous solution did not activate the photocatalytic behavior of rutile TiO2 particles, they were treated with a 3 mass% aqueous solution of hydrogen peroxide, followed by immersion in a 1 N sulfuric acid solution and heat treatment. The rate of decomposition of acetaldehyde under UV irradiation using the surface treated rutile particles was increased about 10 times higher than that of the untreated rutile particles.
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