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    • 93. 发明专利
    • REFLECTED RAY FOCUSING MATERIAL
    • JPS5667804A
    • 1981-06-08
    • JP14522379
    • 1979-11-08
    • TOYO BOSEKI
    • MATSUO TATSUKI
    • F24S10/70F24S23/70G02B5/08
    • PURPOSE:To make the material light in weight, easy to handle and also easy to manufacture, by providing the light reflective metallic surface on the liner surface of corrugated cardboard, and making it bendable in the right angle direction of the waveform of the core, as to the solar light beam focusing material. CONSTITUTION:The reflected ray forcusing material is one face corrugated cardboard formed by the core 1 having a waveform section and the plate liner 2 stuck to only one side of the tip part 1a of this core 1, and it is bent along the top part 1a of the core 1 with the light reflective metallic surface 3 inside as shown with a chain line so that the one-dimensional reflective curved surface 3a can be formed easily. In the available solar heat collector 8 which has been used for said reflected ray focusing material, the solar light beam reflected by the light reflective metallic curved surface 11a of the focusing material 11 is focused, it concentrically irradiates and heats the heat pump 12, the working liquid in the heated heat pump 12 is thermally exchanged with cooling water which has been made to flow into the heating box 9 from the cooling water inflow pipe 9a, and heated hot water is discharged from the hot water outflow pipe 9b.
    • 95. 发明专利
    • LIQUID REACTION SEPARATOR
    • JPS55119439A
    • 1980-09-13
    • JP2686779
    • 1979-03-07
    • TOYO BOSEKI
    • FURUKAWA KAORUMATSUO TATSUKI
    • C01B3/22B01D63/02B01J19/00B01J19/24B01J35/00C01B3/00C01B3/50
    • PURPOSE:To make the rate of reaction faster and prevent side reaction by letting the whole or part of the product of reaction of the fluid having passed through the catalyst layer formed around porous hollow fibers of glass or ceramic permeate into the hollow fibers. CONSTITUTION:A multiplicity of porous hollow fibers 3 of glass or ceramic of outside diameter 2mm or less are bundled to provide the separation system, and the layer of catalysts 16 is formed around the hollow fibers 3. The raw fluid introduced along the arrow A is received from conduit 2 and is distributed in the direction orthogonal to the bundle of the hollow fibers 3 by a porous (or net-form) distributing pipe. This raw fluid reacts by contacting the catalysts 16 and the fluid formed of relatively small molecules permeates through the walls of the fibers 3 and moves into the hollow inside, is gathered by a receiving tray 6 and is recovered in the arrow C' direction. The large molecule fluid is gathered in the arrow B direction from the spacing between the outside peripheral surface of the securing part 4a and the inside peripheral surface of the vessel 5. Since the product of reaction by the catalyst 16 is promptly separated by the fibers 3 of large surface areas, the equilibrium of reaction moves and the rate of reaction increased.