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    • 5. 发明专利
    • FISH SCRAP TREATING EQUIPMENT AND FISH SCRAP TREATING METHOD
    • JP2002018393A
    • 2002-01-22
    • JP2000202274
    • 2000-07-04
    • KIMURA KAKOKI CO LTDYOSHIDA HIROYUKI
    • TANIGUCHI KATSUHIROIKEDA HIROSHIYAMAKAWA YOSUKE
    • B09B3/00
    • PROBLEM TO BE SOLVED: To provide fish scrap treating equipment and a fish scrap treating method capable of efficiently recovering useful materials from fish scrap (mainly fish meat, entrails, bones, scales, etc.). SOLUTION: This device is equipped with a breaker 10, a first reactor 110 which heats minced raw materials to 150 to 210 deg.C, a first separating means 130 which separates the reaction treatment products subjecting to a hydrothermal reaction in the first reactor 110 to a water phase, solid phase and oil phase or separates the same to the oil phase and the phases exclusive of the oil phase, a recovering means 150 which recovers water-soluble useful components, such as phosphoric acid and lactic acid, from the water phase separated by the first separating means or recovers the oil phase separated in the first separating process step, a second reactor 120 which heats the mixture composed of the solid phase and oil phase separated by the first separating means and the water phase after recovering the water-soluble useful components by the recovering means or the phase exclusive of the oil phase separated by the first separation to 230 to 280 deg.C and a second separating means 140 which separates the useful materials from the reaction treatment products subjected to the hydrothermal reaction in the second reactor 120.
    • 9. 发明专利
    • FIBERBOARD AND MANUFACTURE THEREOF
    • JP2001071311A
    • 2001-03-21
    • JP25124099
    • 1999-09-06
    • KIMURA KAKOKI CO LTD
    • TAJIRI TADAAKIYAMAGAMI MASATAKAKANZAWA YASUHIRO
    • B27N3/04B27N3/08
    • PROBLEM TO BE SOLVED: To economically manufacture a regenerated fiberboard with specified properties by blending a fiberlike waste paper fibrillated material and a Kenaf fibrillated material obtained by dry fibrillating a waste paper raw material and a Kenaf bark respectively at a specified ratio and thermally compressing and molding the mixed raw material to which a binder is added. SOLUTION: A waste paper fibrillated material obtained by dry fibrillating waste paper and a fiberlike Kenaf fibrillated material obtained by soaking Kenaf in water for a specified time, then peeling its bark and dry fibrillating the bark, are blended at a specified ratio. Further, 4-12 wt.% isocyanate adhesive based on a dry weight reference are added to the mixed fibrillated material as a binder and are developed in a layer fashion to be thermally compressed at a specified temperature and pressure into a boardlike molding. The bending strength of the fiberboard is increased in proportion to an increase in the addition amount of the Kenaf. The preferable addition amount of the Kenaf fibrillated material is 5-30 wt.%. Thus it is possible to efficiently manufacture the fiberboard which shows high bending strength, high Young's modulus and outstanding mechanical properties, compared with the case with the use of only the waste paper.