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    • 7. 发明专利
    • Liquid of salt composition
    • 盐组分液体
    • JP2010051299A
    • 2010-03-11
    • JP2008243286
    • 2008-08-26
    • Kanmonkai:KkMakoto YafujiYamamoto Tadashi眞 八藤山元 正株式会社関門海
    • YAFUJI MAKOTO
    • A23L3/358A23B4/027A23B7/153A23L3/3472
    • PROBLEM TO BE SOLVED: To provide a liquid of composition of salts, which balances the inner and outer liquids of a cell being the minimum unit of organism and prevents its degradation phenomenon as much as possible. SOLUTION: The high-concentration liquid of salt composition comprises 6.0-10.0 wt.% of a fermented mineral liquid, 7.5-30.0 wt.% of salt, 30.0-50.0 wt.% of sugar and the rest of water. Since the liquid of salt composition is not only efficiently and inexpensively produced for a purpose but also a preferable liquid of salt composition obtained by dilution 30-50 times is approximately isotonic to an animal or plant cell liquid and has excellent mineral balance, the diluted liquid of salt composition has various excellent effects such as neutralization of oxides, revival of mineral balance of inside and outside of cell, retention or restoration of freshness, etc. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供盐的组成液体,其平衡作为生物体的最小单位的细胞的内部和外部液体,并尽可能地防止其降解现象。 解决方案:盐组合物的高浓度液体包含6.0-10.0重量%的发酵矿物液体,7.5-30.0重量%的盐,30.0-50.0重量%的糖和其余的水。 由于不仅为了目的而有效且廉价地生产盐组成的液体,而且通过稀释30-50次获得的盐组合物的优选液体与动物或植物细胞液体近似等渗,并且具有优异的矿物平衡,所述稀释液体 的盐成分具有各种优异的效果,如氧化物的中和,细胞内外的矿物平衡的恢复,保留或恢复新鲜度等。版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Treatment method for recycling of contaminant and its apparatus
    • 污染物回收处理方法及其设备
    • JP2006082045A
    • 2006-03-30
    • JP2004271427
    • 2004-09-17
    • Toru KubotaYamamoto Tadashi亨 久保田山本 正
    • KUBOTA TORU
    • B09B3/00B01J35/02B03C1/00B03C1/10B03C1/23B07B9/00B09B5/00C08J11/16C10B53/00
    • Y02P70/171Y02W30/705
    • PROBLEM TO BE SOLVED: To provide a treatment method for recycling of nonindustrial waste contaminant and to provide its apparatus. SOLUTION: The treatment method of contaminant consists of a pretreatment and a charring carbonization which are carried out in a construction having a whole system connected with duct and a closed structure with a few contacts the air outside. In the pretreatment step, a nonindustrial waste contaminant is dehydrated and pulverized, aluminum and iron components are removed with a magnetic separator, then a catalyst (wherein an active carbon and MgO are dried and mixed) is thrown in and agitated with a stirrer in a drying chamber, and thereafter another pulverization, removal of iron with the magnetic separator and drying are carried out. And in the charring carbonization step, the pretreated material is thrown in a carbonization oven to be carbonized and the carbonized material is cooled to give a product. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供非工业废物污染物的再循环处理方法并提供其设备。 解决方案:污染物的处理方法包括预处理和炭化碳化,其在具有与管道连接的整个系统的结构中进行,并且封闭结构几乎与空气接触。 在预处理步骤中,将非工业废物污染物脱水和粉碎,用磁选机除去铝和铁组分,然后将催化剂(其中活性炭和MgO干燥和混合)投入并用搅拌器搅拌 干燥室,然后进行另一次粉碎,用磁选机除去铁并进行干燥。 在炭化碳化步骤中,将预处理的材料投入碳化炉中以进行碳化,并将碳化材料冷却以产生产物。 版权所有(C)2006,JPO&NCIPI