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    • 1. 发明专利
    • Apparatus for treating concrete sludge
    • 用于处理混凝土污泥的设备
    • JP2009279552A
    • 2009-12-03
    • JP2008136353
    • 2008-05-26
    • Nippon Concrete Ind Co LtdYukio Yanagisawa日本コンクリート工業株式会社柳 沢 幸 雄
    • HAYAKAWA YASUYUKIHONMA MASAHITOOGAWA UTAROYANAGISAWA YUKIOIIZUKA ATSUSHI
    • C02F11/12B01D9/02
    • PROBLEM TO BE SOLVED: To provide an apparatus for treating concrete sludge which can separate and recover high purity calcium carbonate from concrete sludge.
      SOLUTION: The apparatus for treating concrete sludge is provided with a sludge separating device 2 which separates a sludge cake and a sludge liquid from the concrete sludge generated in the process of centrifugally-forming concrete, a deposition reaction device 3 for depositing calcium carbonate from the sludge liquid and a calcium carbonate separating device 5 for separating calcium carbonate from a deposition liquid from which calcium carbonate is deposited. The deposition reaction device 3 possesses a deposition reaction device body 13 made of an ordinary pressure container. The deposition reaction device body 13 is provided with a seed crystal feed means 14 for feeding the seed crystal of calcium carbonate into the deposition reaction device body 13, a carbon dioxide feed means 15 for feeding carbon dioxide into the deposition reaction device body 13, and a dispersion means 19 for dispersing the content of the deposition reaction device body 13.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于处理可以从混凝土污泥中分离和回收高纯度碳酸钙的混凝土污泥的设备。 解决方案:用于处理混凝土污泥的设备设置有污泥分离装置2,其将污泥饼和污泥液体从离心成型混凝土的过程中产生的混凝土污泥中分离出来,沉积反应装置3用于沉积钙 来自污泥液体的碳酸盐和用于从碳酸钙沉积的沉积液中分离碳酸钙的碳酸钙分离装置5。 沉积反应装置3具有由普通压力容器制成的沉积反应装置主体13。 沉积反应装置主体13设置有用于将碳酸钙晶种供给到沉积反应装置主体13中的晶种进料装置14,用于将二氧化碳供入沉积反应装置主体13的二氧化碳进料装置15,以及 分散装置19,用于分散沉积反应装置主体13的内容物。版权所有:(C)2010,JPO&INPIT
    • 2. 发明专利
    • Apparatus for treating concrete sludge
    • 用于处理混凝土污泥的设备
    • JP2009136770A
    • 2009-06-25
    • JP2007315797
    • 2007-12-06
    • Nippon Concrete Ind Co LtdYukio Yanagisawa日本コンクリート工業株式会社柳 沢 幸 雄
    • HAYAKAWA YASUYUKIHONMA MASAHITOYANAGISAWA YUKIOIIZUKA ATSUSHI
    • B09B3/00B01D9/02C02F11/00
    • PROBLEM TO BE SOLVED: To provide an apparatus for treating concrete sludge which can separate and recover high purity calcium carbonate from concrete sludge. SOLUTION: The apparatus for treating concrete sludge 1 is provided with an elution-reaction device 2 eluting calcium from the concrete sludge to a liquid and a decomposition-reaction device 3 decomposing calcium carbonate from the liquid eluting calcium. The elution-reaction device 2 and the decomposition-reaction device 3 are so connected that the liquid may circulate in a first passage route 4, a second passage route 5 and a third passage route 6. A device for separating calcium carbonate 7 separating calcium carbonate from the liquid decomposing calcium carbonate is installed in the passage route 5. A device for separating silicon dioxide 8 separating silicon dioxide from the liquid eluting calcium is installed in the third passage route 6. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于处理可以从混凝土污泥中分离和回收高纯度碳酸钙的混凝土污泥的设备。 解决方案:用于处理混凝土污泥1的设备设置有洗脱反应装置2,其将钙从混凝土淤泥洗脱到液体;以及分解反应装置3,从液体洗脱钙分解碳酸钙。 洗脱反应装置2和分解反应装置3连接成使得液体可以在第一通道4,第二通道5和第三通道6中循环。用于分离碳酸钙7的分离装置 来自液体分解碳酸钙的装置安装在通道5中。在第三通道6中安装用于分离二氧化硅从液体洗脱钙分离二氧化硅8的装置。(C)2009年,JPO&INPIT
    • 4. 发明专利
    • Process for producing calcium carbonate and apparatus for producing calcium carbonate
    • 生产碳酸钙的方法和生产碳酸钙的装置
    • JP2014148432A
    • 2014-08-21
    • JP2013017455
    • 2013-01-31
    • Nippon Concrete Ind Co Ltd日本コンクリート工業株式会社Akihiro Yamazaki章弘 山崎Atsushi Iizuka淳 飯塚
    • YAMAZAKI AKIHIROIIZUKA ATSUSHIHAYAKAWA YASUYUKIHONMA MASAHITOYOSHIDA HIROYUKI
    • C01F11/18C02F11/00
    • PROBLEM TO BE SOLVED: To provide a process for producing calcium carbonate which enables production of calcium carbonate of high purity from concrete waste containing unsolidified cement fine particles.SOLUTION: The concrete waste is subjected to solid-liquid separation by solid-liquid separation means 2, and is separated into a cement-containing liquid, which includes at least a part of cement fine particles, and a solid content. Furthermore, the cement-containing liquid is supplied into a precipitation reaction tank 10 by cement-containing liquid supplying means 11, and carbon dioxide is supplied into the precipitation reaction tank 10 by carbon dioxide supplying means 14. Then, in the precipitation reaction tank 10, calcium contained in the cement-containing liquid and cement fine particles is reacted with carbon dioxide, and calcium carbonate is allowed to crystallize out on the surface of the cement fine particles. Further, the thus crystallized calcium carbonate is separated and recovered by calcium carbonate separation means 4.
    • 要解决的问题:提供一种生产碳酸钙的方法,其能够从含有未固化的水泥细颗粒的混凝土废料中制备高纯度的碳酸钙。解决方案:混凝土废料通过固液分离装置2进行固液分离 并分离成包含水泥微粒的至少一部分的固含量的含水泥液体。 此外,含水泥液体由含水泥液体供给单元11供给到析出反应槽10中,二氧化碳通过二氧化碳供给单元14供给到沉淀反应槽10.然后,在析出反应槽10 ,含水泥液体中含有的钙和水泥微粒与二氧化碳反应,使碳酸钙在水泥微粒表面析出。 此外,这样结晶的碳酸钙由碳酸钙分离装置4分离和回收。
    • 5. 发明专利
    • Geopolymer cured product and method for manufacturing the same
    • GEOPOLYMER固化产品及其制造方法
    • JP2014125375A
    • 2014-07-07
    • JP2012282877
    • 2012-12-26
    • Nippon Concrete Ind Co Ltd日本コンクリート工業株式会社
    • HONMA MASAHITO
    • C04B28/26C01B33/26C04B14/30C04B18/10C04B18/14C04B22/06
    • Y02P40/165Y02W30/92Y02W30/94
    • PROBLEM TO BE SOLVED: To provide a geopolymer cured product unlikely to entail, even if a boron ore is included therein, strength attenuations and suitable for long-term uses.SOLUTION: A geopolymer including an aluminosilicate oxide as a main component is mixed with a boron ore. The curing of the geopolymer progresses as a result of the polymerization of a metal eluted from a filler with a silicic acid complex of a geopolymer liquid. The geopolymer is impervious to curing hindrances attributed to the elution of BOfrom the boron ore. The strength of the geopolymer cured product therefore manifests even if a finely granulated boron ore is dispersed therein without entailing the hindrance of the curing thereof. Moreover, it is desirable to use boron ore particles having diameters of 20 mm or less since they can be homogeneously dispersed. Moreover, it is desirable, from the standpoint of facilitating the manifestation of superior strength, to heat and cure, after a yet-to-be-solidified geopolymer has been filled into a frame mold, the filled geopolymer at 40°C or above and 100°C or below.
    • 要解决的问题:为了提供即使含有硼矿石也不可能实现的地质聚合物固化产品,强度衰减并且适合长期使用。解决方案:将包含铝硅酸盐氧化物作为主要成分的地质聚合物与 硼矿石。 地质聚合物的固化是通过用填料与地质聚合物液体的硅酸复合物进行聚合反应而进行的。 地质聚合物不利于由硼矿石洗脱出来的固化阻碍。 因此,即使细颗粒的硼矿石分散在其中而不会妨碍其固化,因此地质聚合物固化产物的强度也显现出来。 此外,由于可以均匀分散,因此优选使用直径为20mm以下的硼矿石粒子。 此外,从促进优异强度的表现为热固化的观点出发,在将待固化的地质聚合物填充到框架模具中之后,优选在40℃以上的填充的地质聚合物和 100℃以下。
    • 7. 发明专利
    • Geopolymer composition
    • 地球化学组合物
    • JP2014040332A
    • 2014-03-06
    • JP2012182221
    • 2012-08-21
    • Nippon Concrete Ind Co Ltd日本コンクリート工業株式会社
    • HONMA MASAHITO
    • C04B28/26C04B18/08C04B18/14
    • Y02P40/165Y02W30/92Y02W30/94
    • PROBLEM TO BE SOLVED: To provide a geopolymer composition capable of facilitating the securing of a fluid time necessary for manufacturing a precast product and of facilitating, even at a low curing temperature, the manifestation of a strength necessary for the release of the precast product.SOLUTION: The provided composition contains an aluminosilicate oxide produced by mixing a filler and a monomer. The filler includes fly ash and a slag powder. The ratio, within the filler, of the fly ash and slag powder is adjusted in light of the fluidity-sustainable time of the geopolymer composition and the strength thereof at the time of release. In a case where the ratio of the fly ash and slag powder is thus adjusted, the manifestation of the strength of the geopolymer composition is facilitated even at a relatively low thermal curing temperature, and therefore, the thermal curing can be performed at a temperature unlikely to entail the degradation of a waxy release agent or filming release agent. It is desirable, in particular, to adjust the ratio, in terms of mass ratio, of the fly ash and slag powder within a fly ash : slag powder range of 19 : 1-6 : 4.
    • 要解决的问题:提供能够有助于确保制造预制产品所需的流体时间并且即使在低固化温度下也能促进预制产品释放所必需的强度的地质聚合物组合物。 解决方案:所提供的组合物含有通过混合填料和单体制备的铝硅酸盐氧化物。 填料包括粉煤灰和渣粉。 根据地质聚合物组合物的流动性可持续时间及其释放时的强度,调整飞灰和渣粉末在填料内的比例。 在调整粉煤灰和炉渣粉末的比例的情况下,即使在相对较低的热固化温度下也能够促进地质聚合物组合物的强度的显现,因此热固化可以在不太可能的温度下进行 导致蜡状脱模剂或成膜剂的降解。 特别地,需要调节粉煤灰和炉渣粉末在粉煤灰中的质量比的比例:炉渣粉末的范围为19:1-6:4。