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    • 6. 发明专利
    • Foundation for protecting shellfish
    • 保护鞋底的基金会
    • JP2007097538A
    • 2007-04-19
    • JP2005295099
    • 2005-10-07
    • Geostr CorpKajima Corpジオスター株式会社鹿島建設株式会社
    • SAKUSE NOBUONAKAMURA HANAKORIN BUUN KENKIDOKORO TOSHIROBANDO HIROZOUCHIKAWA TAKAOKARAKI HIROSHI
    • A01K61/00
    • Y02A40/81Y02A40/82Y02A40/834
    • PROBLEM TO BE SOLVED: To provide a foundation for protecting shellfishes, while maintaining a state close to nature, required for the growth of the shellfishes living in sandy mud environment at water bottom, capable of protecting/culturing the shellfishes. SOLUTION: This foundation for protecting the shellfishes is provided by consisting of three-dimensionally formed blocks 2 consisting of a linear material 1 obtained by blending plant fibers with mortar or concrete, binding the linear materials 1 with each other partially and also forming gaps 7 among the linear materials 1 from each other, and sandy mud portion 8 filled in the gaps 7 of the blocks 2. The linear material 1 of the protecting foundation can be constituted by using a low pH cement consisting of MgO and P 2 O 5 as main components, and as the plant fibers, cotton or linen can be used. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为保护贝类,在保持接近自然状态的基础上,提供生活在水底沙质泥质环境中的能够保护/培养贝类的贝类生长所需的基础。 解决方案:用于保护贝类的基础由三维形成的块2组成,其由通过将植物纤维与砂浆或混凝土共混获得的线材1组成,将线材1部分地彼此粘合并且还形成 线材1之间的间隙7以及填充在块体2的间隙7中的砂浆部分8.保护基底的线材1可以由使用由MgO和P 2 O 5 为主要成分,作为植物纤维,可以使用棉或亚麻布。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Pipeline structure and complex thereof
    • 管道结构及其复合材料
    • JP2008253201A
    • 2008-10-23
    • JP2007099692
    • 2007-04-05
    • Kajima Corp鹿島建設株式会社
    • KOSHIKAWA YOSHIISANAKAMURA HANAKORIN BUUN KENYAMAKI KATSUNORITANAKA MASAHIRO
    • A01K61/00E02B3/00E02B3/12
    • Y02A40/81Y02A40/82
    • PROBLEM TO BE SOLVED: To provide a pipeline structure stably keeping the environment suitable for propagation of benthic organisms and heightening the variety of species living in a coastal zone, and to provide a complex thereof.
      SOLUTION: The pipeline structure 10 is installed in the coastal zone, having a water area in which the water level changes vertically and forms a habitat for the benthic organisms by utilizing the water level change, and is equipped with a granule-storing part 1 which is equipped with a pipe line, having one terminal that communicates with an upper opening 10a, positioned in between the maximum water level and the minimum water level of the coastal zone, and having a shape directed downward from the one terminal to a prescribed position, and thereafter, being directed upward from the position; and a communicating pipeline 8 for communicating the other terminal of the granule-storing part 1 with a lower-side opening 10b formed at a position lower than the upper-side opening.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种稳定地保持适合于底栖生物繁殖的环境并提高生活在沿海地区的各种物种的管道结构,并提供其复合物。 解决方案:管道结构10安装在沿海地带,其水面垂直变化,通过利用水位变化形成底栖生物的栖息地,并配备有颗粒储存 配备有管线的部分1,其具有与上部开口10a连通的一个端子,位于最大水位和沿岸区域的最小水位之间,并且具有从一个端子向下的形状 指定位置,此后从该位置向上; 以及连通管道8,用于使颗粒储存部分1的另一端与形成在比上侧开口低的位置处的下侧开口10b连通。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Planting base, and planting base unit employing the same
    • 铺设基地,以及使用该基地的基地单位
    • JP2008043246A
    • 2008-02-28
    • JP2006221184
    • 2006-08-14
    • Kajima Corp鹿島建設株式会社
    • KOSHIKAWA YOSHIISANAKAMURA HANAKOYAMAKI KATSUNORIRIN BUUN KEN
    • A01G33/00A01G1/00A01G9/02
    • PROBLEM TO BE SOLVED: To provide a planting base effectively installed at a prescribed position when transplanting seedlings of aquatic plants to a planting ground, and voluntarily decayed when a prescribed period of time has passed after installed; and to provide a planting base unit employing the planting base. SOLUTION: The planting base 10 is provided with a housing part 12 housing aquatic plants to be planted, is obtained by molding kneaded material, and has self-decay property. The kneaded material comprises sand as a main material, a fixing material enhancing hardness of the kneaded material, a thickening agent enhancing viscosity of the kneaded material, and water. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:将水生植物幼苗移植到种植地时,提供有效安装在规定位置的种植基地,并且在安装后经过规定的时间后自愿衰变; 并提供使用种植基地的种植基地单元。 解决方案:种植基地10设置有容纳要种植的水生植物的壳体部分12,通过模制捏合材料获得并具有自衰减性。 捏合材料包括砂作为主要材料,提高捏合材料的硬度的固定材料,增强捏合材料的粘度的增稠剂和水。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Method and apparatus for detecting dissolved oxygen in underground water
    • 用于检测地下水中溶解氧的方法和装置
    • JP2007256025A
    • 2007-10-04
    • JP2006079748
    • 2006-03-22
    • Kajima CorpMakoto NishigakiTokai UnivToshiba Corp学校法人東海大学株式会社東芝誠 西垣鹿島建設株式会社
    • TOIDA KATSURIN BUUN KENTANAKA MAYUMIOE TOSHIAKINISHIGAKI MAKOTOSUZUKI TAKEHIKOSATO KOKICHI
    • G01N21/76G01N33/18
    • PROBLEM TO BE SOLVED: To provide a method for simply and rapidly detecting dissolved oxygen at the origin position of underground water, and a dissolved oxygen detector.
      SOLUTION: The hole inner section 9 partitioned by a pair of packers 6 and 7, at least one of which has an optical sensor 10 attached thereto, is formed at the depth 4 of the underground water 2 in a boring hole 3. After it is detected that the hole inner section 9 is replaced with the underground water 2 at the depth 4 by a detector 14, an emission reagent 17 emitting light upon the reaction with oxygen is charged in the hole inner section 9 by a charging device 13. The output of the optical sensor 10 is input to a detector 12 and the dissolved oxygen in the underground water 2 at the depth 4 is detected by the detector 12. Preferably, the emission reagent 17 comprises a mixture of luciferin, luciferase, magnesium ions and ATP or a solution prepared by dissolving the mixture in deoxidized water. For example, a feed-in means for feeding the emission reagent 17 in the section 9 from the ground by a non-oxygen gas can be added to the charging device 13.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种简单快速地检测地下水原始位置的溶解氧的方法和溶解氧检测器。 解决方案:在钻孔3中的地下水2的深度4处形成由一对封隔器6和7分隔开的孔内部9,其中至少一个具有安装有光学传感器10的封隔器6和7。 在通过检测器14检测到深孔4中的孔内部部分9被地下水2置换后,与氧反应发光的发射试剂17通过充电装置13被填充到孔内部部分9中 光学传感器10的输出被输入到检测器12,探测器12检测深度为4的地下水2中的溶解氧。优选地,发射试剂17包括荧光素,荧光素酶,镁离子 和ATP或通过将混合物溶解在脱氧水中制备的溶液。 例如,可以向充电装置13添加用于通过非氧气将来自地面的部分9中的发射试剂17供给的馈入装置。(C)2008,JPO&INPIT