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    • 1. 发明专利
    • Water treatment apparatus and its use
    • 水处理设备及其使用
    • JP2008155068A
    • 2008-07-10
    • JP2006242122
    • 2006-08-11
    • Hiroyasu NakamuraYamada Evidence Research:Kk浩康 中村有限会社山田エビデンスリサーチ
    • YAMADA MITSUONAKAMURA HIROYASU
    • C02F1/32A23L3/28A23L3/32C02F1/28C02F1/48
    • PROBLEM TO BE SOLVED: To provide a water treatment apparatus which has a simple constitution and in which sterilization treatment and germination promotion treatment can be performed easily at a normal temperature range even when an expert does not guide.
      SOLUTION: The water treatment apparatus, in which raw water from a water source is introduced into a circulation tank and the introduced raw water is treated while circulating it from the circulation tank to the circulation tank through light irradiation sections and a magnetization section, is provided with: a first light irradiation section 1 having a light source for emitting the light having an around 185 nm wavelength range; a second light irradiation section 2 having a light source for emitting the light having an around 254 nm wavelength range; the magnetization section 3 having the magnetic force of 2,500-14,000 MΩ; and a chemical/radical species eliminating means 4 for eliminating radicals from the water treated in the circulation tank and discharging the radical-eliminated water to the outside. These sections are connected to one another so that a flow passage for circulating the raw water through the first light irradiation section, the second light irradiation section and the magnetization section in this order, a flow passage for circulating the raw water through the second light irradiation section, the first light irradiation section and the magnetization section in this order, a flow passage for circulating the raw water through the first light irradiation section and the magnetization section in this order and a flow passage for circulating the raw water through the second light irradiation section and the magnetization section in this order can be changed over to one another.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种具有简单结构的水处理装置,即使专家不引导,也能够在常温范围内容易进行灭菌处理和发芽促进处理。 解决方案:将来自水源的原水引入循环罐中并将引入的原水从循环罐循环到循环罐的水处理装置通过光照射部和磁化部 具有:第一光照射部1,其具有用于发射具有约185nm波长范围的光的光源; 第二光照射部分2,具有用于发射具有约254nm波长范围的光的光源; 磁化部分3具有2,500-14,000MΩ的磁力; 以及用于消除在循环罐中处理的水中的自由基并将自由基消除的水排出到外部的化学/自由基物质除去装置4。 这些部分彼此连接,使得用于使原水依次循环通过第一光照射部分,第二光照射部分和磁化部分的流动通道,用于使原水循环通过第二光照射的流动通道 第一光照射部和磁化部,依次包括使原水循环通过第一光照射部和磁化部的流路,以及使原水循环通过第二光照射的流路 并且该顺序的磁化部分可以彼此改变。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • System and method for evaluating sterilization apparatus
    • 用于评估灭菌装置的系统和方法
    • JP2006305535A
    • 2006-11-09
    • JP2005156340
    • 2005-04-26
    • Yamada Evidence Research:Kk有限会社山田エビデンスリサーチ
    • YAMADA MITSUONAKAMURA HIROYASU
    • C02F1/00C12Q1/22
    • PROBLEM TO BE SOLVED: To provide a system and a method for evaluating a sterilization apparatus.
      SOLUTION: The evaluation system for evaluating the sterilization ability of a fluid sterilization apparatus for sterilizing a fluid by passing the fluid through a pipe line has at least one standard fluid preparation means provided in the pipe line on the upstream side of the sterilization apparatus and for preparing a standard fluid to be sterilized, a temperature control means provided in the pipe line on the upstream side of the sterilization apparatus and for controlling the temperature of the standard fluid prepared by the standard fluid preparation means, a fluid transportation means provided at a prescribed position of the evaluation system and for transporting the fluid to the sterilization apparatus, a flow rate control means for controlling the flow rate of the standard fluid prepared by the standard fluid preparation means and flowing into the sterilization apparatus and a sampling means for sampling the treated standard fluid discharged from the sterilization apparatus.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于评估灭菌装置的系统和方法。 解决方案:通过使流体通过管线对流体灭菌的流体灭菌装置的杀菌能力进行评价的评价体系具有设置在灭菌的上游侧的管路中的至少一个标准的液体制备装置 设备和用于制备待消毒的标准流体的温度控制装置,设置在灭菌装置的上游侧的管路中并用于控制由标准流体调节装置制备的标准流体的温度的温度控制装置, 在所述评价体系的规定位置,将所述流体输送到所述灭菌装置的流量控制单元,其控制由所述标准流体调制单元准备并流入所述灭菌装置的所述标准流体的流量;以及取样单元, 对从灭菌装置排出的经处理的标准液进行取样。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Method for measuring free radical by esr
    • 通过ESR测量自由射线的方法
    • JP2005321367A
    • 2005-11-17
    • JP2004165108
    • 2004-05-07
    • Hiroyasu NakamuraShoichi Ri浩康 中村昌一 李
    • RI SHOICHINAKAMURA HIROYASUYOSHINO FUMIHIKOKOMATSU TOMOKO
    • G01N24/10
    • PROBLEM TO BE SOLVED: To provide a technology of measuring free radicals for monitoring free radical generating reaction (free radical elimination reaction) for controlling the reaction conditions and optimizing a product having the free radical generation/elimination reactions. SOLUTION: In a reaction system comprising a magnetic field generating section for generating magnetic field within a predetermined range, an ESR measuring section provided adjacent to the magnetic field generating section, and containing a measuring material connected in liquid-tight manner to the ESR measuring section, a medium is made to be distributed to the reaction system. The free radical generation reaction is induced in the presence of a material, having a predetermined free radical spin trapping action. Free radicals are generated by the material having the spin trap action and are trapped. The medium, containing the trapped free radicals, is distributed to an ESR cell, and the ESR apparatus measures the peak intensity of the electron spin spectrum of the free radicals generated by the reaction system. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供测量自由基以监测自由基产生反应(自由基消除反应)的技术,用于控制反应条件并优化具有自由基产生/消除反应的产物。 解决方案:在包括用于在预定范围内产生磁场的磁场产生部分的反应系统中,与所述磁场产生部分相邻设置的ESR测量部分,并且包含以液密方式连接到所述磁场产生部分的测量材料 ESR测量部分,介质被分配到反应系统中。 在具有预定的自由基自旋捕获作用的材料的存在下诱导自由基产生反应。 自由基由具有自旋捕获作用的材料产生并被捕获。 含有被捕获的自由基的培养基被分配到ESR细胞,ESR装置测量由反应体系产生的自由基的电子自旋谱的峰值强度。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Ingestion support apparatus, system, and method
    • 投影支持设备,系统和方法
    • JP2005205126A
    • 2005-08-04
    • JP2004043634
    • 2004-01-22
    • Hiroyasu NakamuraShoichi Ri浩康 中村昌一 李
    • RI SHOICHINAKAMURA HIROYASUYOSHINO FUMIHIKOKOMATSU TOMOKO
    • A23L33/00A61G12/00A61J3/00A61K45/00A61P1/04A61P1/16A61P1/18A61P3/10A61P9/00A61P9/10A61P9/12A61P11/08A61P13/12A61P25/00A61P25/08A61P25/16A61P29/00A61P35/00A61P37/02A61P39/06G06Q50/22A23L1/29G06F17/60
    • PROBLEM TO BE SOLVED: To provide ingestion support technique for supporting the selection of ingesta and the determination of the ingestion amount corresponding to different body conditions, proposing the ingestion amount of the ingesta to be taken to the inside of a human body, and indicating an index to improve the body condition. SOLUTION: An ingestion support apparatus for supporting the determination of the kinds of the ingesta and the ingesta amounts comprises: an arithmetic means; an input means, an output means; and an information storage means. The information storage means includes: a body condition information part for storing information concerning the body conditions; and an ingesta information part for storing information concerning the ingesta and influence on the body conditions, corresponding to the information concerning the body conditions which is stored in the body condition information part. When the information concerning the body condition is inputted from the input means, the arithmetic means calculates the ingesta and its amount to improve the body conditions, based on the information concerning the body conditions stored in the body condition information part and the information concerning the ingesta and the body conditions stored in the ingesta information part, so as to output them. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供摄取支持技术,用于支持摄取的选择和确定与不同身体状况相对应的摄取量,提出将摄取摄取量摄入人体内部, 并指出改善身体状况的指标。 解决方案:一种用于支持摄食和摄入量的确定的摄取支持装置包括:算术装置; 输入装置,输出装置; 和信息存储装置。 信息存储装置包括:身体状况信息部分,用于存储关于身体状况的信息; 以及摄取信息部分,用于存储与存储在身体状况信息部分中的关于身体状况的信息相关的关于摄食的信息和对身体状况的影响。 当从输入装置输入关于身体状况的信息时,算术装置根据存储在身体状况信息部分中的关于身体状况的信息和关于摄食的信息,计算摄取量及其改善身体状况的量 以及存储在摄取信息部分中的身体状况,以便输出它们。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Method and device for determining resolution of free radical in vivo
    • 用于确定体内免费RADIC分辨率的方法和装置
    • JP2005189219A
    • 2005-07-14
    • JP2003436795
    • 2003-12-25
    • Hiroyasu NakamuraShoichi Ri浩康 中村昌一 李
    • RI SHOICHIYOSHINO FUMIHIKOHORI YOSHIONAKAMURA HIROYASU
    • G01N24/10
    • PROBLEM TO BE SOLVED: To provide a method and a device for determining resolution of a free radical in vivo by a direct method using an ESR unit.
      SOLUTION: In this method for determining the resolution of the free radical in vivo as to an added component added into an organism, by using the ESR unit, (1) a measuring component of a prescribed amount of determination component and an electron spin probe are added into a reference substance containing the prescribed concentration of free radical, and an absolute value a
      1 of an inclination of a disappearance rate in vitro of the measuring component is measured using an X-band, L-band or both ESR units, (2) an experiment animal added with the corresponding electron spin probe in a measuring portion is set in the L-band ESR unit, and an absolute value b
      1 of an inclination of a disappearance rate in vivo of the measuring component is measured using the L-band ESR unit, while adding the prescribed amount of the measuring component, and (3) the resolution of the free radical in vivo as to the measuring component is determined, based on the absolute value a
      1 of the inclination of the disappearance rate in vitro of the electron spin probe of the measuring component measured in the step (1), and based on the absolute value b
      1 of the inclination of the disappearance rate in vivo of the electron spin probe of the measuring component measured in the step (2).
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种通过使用ESR单元的直接方法来确定体内自由基的分辨率的方法和装置。 解决方案:在该方法中,通过使用ESR单元确定体内添加的成分的体内分解度的方法,(1)规定量的测定成分和电子的测定成分 将自旋探针加入含有规定浓度的自由基的对照物质中,使用X波段测定测定成分的体外消失速度的倾斜度的绝对值a 1 L波段或两个ESR单元,(2)在测量部分中加入相应的电子自旋探针的实验动物设置在L波段ESR单元中,并且绝对值b 1 使用L波段ESR单元测量测量部件的体内消失速度的倾斜度,同时添加规定量的测量部件,并且(3)测量部件在体内的自由基的分辨率被确定 ,基于绝对值a 1 在步骤(1)中测量的测量组分的电子自旋探针的体外消失速率的倾斜度,并且基于体内消失速率倾斜度的绝对值b 1 在步骤(2)中测量的测量组分的电子自旋探针。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Hydraulic power generation machine and hydraulic power generation system
    • 液压发电机和液压发电系统
    • JP2014043856A
    • 2014-03-13
    • JP2013168725
    • 2013-07-30
    • Ggi Japan KkGgiジャパン株式会社Kenichi Yamada健一 山田Hiroyasu Nakamura浩康 中村
    • YAMADA KENICHINAKAMURA HIROYASUHONDA MUNETAKA
    • F03B7/00
    • F03B7/003F03B13/264F03B17/063F05B2240/13F05B2240/931Y02E10/223Y02E10/28
    • PROBLEM TO BE SOLVED: To provide a hydraulic power generation device that is installed in any place and based upon a hydraulic turbine with high energy conversion efficiency.SOLUTION: A hydraulic power generation device 50 includes: a hydraulic turbine including a rotary body 1 having a rotary shaft 2, an impeller 10 constituted by arranging a plurality of pairs of blades 3L, 3R, inclined from upstream to downstream from a central position of the rotational plane of the rotary body 1 to the end portions thereof, alternately with phase differences so that the rotary body 1 sinks into water while rotating according to the strength of a water flow, a support frame body formed by connecting support frames 21, standing surrounding the impeller 10, together by connection members 24 in a direction perpendicular to the water flow, and a suspension and support device 20 for the impeller which comprises a support and connection part 22 connecting the support frames 21 at a predetermined height to support the impeller, and a suspension part 23 pivotally supporting the rotary shaft 2 in a rotatable state on one side and having the other side provided rotatably on the support connection member 22 so that the impeller 10 sinks in water while rotating according to the strength of a water flow; and a power generation machine 30 which converts output from the rotary shaft of the impeller into electric power.
    • 要解决的问题:提供一种安装在任何地方并基于具有高能量转换效率的水轮机的液压发电装置。解决方案:液压发电装置50包括:水轮机,其包括旋转体1,其具有 旋转轴2,通过将相对于旋转体1的旋转平面的中心位置的上游到下游倾斜的多对叶片3L,3R交替地设置相位差而构成的叶轮10, 旋转体1根据水流的强度而转入水中;支撑框架主体通过连接构件24在与水流方向垂直的方向上连接支撑框架21而形成,支撑框架21围绕叶轮10连接在一起;以及 用于叶轮的悬挂和支撑装置20,其包括以预定高度t连接支撑框架21的支撑和连接部分22 o支撑叶轮,以及悬架部23,该悬挂部23以可旋转的状态在一侧枢转地支撑旋转轴2,并且另一侧可旋转地设置在支撑连接构件22上,使得叶轮10在水中下沉,同时根据强度旋转 的水流; 以及将来自叶轮的旋转轴的输出转换为电力的发电机30。