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    • 1. 发明专利
    • Fluorescent x-ray analyzing method of very small amount of element in water, and column and system used therein
    • 水中非常小量元素的荧光X射线分析方法及其使用的柱和系统
    • JP2006029864A
    • 2006-02-02
    • JP2004206286
    • 2004-07-13
    • Chubu Kiresuto KkHitachi Constr Mach Co LtdKiresuto Kkキレスト株式会社中部キレスト株式会社日立建機株式会社
    • KASE KAZUONANBU NOBUYOSHIITO OSAMUMIHARA MASATAKE
    • G01N23/223G01N1/10
    • PROBLEM TO BE SOLVED: To analyze an extremely small amount of a harmful metal element or the like in a fluorescent X-ray analyzing method which enables its analysis on a soil treatment site or the like but insufficient in analyzing capacity, and a column and a system used in the fluorescent X-ray analyzing method.
      SOLUTION: The fluorescent X-ray analyzing method of a very small amount of an element in water includes a step (1) for passing a liquid to be analyzed through the column filled with a chelating polymer having a functional group, which has the chelate forming capacity with a metal and/or a metalloid, in its side chain to adsorb the metal and/or the metalloid in the liquid to be analyzed by the chelating polymer, a step (2) for irradiating the chelating polymer having adsorbed the metal and/or the metalloid with fluorescent X-rays to perform fluorescent X-ray element analysis and a step (3) for converting the obtained element analysis value to the concentration of the element in the liquid to be analyzed.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:为了分析能够对土壤处理部位等进行分析但分析能力不足的荧光X射线分析方法中的极少量的有害金属元素等,以及 柱和用于荧光X射线分析方法的系统。 解决方案:水中非常少量的元素的荧光X射线分析方法包括:步骤(1),用于使待分析液体通过填充有具有官能团的螯合聚合物的柱,所述螯合聚合物具有 与金属和/或准金属在其侧链中螯合形成能力,以通过螯合聚合物吸附待分析液体中的金属和/或准金属;步骤(2),用于照射吸附有螯合聚合物的螯合聚合物 金属和/或具有荧光X射线的准金属进行荧光X射线分析;以及步骤(3),用于将所得到的元素分析值转换为待分析液体中元素的浓度。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明专利
    • System and method for treating polluted soil
    • 用于处理污染土壤的系统和方法
    • JP2008200541A
    • 2008-09-04
    • JP2006140070
    • 2006-05-19
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • HASHIMOTO HISANORIHIRASAWA YUKIHISAKASE KAZUOFUJI KENJI
    • B09C1/02A62D3/33A62D101/49B09C1/00B09C1/08
    • PROBLEM TO BE SOLVED: To provide a treatment system of polluted soil capable of enhancing the stability and certainty of fluorine insolubilizing treatment by spreading an insolubilizing agent to all parts of polluted soil, and a treatment method of polluted soil. SOLUTION: The treatment system of polluted soil is equipped with a sorting process (S 324) for classifying fluorine-containing polluted soil corresponding to a particle size to sort it into polluted soil with a particle size larger than a target particle size G3 and polluted soil with a particle size smaller than the target particle size G3, a crushing process (S325) for crushing the polluted soil with a particle size larger than the target particle size G3 sorted in the sorting process (S 324), and an insolubilizing treatment process (S 330) for mixing a solution of magnesium oxide and magnesium chloride with the polluted soil, which is obtained by mixing the polluted soil with a particle size smaller than the target particle size sorted in the sorting process (S 324) with the polluted soil crushed in the crushing process (S 325), to subject fluorine in the polluted soil to insolubilizing treatment. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种污染土壤处理系统,能够通过将不溶解剂分散到污染土壤的所有部位,提高氟不溶化处理的稳定性和确定性,以及污染土壤的处理方法。 解决方案:污染土壤处理系统配备有一个分选过程(S 324),用于对应于颗粒尺寸的含氟污染土壤进行分类,将其分类为粒径大于目标粒径G3的污染土壤 和污染土壤,粒径小于目标粒径G3,破碎过程(S325),其破碎粒度大于在分选过程中分选的目标粒径G3的污染土壤(S3244),并且不溶化 处理方法(S 330),其用于将氧化镁和氯化镁溶液与污染的土壤混合,其通过将污染土壤与在分选过程中分选的小于目标粒度的粒度混合而获得(S 324),其中 在破碎过程中粉碎的污染土壤(S 325),使受污染土壤中的氟不溶化处理。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Insolubilization method of lead-contaminated soil
    • 铅污染土壤的不溶性方法
    • JP2008161773A
    • 2008-07-17
    • JP2006352023
    • 2006-12-27
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • KASE KAZUOHASHIMOTO HISANORI
    • B09C1/02B09B3/00B09C1/08
    • PROBLEM TO BE SOLVED: To provide an insolubilization method of lead-contaminated soil capable of insolubilizing lead-contaminated soil so as to suit for an accession standard without using sodium sulfide.
      SOLUTION: In a self-propelled soil improving machine 3, hemihydrate gypsum supplied from a silo 4 is added to lead-contaminated soil 1 on a conveyor 3b1 provided in a body 3b, thereafter a chelating agent comprising a polymeric material having a chelate functional group is added thereto to mix. In this case, e.g. the hemihydrate gypsum is added to the lead-contaminated soil 1, thereafter the chelating agent is added in succession by the injection from a nozzle 6a, the soil thus added is mixed by a mixing and stirring machine 3b2. The chelating agent, for the functional group, includes either of a dithiocarbamic acid group, piperazine base or diethylamine base. Furthermore, 1% or more hemihydrate gypsum may be added to the lead-contaminated soil 1.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供不污染铅污染土壤的不溶解方法,以便不污染铅污染土壤,以适应加入标准而不使用硫化钠。 解决方案:在自走式土壤改良机3中,将从料仓4供给的半水石膏加入到设置在主体3b中的传送带3b1上的铅污染土壤1中,之后加入包含聚合物材料的螯合剂, 加入螯合官能团以混合。 在这种情况下,例如 将半水石膏加入到铅污染土壤1中,然后通过从喷嘴6a喷射​​而连续添加螯合剂,将由此添加的土壤通过混合搅拌机3b2混合。 官能团的螯合剂包括二硫代氨基甲酸基,哌嗪基或二乙胺基中的任一种。 此外,可能会在铅污染土壤1中加入1%以上的半水石膏。版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • System for evaluating collected data on contained chemical substance
    • 用于评估含有化学物质的收集数据的系统
    • JP2013152574A
    • 2013-08-08
    • JP2012012499
    • 2012-01-24
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • KASE KAZUO
    • G06Q50/04
    • Y02P90/30
    • PROBLEM TO BE SOLVED: To provide a system for evaluating collected data on contained chemical substances which can promptly determine whether products or assemblies requires registration with the REACH regulation and the like even if there are parts for which information on contained chemical substances has not been collected.SOLUTION: A weight collection rate R=m/M, which is the weight ratio of a total weight of parts having collected information, namely m, to the total weight of an aggregate of parts, namely M, is calculated. Then, r=x/M, which is the weight ratio of the total weight of chemical substances that can be subject to regulation in the information-collected parts, namely x, to the total weight of the aggregate of parts, namely M, is calculated. A threshold occupancy, namely P=r/S, which is the ratio of the weight content rate r to a weight content rate threshold S, the content rate at which a total weight content rate of chemical substances subject to regulation is a regulation threshold, is calculated. From these values, an index value Φ={(1-R)/R}×{P/(1-P)} is calculated. According to the size of the index value Φ, the degree of the risk that products and the like contain any chemical substances subject to regulation is evaluated.
    • 要解决的问题:提供一种用于评估所收集的化学物质的收集数据的系统,可以及时确定产品或组件是否需要REACH法规等的注册,即使有没有收集含有化学物质的信息的部分 解决方案:计算收集信息的部件的总重量的重量比R = m / M,即m的总重量,即M的总重量。 那么,r = x / M,它是信息收集部分中可以受规管的化学物质总重量的重量比,即x,部件的总重量,即M,的总和 计算。 阈值占有率,即重量含量率r与重量含量率阈值S的比值P = r / S,受调节的化学物质的总重量含量率的调节阈值的含有率, 被计算。 从这些值,计算出指标值Φ= {(1-R)/ R}×{P /(1-P)}。 根据指标值Φ的大小,评价产品等含有受规管化学物质的风险程度。
    • 6. 发明专利
    • Method and system for treating polluted soil
    • 用于处理污染土壤的方法和系统
    • JP2008200542A
    • 2008-09-04
    • JP2006140078
    • 2006-05-19
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • HASHIMOTO HISANORIHIRASAWA YUKIHISAKASE KAZUOFUJI KENJI
    • B09C1/02A62D3/33A62D101/49B09C1/08C02F1/58
    • Y02W10/37
    • PROBLEM TO BE SOLVED: To provide of a treatment method of polluted soil capable of effectively purifying polluted water produced accompanying the treatment of polluted soil to effectively utilize the purified water without discharging the same to the outside, and a treatment system of polluted soil. SOLUTION: The treatment method of polluted soil has a soil excavation process (S 130) for excavating fluorine containing polluted soil, a water treatment process (S 200) for mixing magnesium oxide or an additive material based thereon and magnesium chloride with the fluorine-containing polluted water bled when the polluted soil is excavated in the soil excavation process (S 130) to subject fluorine in the polluted water to insolubilization treatment, and an insolubilization treatment process (S 330) for mixing the treated water purified in the water treatment process (S 200), magnesium oxide or the additive material based thereon and the magnesium chloride solution with the polluted soil excavated in the soil excavation process (S 130) to subject fluorine in the polluted soil to insolubilization treatment. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供污染土壤处理方法,能够有效地净化污染土壤处理产生的污水,有效利用净化水,而不将其排放到外部,污染处理系统 泥。 解决方案:污染土壤的处理方法有一个用于开采含氟污染土壤的土壤开挖过程(S130),一种用于将氧化镁或其上添加的材料与氯化镁混合的水处理工艺(S 200) 在土壤开挖过程中挖掘污染土壤时,含氟污染水流出(S130),使被污染水中的氟受到不溶解处理,以及将在水中纯化的处理水混合的不溶解处理方法(S 330) 处理方法(S 200),氧化镁或其上的添加剂材料和在土壤开挖过程中挖掘出的污染土壤的氯化镁溶液(S130),以使被污染土壤中的氟受到不溶解处理。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Contaminated soil treating system and contaminated soil treating machine
    • 污染土壤处理系统和污染土壤处理机
    • JP2003336283A
    • 2003-11-28
    • JP2002148230
    • 2002-05-22
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • SATO FUJIOKASE KAZUOHASHIMOTO HISANORI
    • E02F7/00B01F3/12B01F7/04B01F15/02B01F15/04B02C21/02B09B3/00B09C1/02B09C1/08
    • PROBLEM TO BE SOLVED: To provide a contaminated soil treating machine which generates improved soil of stable quality from soil contaminated with a heavy metal material, etc., and to provide a contaminated soil treating system.
      SOLUTION: The contaminated soil treating machine is comprised of oxidation-reduction equipment 1A and solidification equipment 1B. The oxidation-reduction equipment 1A receives the contaminated soil, and adds a first additive to the soil in an amount corresponding to the feed of the soil, followed by mixing the resultant soil, to thereby discharge treated soil which has been subjected to oxidation-reduction. The solidification equipment 1B receives the treated soil from the oxidation-reduction equipment 1A, and adds a second additive to the treated soil in an amount corresponding to the feed of the treated soil, followed by mixing the resultant treated soil, to thereby discharge improved soil which has been subjected to insolubilization and solidification.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种污染的土壤处理机,其从被重金属材料等污染的土壤等产生质量稳定的改良土壤,并提供污染的土壤处理系统。 污水处理机由氧化还原设备1A和固化设备1B组成。 氧化还原设备1A接收污染的土壤,并且以与土壤的进料相对应的量向土壤中添加第一添加剂,然后混合所得的土壤,从而排出经过氧化还原的经处理的土壤 。 凝固设备1B从氧化还原设备1A接收经处理的土壤,并将处理后的土壤中的第二添加剂添加到处理后的土壤的进料中,然后混合所得到的处理过的土壤,从而排出改良的土壤 其已经不溶解和固化。 版权所有(C)2004,JPO
    • 8. 发明专利
    • Reaction-retarded quick lime and its production method
    • 反应快速的限制及其生产方法
    • JP2005194122A
    • 2005-07-21
    • JP2004000844
    • 2004-01-06
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • KASE KAZUO
    • B09C1/02B09C1/08C01F11/02C04B2/02C09K17/06C09K101/00
    • C04B2/02
    • PROBLEM TO BE SOLVED: To provide a reaction-retarded quick lime capable of suppressing scattering; and its production method.
      SOLUTION: An organic solvent, e.g. methanol 2, is added to a particulate matter of reaction-retarded quick lime 1 to convert the particulate matter into a granular matter. In another way, an organic solvent, e.g. methanol 2, is added to a particulate matter of reaction-retarded quick lime 1 to bond the particulates of the matter to each other by a capillary phenomenon caused by the evaporation of the methanol 2, thus converting the particulate matter into a granular matter. The organic solvent added to the particulate matter may be ethanol without being limited to methanol.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供能够抑制散射的反应迟缓的生石灰; 及其生产方法。 解决方案:有机溶剂,例如, 将甲醇2加入到反应迟缓的生石灰1的颗粒物质中,以将颗粒物质转化为颗粒状物质。 换句话说,有机溶剂,例如 将甲醇2加入到反应迟缓的生石灰1的颗粒物质中,通过由甲醇2的蒸发引起的毛细管现象将物质的颗粒彼此粘合,从而将颗粒物质转化为颗粒状物质。 添加到颗粒物质中的有机溶剂可以是乙醇而不限于甲醇。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Mobile polluted soil treatment machine and polluted soil treatment system
    • 移动污染土壤处理机和污染土壤处理系统
    • JP2003071427A
    • 2003-03-11
    • JP2001268737
    • 2001-09-05
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • HASHIMOTO HISANORISATO FUJIOKASE KAZUO
    • B09C1/00B01F7/04B02C18/06B02C18/18B02C19/00B09C1/04B02C19/12
    • PROBLEM TO BE SOLVED: To improve operation rate by ensuring the smooth continuity of a treatment work.
      SOLUTION: The machine is provided with an earth and sand hopper 2 that receives earth and sand polluted with volatile organic compounds, a charge conveyor 4 that transfers the earth and sand from the hopper 2 to the other side in the longitudinal direction of a body frame 9, an additive feeder 5 that feeds an additive that reacts with water to generate heat to the earth and sand transferred by the conveyor 4, a power unit that drives a caterpillar tread 10 and the mixer 3, a discharge conveyor 8 that extends from the lower position of the mixer 3 to the outside position of the other side in the longitudinal direction of the main frame 9, a transfer conveyor cover 76 that covers the top of the conveyor 8, a catalytic decomposer 80 that catalytically decomposes volatile organic compounds with a catalyst, and a suction pipe 88 which is open to the inside of the cover 76 at one end and is connected to the decomposer 80 at the other end.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:通过确保治疗工作的顺利连续性来提高手术率。 解决方案:机器设有砂土料斗2,接收被挥发性有机化合物污染的沙沙,一个将泥土和沙子从料斗2沿身体框架的纵向方向传送到另一侧的进料输送机4 9,一种添加剂进料器5,其将与水反应的添加剂供给到由输送机4转移的泥土和砂粒;驱动履带式履带10和混合器3的动力单元;排出输送机8, 将混合器3的下部位置向主框架9的纵向方向的另一侧的外侧位置,覆盖传送带8的顶部的传送传送带盖76,催化分解器80,催化分解器80将挥发性有机化合物以 催化剂和吸入管88,其在一端向盖76的内部开口并且在另一端连接到分解器80。
    • 10. 发明专利
    • Evaluation system of contained chemical substance collection information, and calculation method of contained chemical substance for use in the system
    • 含有化学物质收集信息的评估系统,以及在系统中使用的含有化学物质的计算方法
    • JP2013200777A
    • 2013-10-03
    • JP2012069554
    • 2012-03-26
    • Hitachi Constr Mach Co Ltd日立建機株式会社
    • KASE KAZUOKURAMOCHI MASAYUKIKUROKI YUJI
    • G06Q50/04
    • Y02P90/30
    • PROBLEM TO BE SOLVED: To provide an evaluation system of contained chemical substances which allows the calculation of the content of a contained chemical substance to be performed in a possible short time for determining whether a product or an assembly component is subject to regulation for chemical substances such as REACH regulation.SOLUTION: Terminal components are located at the terminal of component configuration information. The content of a chemical substance contained in the component of the same configuration is summed. The total content of the same component is obtained by multiplying the content of one terminal component in reference to the content of contained chemical substances by the number of the same component. The total content of a chemical substance contained in the entire component assembly is calculated by summation of all the total contents of different configurations of the component assembly.
    • 要解决的问题:提供含有化学物质的评估系统,其允许在可能的短时间内计算所含化学物质的含量,以确定产品或组件成分是否受化学物质的管理 如REACH法规。解决方案:终端组件位于终端的组件配置信息。 包含在相同构造的组分中的化学物质的含量相加。 通过将一个末端成分的含量相对于所含的化学物质的含量乘以相同成分的数量,可以得到相同成分的总含量。 包含在整个组件组件中的化学物质的总含量通过组件组件的不同构造的所有总含量的总和来计算。