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    • 61. 发明公开
    • Exhaust gas sampling apparatus and exhaust gas sampling method
    • Abgasprobenentnahmevorrichtung und Abgasprobenentnahmeverfahren
    • EP2784470A1
    • 2014-10-01
    • EP14000974.7
    • 2014-03-17
    • HORIBA, LTD.
    • Miyai, Masaru
    • G01N1/22G01M15/10G01N33/00
    • G01N19/10G01N1/2252G01N2001/2255
    • The present invention is one that can, with suppressing moisture from condensing, easily set a dilution ratio to that enabling measurement accuracy to be improved, and provided with a constant volume sampling part that samples mixed gas that is controlled to have a constant flow rate, wherein the constant volume sampling part is provided with: a main flow path ML that is connected with an exhaust gas flow path HL and a diluent gas flow path DL, and intended to flow the mixed gas that is a mixture of exhaust gas and diluent gas; a constant flow rate mechanism 6 that is configured to control a flow rate of the mixed gas to the constant flow rate; and a moisture detecting part 9 that is provided on an upstream side of the constant flow rate mechanism 6 to detect moisture in the mixed gas or the diluent gas.
    • 本发明可以抑制凝结水分,容易地将稀释比设定为能够提高测量精度的稀释比,并且设置有将被控制为具有恒定流量的混合气体进行采样的恒定体积取样部, 其特征在于,所述恒定体积取样部具备:主流路ML,其与排气流路HL和稀释气体流路DL连接,并将作为废气和稀释气体的混合气体的混合气体 ; 恒定流量机构6,被配置为将混合气体的流量控制为恒定流量; 以及设置在恒定流量机构6的上游侧的水分检测部9,以检测混合气体或稀释气体中的水分。
    • 62. 发明公开
    • Thermometer
    • 温度计
    • EP2781900A1
    • 2014-09-24
    • EP14001026.5
    • 2014-03-20
    • HORIBA, LTD.
    • Ido, TakuyaMori, Tetsuya
    • G01J5/08G01J5/00G01J5/04G01J5/02G01J5/58G01J5/60
    • G01J5/0806G01J5/0014G01J5/029G01J5/042G01J5/084G01J5/0896G01J5/58G01J5/602
    • A thermometer (100) comprises an emitting unit (1), a light receiving unit (3), a lens unit (5), and a calculation unit (773). The emitting unit (1) is configured to emit a measurement light (L m ) into a flue (50), wherethrough a gas (S) that contains light dispersing particles (P) flows. The light receiving unit (3) is configured to receive, of the measurement light (L m ), dispersed measurement light (L d ) dispersed by the light dispersing particles (P). The lens unit (5) is configured to set its focal point (F) at a prescribed position inside the flue (50) and along the light receiving axis (A r ). The calculation unit (773) is configured to calculate the temperature inside the flue (50) based on an intensity ratio of absorption spectra at a plurality of wavelengths.
    • 温度计(100)包括发光单元(1),光接收单元(3),透镜单元(5)和计算单元(773)。 发光单元(1)被配置为向烟道(50)发射测量光(L m),通过包含光分散粒子(P)的气体(S)流过。 光接收单元(3)被配置为接收由光分散粒子(P)分散的测量光(L m)分散的测量光(L d)。 透镜单元(5)被构造成将其焦点(F)设置在烟道(50)内部并沿着光接收轴线(A r)的规定位置。 计算单元(773)被配置为基于多个波长处的吸收光谱的强度比来计算烟道(50)内部的温度。
    • 64. 发明公开
    • Exhaust gas sampling apparatus
    • 废气取样装置
    • EP2775284A2
    • 2014-09-10
    • EP14000805.3
    • 2014-03-06
    • HORIBA, LTD.
    • Kumagai, Tatsuki
    • G01N1/22
    • The present invention is one that, in the case where a sampling part is configured to include a plurality of venturis, with suppressing an increase in size of an apparatus and an increase in cost, accurately obtains a diluent gas flow rate in accordance with a diluted exhaust gas flow rate obtained on the basis of a combination among the plurality of venturis, in which the sampling part 8 collecting part of diluted exhaust gas is configured to parallel connect the plurality of venturis that control the flow rate of the diluted exhaust gas, and a flow rate control part 9 provided in a diluent gas sampling flow path SL2 is configured to parallel connect a plurality of venturis that control the flow rate of diluent gas to be introduced into a diluent gas analyzing device.
    • 本发明是在采样部分被构造成包括多个文丘里管的情况下,抑制装置尺寸增大和成本增加,精确地获得稀释气体流量,该稀释气体流量根据稀释 基于多个文丘里管之间的组合获得的排气流量,其中,采集部分稀释排气的一部分被配置为并联连接控制稀释排气的流量的多个文丘里管,以及 设置在稀释气体取样流路SL2中的流量控制部9构成为将并排连接多个文氏管,该文氏管控制导入稀释气体分析装置的稀释气体的流量。
    • 67. 发明公开
    • Analysis system, information processing device and program
    • 分析系统,Informationsverarbeitungsvorrichtung und Programm
    • EP2730910A2
    • 2014-05-14
    • EP13005189.9
    • 2013-11-04
    • HORIBA, LTD.
    • Uratani, KatsumiMisogi, Tsutomu
    • G01N1/22G01N35/00
    • G01M15/102G01M15/042G01N1/2252G01N35/00871
    • The present invention is directed to an analysis system intended to be able to perform a unit setting of values over multi-pieces of analysis-associated data easily and systematically every analysis device, and the analysis system is provided with an analysis device and an information processing device, wherein the information processing device includes: a unit series data storage part adapted to store multi-pieces of unit series data composed by specifying units to be respectively used for values of the multi-pieces of analysis-associated data given and received between the analysis device and the information processing device; a selection input receiving part adapted to receive a selection input of any of the multi-pieces of the unit series data stored in the unit series data storage part; and a data output part adapted to output each of the values of the analysis-associated data in the unit specified to the selected unit series data.
    • 本发明涉及一种分析系统,旨在能够容易且系统地对每个分析装置执行多个分析相关数据的值的单位设置,并且分析系统被提供有分析装置和信息处理 装置,其中所述信息处理装置包括:单元序列数据存储部分,其适于存储通过指定分别用于在所述多个分组相关数据之间给出和接收的所述多个分析相关数据的值所组成的多个单位序列数据 分析装置和信息处理装置; 选择输入接收部,其适于接收存储在所述单位序列数据存储部中的所述多个所述单位序列数据中的任一个的选择输入; 以及数据输出部分,适于输出针对所选择的单位序列数据指定的单位中的分析相关数据的每个值。
    • 68. 发明公开
    • Multi-ion sensor
    • MULTIIONENSENSOR
    • EP2720035A1
    • 2014-04-16
    • EP13187536.1
    • 2013-10-07
    • HORIBA, LTD.
    • Iwamoto, YasukazuOhkawa, Hiromi
    • G01N27/27G01N27/333G01N33/49G01N27/30A61B5/145G01N33/493
    • G01N27/27G01N27/307G01N27/3272G01N27/333G01N27/4035G01N33/492
    • In order to provide a planar type multi-ion sensor which is easily thinned and has high measurement accuracy, a multi-ion sensor 1 adapted to measure a concentration ratio of sodium ions to potassium ions in a sample solution, includes: a sodium ion electrode 41 selectively reacting to the sodium ions; a potassium ion electrode 42 selectively reacting to the potassium ions; and a common electrode 28 in contrast with the sodium ion electrode 41 and the potassium ion electrode 42, wherein the sodium ion electrode 41, potassium ion electrode 42 and common electrode 28 are provided on the same support body, the common electrode 28 does not include internal solution, and the concentration ratio of the sodium ions to the potassium ions is measured based on a variable A that is obtained by the following Equation (1), A = E Na Q × α Na - E K Q × α K
    • 为了提供容易变薄且测量精度高的平面型多离子传感器,适用于测定样品溶液中钠离子与钾离子的浓度比的多离子传感器1包括:钠离子电极 41选择性地与钠离子反应; 与钾离子选择性反应的钾离子电极42; 和与钠离子电极41和钾离子电极42相比较的公共电极28,其中,钠离子电极41,钾离子电极42和公共电极28设置在同一支撑体上,公共电极28不包括 内部溶液和钠离子与钾离子的浓度比基于通过以下等式(1)获得的变量A来测量,A = E NaQ×±Na-EKQ×±K