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    • 3. 发明申请
    • CONTINUOUS FLOW TITRATION
    • 连续流量
    • WO2002075254A2
    • 2002-09-26
    • PCT/EP2002/002854
    • 2002-03-14
    • AKZO NOBEL N.V.EKA CHEMICALS ABROERAADE, JohanRICE, Matthew
    • ROERAADE, JohanRICE, Matthew
    • G01F
    • G01N31/166Y10T436/116664
    • The present invention relates to a method for titration comprising guiding a sample to be tritrated through a conduit, adding a reagent to said conduit at at least two entrance positions along said conduit in such a manner that said reagent will react with the sample within at least one individual sector of the conduit, defined as the space between two consecutive entrance positions or a final individual sector defined between a final entrance position and a sample exit point of the conduit, while at least one detection device positioned at the end of each sector of said conduit register the chemical and/or physical status. A pressure difference is provided between the reagent delivery device and the sample conduit such that the pressure difference measured between the reagent delivery device and the end of the final individual sector is controlled to be greater than the total pressure drop between the sample delivery point and the end of the final individual sector. The invention further relates to an arrangement for carrying out said method.
    • 本发明涉及一种用于滴定的方法,包括引导要通过导管进行研磨的样品,将所述试剂在沿所述导管的至少两个入口位置处加入到所述导管中,使得所述试剂将至少在所述样品中与样品反应 管道的一个单独部分被定义为在两个连续入口位置之间的空间或在最终进入位置和导管的样品出口点之间限定的最终单个扇区,而位于每个扇区末端的至少一个检测装置 所述管道注册化学和/或物理状态。 在试剂输送装置和样品导管之间提供压力差,使得在试剂输送装置与最终单个扇区的末端之间测量的压力差被控制为大于样品输送点和样品输送点之间的总压降 最终个人部门的结束。 本发明还涉及一种用于执行所述方法的装置。
    • 10. 发明申请
    • CONTINUOUS FLOW TITRATION
    • 连续流量
    • WO02075254A3
    • 2003-04-17
    • PCT/EP0202854
    • 2002-03-14
    • AKZO NOBEL NVROERAADE JOHANRICE MATTHEWEKA CHEMICALS AB
    • ROERAADE JOHANRICE MATTHEW
    • G01N31/16G01N37/00
    • G01N31/166Y10T436/116664
    • The present invention relates to a method for titration comprising guiding a sample to be tritrated through a conduit, adding a reagent to said conduit at at least two entrance positions along said conduit in such a manner that said reagent will react with the sample within at least one individual sector of the conduit, defined as the space between two consecutive entrance positions or a final individual sector defined between a final entrance position and a sample exit point of the conduit, while at least one detection device positioned at the end of each sector of said conduit register the chemical and/or physical status. A pressure difference is provided between the reagent delivery device and the sample conduit such that the pressure difference measured between the reagent delivery device and the end of the final individual sector is controlled to be greater than the total pressure drop between the sample delivery point and the end of the final individual sector. The invention further relates to an arrangement for carrying out said method.
    • 本发明涉及一种用于滴定的方法,包括引导要通过导管进行研磨的样品,将所述试剂在沿所述导管的至少两个入口位置处加入到所述导管中,使得所述试剂将至少在所述样品中与样品反应 管道的一个单独部分被定义为在两个连续入口位置之间的空间或在最终进入位置和导管的样品出口点之间限定的最终单个扇区,而位于每个扇区末端的至少一个检测装置 所述管道注册化学和/或物理状态。 在试剂输送装置和样品导管之间提供压力差,使得在试剂输送装置与最终单个扇区的末端之间测量的压力差被控制为大于样品输送点和样品输送点之间的总压降 最终个人部门的结束。 本发明还涉及一种用于执行所述方法的装置。