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    • 1. 发明授权
    • Sodium ion sensor
    • 钠离子传感器
    • US5120422A
    • 1992-06-09
    • US663423
    • 1991-03-01
    • Meilin LiuAshok V. Joshi
    • Meilin LiuAshok V. Joshi
    • G01N27/30G01N27/333G01N27/416
    • G01N27/333
    • A sodium ion sensor having a composite electrolyte is disclosed. The sodium ion sensor has an outer electrolyte which is insensitive to water and has a high transport activity for sodium ions and an inner electrolyte which is a thin membrane having a very high sodium ion selectivity. The sodium ion sensor having such an electrolyte is sensitive only to the transport of sodium ions and may be operated in aqueous solutions without buffering and in the presence of other alkali ions and alkaline earth metal ions. Sensors of this type operate in EMF mode to give a substantially instantaneous determination of the sodium ion concentration of the aqueous medium being analyzed. The sensor may be used as an on-line sensor directly exposed to the medium to be analyzed.
    • 公开了具有复合电解质的钠离子传感器。 钠离子传感器具有对水不敏感且对钠离子具有高传输活性的外部电解质和作为具有非常高的钠离子选择性的薄膜的内部电解质。 具有这种电解质的钠离子传感器仅对钠离子的运输敏感,并且可以在没有缓冲的水溶液中和在其它碱离子和碱土金属离子的存在下操作。 这种类型的传感器以EMF模式工作,以便基本上即时测定所分析的水性介质的钠离子浓度。 传感器可以用作直接暴露于待分析介质的在线传感器。
    • 9. 发明申请
    • METHOD FOR DELIVERING BENEFICIAL LIQUIDS AT STEADY RATE
    • 以稳定速度递送受益液体的方法
    • US20120037658A1
    • 2012-02-16
    • US13281288
    • 2011-10-25
    • John Howard GordonAshok V. JoshiTruman WoldSai Bhavaraju
    • John Howard GordonAshok V. JoshiTruman WoldSai Bhavaraju
    • B67D7/16
    • A01M1/2044A61L9/12Y10T137/2931
    • A method for delivering a beneficial agent is disclosed in one embodiment of the invention as including a water collection chamber. A water-transporting membrane is provided to communicate with the water collection chamber. An extraction chamber receives water through the water-transporting membrane, expanding the extraction chamber. A dispensing chamber, containing a beneficial agent, is configured to contract upon expanding the extraction chamber. This causes the dispensing chamber to expel the beneficial agent through a subterranean delivery channel, such as a rigid hollow spike. In certain embodiments, a rate adjustment mechanism may control the rate that water is received through the water-transporting membrane, thereby controlling the rate the beneficial agent is expelled. The water-transporting membrane has features that repel osmagent from passing through to the water collection chamber. The method features steady rate performance without refreshing the water chamber and low temperature sensitivity.
    • 在本发明的一个实施例中公开了一种递送有益剂的方法,包括一个收水室。 提供水输送膜以与收集室连通。 提取室通过水输送膜接收水,使提取室膨胀。 包含有益剂的分配腔被构造成在膨胀提取室时收缩。 这使得分配室通过地下输送通道(例如刚性中空尖峰)排出有益剂。 在某些实施例中,速率调节机构可以控制通过水输送膜接收水的速率,从而控制有益剂被排出的速率。 水输送膜具有排斥渗透到收集室的特征。 该方法具有稳定的速率性能,无需刷新水箱和低温灵敏度。