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    • 63. 发明申请
    • Analyte detection via electrochemically generated reagent
    • 通过电化学生成的试剂进行分析物检测
    • US20080241932A1
    • 2008-10-02
    • US11731138
    • 2007-03-30
    • Martin W. KendigChuan-Hua ChenD. Morgan TenchJeffrey F. DeNataleFrederick M. Discenzo
    • Martin W. KendigChuan-Hua ChenD. Morgan TenchJeffrey F. DeNataleFrederick M. Discenzo
    • G01N33/00B01J19/00G01N21/01
    • G01N33/02G01N21/272G01N33/1826Y02A20/206
    • Electrochemical devices, methods, and systems for detecting and quantifying analytes are disclosed. A chemical detection reagent is locally generated in a test solution by electrochemical reaction of a precursor compound caused to migrate into the test solution from a precursor solution separated from the test solution by a cell separator. This approach provides precise metering of the reagent, via the charge passed, and avoids the need to store a reagent solution that may be chemically unstable. In one embodiment, the starch concentration in a colloidal solution can be measured via spectroscopic detection of a blue complex formed by the interaction of starch with iodine produced, on demand, by electrochemical oxidation of iodide ion. The approach may also be used to characterize certain types of analytes. The invention is amenable to automation and is particularly useful for on-line monitoring of production processes, including the inclusion of feed back loop mechanisms for process control.
    • 公开了用于检测和定量分析物的电化学装置,方法和系统。 化学检测试剂在测试溶液中通过电化学反应局部产生,所述前体化合物通过细胞分离器从与测试溶液分离的前体溶液迁移到测试溶液中。 该方法通过经过的电荷提供了试剂的精确计量,并且避免了存储可能化学不稳定的试剂溶液的需要。 在一个实施方案中,胶体溶液中的淀粉浓度可以通过光谱检测通过淀粉与产生的碘的相互作用形成的蓝色络合物,根据需要通过碘化物离子的电化学氧化来测量。 该方法也可用于表征某些类型的分析物。 本发明适用于自动化,并且特别适用于生产过程的在线监测,包括包括用于过程控制的反馈循环机制。
    • 64. 发明授权
    • Method and apparatus for monitoring and measuring oil spills
    • 监测和测量漏油的方法和装置
    • US07009550B2
    • 2006-03-07
    • US10601082
    • 2003-06-20
    • Peter Moeller-Jensen
    • Peter Moeller-Jensen
    • G01S13/95
    • G01N33/1833G01S7/411G01S13/88G01V11/00Y02A20/206
    • The present invention relates to an oil spill identification system and oil spill identification sensors to be used in connection with this system. The system is used primarily on fixed offshore structures, but may also be used on fixed onshore constructions. The sensor comprises a combination of a radar and at least a microwave radiometer. The data collected are transmitted to a control station. Preferably, the transmittal takes place at pixel level between the sensors and the control station. The control station processes the data received at pixel level and transmits data to an end-user, preferably through the internet. The invention also relates to a method for utilizing the system and a use of the system.
    • 本发明涉及与该系统结合使用的漏油识别系统和漏油识别传感器。 该系统主要用于固定式海上结构,但也可用于固定陆上结构。 传感器包括雷达和至少微波辐射计的组合。 所收集的数据被传送到控制站。 优选地,传送在传感器和控制站之间的像素级发生。 控制站处理以像素级接收的数据,并且最好通过因特网向最终用户发送数据。 本发明还涉及一种利用该系统和该系统的使用的方法。
    • 67. 发明申请
    • Method and device for oil-in-water measurement
    • 水包油测量方法和装置
    • US20010003426A1
    • 2001-06-14
    • US09732009
    • 2000-12-08
    • Daniel MatterWalter RueggThomas KleinerJohn Anthony Byatt
    • G01R027/08
    • G01N33/1833G01N27/226Y02A20/206
    • The present invention discloses a method and a sensor (1) for oil-in-water measurement, in particular for the oil industry. In an electric measuring cell (7, 12) a capacitance is measured as a measure of an oil concentration in the water flowing through or in the accumulation filter (16, 16a, 16b). In order to reduce the maintenance requirement, the measuring cell (7, 12) is automatically calibrated at recurring time intervals with clean water (FIG. 1) and/or flushed with water, possibly oil-contaminated, in the back-flushing direction (FIG. 2). Advantages of the invention are, inter alia, reduced signal drift, improved long-term reliability and a long service life without monitoring or filter exchange. Important exemplary embodiments relate to: a measuring cell (7, 12) with a long measuring and short flushing/calibration cycle, a measuring cell (7, 12) with a plurality of accumulation filters (16a, 16b) whose measuring cycles supplement one another in time, a cross-flow filter (2) for oil enrichment upstream of the measuring cell (7, 12) and a compact, pressure-resistant cylindrical ring-type filter (13) made from porous ceramic (16, 16a, 16b) with measuring and flushing connections radially (17a, 17b, 18a, 18b) and axially (17c, 18c).
    • 本发明公开了一种用于水中测量的方法和传感器(1),特别是用于石油工业。 在电测量单元(7,12)中,测量电容量作为流过或累积滤波器(16,16a,16b)的水中的油浓度的量度。 为了减少维护要求,测量单元(7,12)以清洁的水(图1)以重复的时间间隔被自动校准和/或在反冲洗方向上用水冲洗(可能是油污染) 图2)。 本发明的优点尤其是降低了信号漂移,提高了长期可靠性和长的使用寿命,而无需监控或过滤器交换。 重要示例性实施例涉及:具有长测量和短冲洗/校准周期的测量单元(7,12),具有多个累积过滤器(16a,16b)的测量单元(7,12),其测量循环相互补充 在时间上,用于在测量单元(7,12)上游进行富油的交叉流过滤器(2)和由多孔陶瓷(16,16a,16b)制成的紧凑,耐压的圆柱形环形过滤器(13) (17a,17b,18a,18b)和轴向(17c,18c)的测量和冲洗连接。