首页> 外国专利> HIGH-PRECISION SEAWATER PH IN-SITU MEASUREMENT SYSTEM AND METHOD BASED ON INTEGRATED VALVE-TERMINAL APPARATUS

HIGH-PRECISION SEAWATER PH IN-SITU MEASUREMENT SYSTEM AND METHOD BASED ON INTEGRATED VALVE-TERMINAL APPARATUS

机译:基于集成阀终端设备的高精度海水pH原位测量系统和方法

摘要

High-precision Seawater pH in-situ Measurement System and Method based on Integrated Valve-terminal Apparatus;The present invention belongs to the technical field of marine monitoring, and specifically relates to a high-precision seawater pH in-situ measurement system and method based on an integrated valve-terminal apparatus capable of testing multiple reagents. The measurement system comprises a flow path module, an optical path module, and a circuit module; the flow path module comprises an integrated valve terminal which controls the direction of the flow path, said flow path module being used for performing seawater sample injection, reagent sample injection, and mixing; the flow path is controlled by means of the integrated valve terminal; when measuring the seawater pH in situ, first, seawater is injected into the flow path to determine the blank light intensity; then an indicator is injected into the flow path, the flow path is closed into a loop, and seawater and the indicator are mixed in the loop; after mixing is complete, the light intensity of the mixed solution is measured, the absorbance is calculated, and thus the seawater pH is calculated. A valve terminal apparatus is used as the flow path structure of the present invention, and has the features of small dead volume, compact structure, and low power consumption, and is capable of achieving complete mixing of seawater and indicator, improving the stability of instrument measurement.
机译:基于集成阀终端设备的高精度海水pH原位测量系统和方法;本发明属于海洋监测技术领域,具体涉及一种高精度海水pH原位测量系统和基于方法在能够测试多种试剂的集成阀终端设备上。测量系统包括流路模块,光路模块和电路模块;流路模块包括控制流动路径方向的集成阀端子,所述流动路径模块用于执行海水样品喷射,试剂样品喷射和混合;通过集成阀端子控制流动路径;在原位测量海水pH时,首先,将海水注入流动路径以确定空白光强度;然后将指示器注入到流动路径中,流动路径被关闭到环中,海水和指示器在环中混合;混合完成后,测量混合溶液的光强度,计算吸光度,从而计算海水pH。阀终端设备用作本发明的流动路径结构,具有小的死量,结构紧凑,功耗低,并且能够实现海水和指示器的完全混合,提高仪器的稳定性测量。

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