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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >An electrochemical calibration unit for hydrogen analysers
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An electrochemical calibration unit for hydrogen analysers

机译:氢气分析仪的电化学校准装置

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Determination of hydrogen in solids such as high strength steels or other metals in the ppb or ppm range requires hot-extraction or melt-extraction. Calibration of commercially available hydrogen analysers is performed either by certified reference materials CRMs, often having limited availability and reliability or by gas dosing for which the determined value significantly depends on atmospheric pressure and the construction of the gas dosing valve. The sharp and sudden appearance of very high gas concentrations from gas dosing is very different from real effusion transients and is therefore another source of errors. To overcome these limitations, an electrochemical calibration method for hydrogen analysers was developed and employed in this work. Exactly quantifiable, faradaic amounts of hydrogen can be produced in an electrochemical reaction and detected by the hydrogen analyser. The amount of hydrogen is exactly known from the transferred charge in the reaction following Faradays law; and the current time program determines the apparent hydrogen effusion transient. Random effusion transient shaping becomes possible to fully comply with real samples. Evolution time and current were varied for determining a quantitative relationship. The device was used to produce either diprotium (H_2) or dideuterium (D_2) from the corresponding electrolytes. The functional principle is electrochemical in nature and thus an automation is straightforward, can be easily implemented at an affordable price of 1-5% of the hydrogen analysers price.
机译:要测定ppb或ppm范围内的固体(例如高强度钢或其他金属)中的氢,需要进行热萃取或熔融萃取。商用氢分析仪的校准可以通过认证的参考材料CRM(通常具有有限的可用性和可靠性)来进行,也可以通过气体定量进行,其确定值在很大程度上取决于大气压力和气体定量阀的结构。气体给料中非常高的气体浓度的突然和突然出现与实际的喷射瞬变非常不同,因此是另一个错误来源。为了克服这些局限性,开发了一种用于氢气分析仪的电化学校准方法,并将其用于这项工作。可以在电化学反应中产生精确定量的法拉第氢,并通过氢分析仪进行检测。根据法拉第定律,可以从反应中转移的电荷中确切得知氢的量;而当前的时间程序将确定视在的氢流出瞬态。随机渗出瞬态整形变得可能完全符合真实样品。为了确定定量关系,改变了进化时间和电流。该设备用于从相应的电解质中生产dip(H_2)或二氘(D_2)。该功能原理本质上是电化学的,因此自动化很简单,可以轻松地以氢分析仪价格的1-5%的可承受价格实施。

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