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Monitoring pH in corrosion engineering by means of thermally-produced iridium oxide electrodes

机译:通过热产生的氧化铱电极监测腐蚀工程中的pH

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摘要

A pH sensor to be used in highly alkaline media under continuous long-term immersion conditions is crucial in various engineering applications. This work develops the production protocol and posterior conditioning of thermally oxidized iridium (IrOx) electrodes to be used as potentiometric pH sensors embedded in highly alkaline environments such as concrete or cathodically protected steel in soil. The main investigated aspects for the desired applications are the potential-pH response, its reproducibility, accuracy, and oxygen dependency. The stability during long-term immersion is also studied in detail.\udThe studied IrOx electrodes responded to pH changes with slopes between -50 and -68 mV/pH unit, even after continuous immersion in alkaline solutions for almost 2 years. Additionally, the electrodes response did not show oxygen dependency. Our results highlight the importance of sufficient conditioning in alkaline media prior to use. When properly produced, conditioned, and pre-calibrated the electrodes reproducibly permit measuring the pH with a maximum error of 0.5 pH units over a range of at least pH 9 to 13.5. Preliminary results show that the studied electrodes are promising sensors for monitoring pH changes in concrete.
机译:在连续长期浸入条件下用于高碱性介质中的pH传感器在各种工程应用中至关重要。这项工作开发了热氧化铱(IrOx)电极的生产方案和后处理,以用作嵌入在高碱性环境(例如混凝土或土壤中受阴极保护的钢)中的电位pH传感器。所需应用的主要研究方面是电位-pH响应,其重现性,准确性和氧依赖性。 \ ud研究的IrOx电极即使在连续浸泡在碱性溶液中约2年后,其pH值仍在-50和-68 mV / pH单位之间变化,对pH变化也有响应。另外,电极响应不显示氧依赖性。我们的结果强调了使用前在碱性介质中进行充分调理的重要性。正确制作,调节和预校准电极后,可再现地允许在至少pH 9到13.5的范围内以0.5 pH单位的最大误差测量pH。初步结果表明,所研究的电极是监测混凝土pH变化的有前途的传感器。

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