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首页> 外文期刊>Acta Chimica Slovenica >Tungsten - Tungsten Trioxide Electrodes for the Long-term Monitoring of Corrosion Processes in Highly Alkaline Media and Concrete-based Materials
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Tungsten - Tungsten Trioxide Electrodes for the Long-term Monitoring of Corrosion Processes in Highly Alkaline Media and Concrete-based Materials

机译:长期监测高碱性介质和混凝土基材料中腐蚀过程的钨-三氧化钨电极

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摘要

The determination of pH in highly alkaline solutions and concrete materials is extremely important for monitoring or predicting the corrosion processes of reinforced concrete structures and to follow the hydration process of Portland cement fly-ash, micro silica and other materials used in concrete manufacturing. The corrosion of reinforced concrete structures and the hydration of pozzolanic materials are long-term processes, which means, that appropriate durable, and resilient pH electrodes are needed, for direct implantation regarding solid concrete bodies. The purpose of this work was to characterise the potentiometric and surface properties of tungsten electrodes after exposure to extreme alkaline solutions. The tungsten wire surface was activated at 800 °C for 30 min within an oxygen flow The formation of homogenous and compact multiple layers of WO3 crystals was observed using X-ray diffraction and scanning electron microscopy. X-ray diffraction of those tungsten electrodes exposed to saturated calcium hydroxide solution or the pore-water of cement-based materials during 10 months, indicated partly dissolved WO3. Two new compounds appeared on the electrodes surfaces; pure tungsten and CaWO4. The presence of tungsten was affecting any potentiometric response in acidic pH region (2-5) but in pH 5-12 region the response still remained linear with a slope of 42±2mV/pH unit. . . The W/WO3 electrode was suitable for the long-term monitoring of corrosion processes m concrete-based materials according to the pH changes as it has stable and repeatable responses to alkaline solutions (pH > 12). All the tested inter-ferring ions had no significant influence on electrode potential. The W/WO3 electrode is simple, robust, inexpensive, and temperature resistant and can be applied in potentiometric titrations as well as in batch and flow-injection analysis. The prepared electrode is a highly promising pH sensor for the monitoring of pH changes in highly alkaline capillary water of concrete.
机译:确定高碱性溶液和混凝土材料中的pH值对于监测或预测钢筋混凝土结构的腐蚀过程以及跟踪波特兰水泥粉煤灰,微硅粉和其他用于混凝土生产的材料的水合过程极为重要。钢筋混凝土结构的腐蚀和火山灰材料的水化是一个长期的过程,这意味着对于固体混凝土体的直接植入,需要适当的耐用且有弹性的pH电极。这项工作的目的是表征暴露在极端碱性溶液中后钨电极的电位和表面性质。钨丝表面在氧气流中在800°C下活化30分钟。使用X射线衍射和扫描电子显微镜观察到均匀且致密的WO3晶体多层形成。在10个月内暴露于饱和氢氧化钙溶液或水泥基材料的孔隙水中的那些钨电极的X射线衍射表明,WO3部分溶解。电极表面出现了两种新的化合物。纯钨和CaWO4。钨的存在会影响酸性pH范围(2-5)中的任何电位响应,但在pH 5-12范围内,响应仍保持线性,斜率为42±2mV / pH单位。 。 。 W / WO3电极适用于根据pH值变化对混凝土基材料的腐蚀过程进行长期监控,因为它对碱溶液具有稳定且可重复的响应(pH> 12)。所有测试的干扰离子对电极电位均无明显影响。 W / WO3电极简单,坚固,便宜且耐高温,可用于电位滴定以及批量和流动注射分析。制备好的电极是一种非常有前途的pH传感器,用于监测混凝土的高碱性毛细管水中pH的变化。

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