首页> 外文会议>Biennial Worldwide Congress >APPLICATION OF ELECTRON PARAMAGNETIC RESONANCE SPECTROSCOPY FOR THE IDENTIFICATION OF BONDING AGENTS IN MAGNESIA-CARBON REFRACTORIES
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APPLICATION OF ELECTRON PARAMAGNETIC RESONANCE SPECTROSCOPY FOR THE IDENTIFICATION OF BONDING AGENTS IN MAGNESIA-CARBON REFRACTORIES

机译:电子顺磁共振光谱在氧化镁碳耐火料中粘合剂鉴定的应用

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Bonding agent is playing a very vital role for the performance of magnesia-carbon refractories in the lining of converters, ladles, electric furnaces, and other metallurgical units. In such materials, the bonds between the refractory oxide particles and the solid carbon-containing substance are realized using a carbonaceous binder which is subjected to transformations according to the oligomer-polymer-coke scheme due to thermal effects in a non-oxidizing atmosphere. Many a times reverse engineering is essential to identify the type of organic binder used in the magnesia-carbon system for benchmarking the product due to its excellent performance. Therefore, a confirmatory test is required to identify the same. In this paper, Electron Paramagnetic Resonance (EPR) spectroscopy which is a very powerful tool for detecting paramagnetic species has been successfully applied for the identification of type of bonding agents used in the magnesia-carbon refractories. Resin bonded magnesia-carbon brick shows very weak EPR signal, whereas, pitch bonded magnesia-carbon brick exhibits very strong EPR signal due to the formation of paramagnetic centers.
机译:粘接剂对转换器,钢材,电炉和其他冶金单元衬里的玉米碳耐火材料的性能进行了非常重要的作用。在这样的材料,该耐火氧化物颗粒和固体含碳物质之间的键所使用的根据低聚物 - 聚合物 - 焦炭方案进行变换由于在非氧化气氛热效应的碳质粘合剂实现。许多次数逆向工程对于识别氧化镁 - 碳系统中使用的有机粘合剂的类型是必不可少的,因为它由于其优异的性能而基准。因此,需要确认测试来识别相同的测试。在本文中,是一种用于检测顺磁性物种的一个非常强大的工具的电子顺磁共振(EPR)光谱,用于鉴定氧化镁 - 碳耐火材料中使用的粘合剂类型。树脂键合氧化镁 - 碳砖显示出非常弱的EPR信号,而沥青粘结的氧化镁 - 碳砖由于形成顺磁心的形成而具有非常强大的EPR信号。

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