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Behaviour of oxygen in the tin bath used in float glass production

机译:浮法玻璃生产中锡浴中氧气的行为

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摘要

The pO_2 of the tin melt and atmosphere in industrial tin baths for the production of float glass is continuously measured using oxygen sensors from the hot end to cold end. Under normal production conditions, the pO_2 of the atmosphere is determined by the water dissociation equilibrium. The measured partial oxygen pressures of the tin melt are higher than those of the atmosphere in a particular bay, indicating that the oxygen from the glass ribbon is entrapped in the tin melt underneath it. The oxygen level in the tin decreases on moving from the hot end to the cold end. A relation is derived to quantify the oxidizing or reducing effect of the atmosphere on the tin melt. It shows that the driving force for tin deoxidation is smallest in the hot end. Therefore, the water vapour content in the hot end atmosphere should be kept low. This can be achieved by intense venting and good side wall sealing in the hot end section. Back flow of the relatively water rich atmosphere from cold end to hot end should be prevented and a reduced tin temperature in the hot end also helps to keep the oxygen level of the tin melt low.
机译:使用氧气传感器从热端到冷端连续测量用于生产浮法玻璃的工业锡浴中锡熔体和气氛的pO_2。在正常生产条件下,大气的pO_2由水离解平衡决定。测得的锡熔液的部分氧气压力高于特定隔间中大气的氧气分压,这表明来自玻璃带的氧气被捕获在其下方的锡熔液中。从热端到冷端时,锡中的氧含量降低。得出一个关系以量化气氛对锡熔体的氧化或还原作用。结果表明,在热端,锡脱氧的驱动力最小。因此,热端气氛中的水蒸气含量应保持较低。这可以通过在热端部分进行强力排气和良好的侧壁密封来实现。应当防止相对富水的气氛从冷端回流到热端,并且降低热端的锡温度还有助于保持锡熔体的氧含量较低。

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