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Quantitative measurement of beryllium-controlled redox of hydrogen fluoride in molten Flibe

机译:熔融Flibe中铍控制的氟化氢氧化还原的定量测量

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In order to investigate the viability of using Be as a redox agent in a molten Flibe (2LiF-BeF_2) blanket, a series of kinetics experiments were performed in which HF was bubbled through Flibe with varying concentrations of dissolved Be. The feed gas consisted of 910-1800 ppm HF and 0.1-0.2 vol.% H_2, with the balance comprised of He. A cylindrical rod of Be was contacted with the salt for periods of time ranging from 600 to 3600 s, resulting in mole fractions in the salt ranging from 4.3 x 10~(-5) to 2.6 x 10~(-4). Initially, high HF conversion levels in excess of 90% were observed. As HF reacted with the Be, the conversion levels slowly dropped over a period of several hours to a few days. A simple kinetic model, which is first order in both HF and Be concentration has been coupled with a non-mixed reactor model to yield a good fit to the data. Application of this model indicates that Be should be suitable for keeping the TF concentration in the salt below 0.02 ppb.
机译:为了研究在熔融的Flibe(2LiF-BeF_2)覆盖层中使用Be作为氧化还原剂的可行性,进行了一系列动力学实验,其中以不同的溶解Be浓度使HF鼓泡通过Flibe。原料气由910-1800 ppm HF和0.1-0.2 vol。%H_2组成,其余由He组成。 Be的圆柱形棒与盐接触的时间范围为600至3600 s,导致盐中的摩尔分数范围为4.3 x 10〜(-5)至2.6 x 10〜(-4)。最初,观察到高的HF转化率超过90%。当HF与Be反应时,转化率在数小时到数天的时间内缓慢下降。一个简单的动力学模型(在HF和Be浓度中都是一阶的)已经与非混合反应器模型耦合在一起,可以很好地拟合数据。该模型的应用表明,Be应适合使盐中的TF浓度保持在0.02 ppb以下。

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