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Modeling the sharp deuterium release from beryllium co-deposits

机译:模拟铍共沉积物中氘的急剧释放

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Many studies have shown a sharp deuterium desorption from beryllium at around 450 K. In an attempt to model this sharp release, a new model was developed, describing the formation and decomposition of beryllium deuteride. Such a model was found to reproduce the sharp desorption peak in the thermal desorption spectrum. Moreover, in contrast to other models, the new model was able to reproduce the constant deuterium desorption from beryllium held at a constant elevated temperature. Fitting the modeling results to experimental data allowed us to determine the deuterium solubility limit in beryllium, which indicated an endothermic formation of beryllium deuteride. New values of the deuterium surface recombination coefficient were also obtained, differing from the ones found in the literature.
机译:许多研究表明,在约450 K时铍会从氘中急剧脱附。为了模拟这种急剧释放,尝试开发了一个描述氘化铍形成和分解的新模型。发现这种模型在热解吸谱中再现了尖锐的解吸峰。而且,与其他模型相比,新模型能够从保持在恒定高温下的铍重现恒定的氘脱附。将建模结果与实验数据进行拟合,我们可以确定铍在氘中的溶解度极限,这表明了氘化铍的吸热形成。还获得了氘表面复合系数的新值,与文献中发现的值不同。

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