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核聚变的自发性:通过经典热力学进行的定性分析。

Spontaneity of nuclear fusion: a qualitative analysis via classical thermodynamics.

作者信息

Tosti Silvano

机构信息

Dept. of Fusion and Technology for Nuclear Safety and Security, ENEA C.R. Frascati, Via E. Fermi 45, Frascati, 00044, Italy.

出版信息

Open Res Eur. 2021 Oct 12;1:67. doi: 10.12688/openreseurope.13738.3. eCollection 2021.

Abstract

So far the feasibility of nuclear reactions has been studied only through the evaluation of the reaction rate, which gives us information about the kinetics, while the thermodynamic analysis has been limited to evaluations of the change in enthalpy without any consideration of the change in entropy. This work examines the thermodynamics of nuclear fusion reactions through a simplified approach. The analysis introduces the thermodynamic study of fission and fusion reactions through their comparison with a chemical process. The main result is that fission reactions are always spontaneous (ΔG < 0) since a lot of energy is released in the form of heat and the system moves spontaneously towards a more disordered state. In contrast, fusion reactions are spontaneous only when the enthalpic contribution of the change in Gibbs energy overcomes the entropic contribution. This condition is verified when the temperature of the process is below a characteristic value T*, calculated as the ratio between the energy corresponding to the mass defect and the change of entropy of the fusion reaction. Due to the unavailability of data related to entropy changes in fusion reactions, only a qualitative thermodynamic analysis has been carried out. Through such analysis, the influence of the operating conditions over the spontaneity of fusion processes has been discussed. The final considerations emphasize the role of the thermodynamics analysis that should be implemented in the current studies that, so far, have been mainly based on the assessment of the reaction rate and exothermicity of fusion reactions.

摘要

到目前为止,核反应的可行性仅通过反应速率的评估进行了研究,反应速率为我们提供了有关动力学的信息,而热力学分析仅限于对焓变的评估,未考虑熵变。这项工作通过一种简化方法研究了核聚变反应的热力学。该分析通过将裂变和聚变反应与一个化学过程进行比较,引入了对它们的热力学研究。主要结果是,裂变反应总是自发的(ΔG < 0),因为大量能量以热的形式释放,系统自发地朝着更无序的状态移动。相比之下,聚变反应只有在吉布斯自由能变化的焓贡献超过熵贡献时才是自发的。当过程温度低于一个特征值T时,这个条件得到验证,T计算为与质量亏损对应的能量与聚变反应熵变的比值。由于缺乏与聚变反应熵变相关的数据,仅进行了定性的热力学分析。通过这种分析,讨论了操作条件对聚变过程自发性的影响。最后的思考强调了热力学分析在当前研究中应发挥的作用,到目前为止,这些研究主要基于对聚变反应速率和放热性的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bc6/10446742/54f0fb68a2a6/openreseurope-1-15307-g0000.jpg

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