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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Lithium Vapor Chemistry of Hyper-Stoichiometric Lithium Metatitanate Li2.12(2)TiO3+y
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Lithium Vapor Chemistry of Hyper-Stoichiometric Lithium Metatitanate Li2.12(2)TiO3+y

机译:超级化学计量锂化学锂化学锂化学锂化物Li2.12(2)TiO3 + Y.

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摘要

Developing a better ceramic breeder (Li-containing oxide) is a key challenge for realizing fuel-self-sufficient fusion reactors. Ceramic breeder pebbles of hyper-stoichiometric lithium metatitanate, Li2+xTiO3+y (Li/Ti > 2), have been developed for a demonstration fusion reactor as high Li density enhances fuel tritium production. Previous studies have reported that Li loss by vaporization at high temperatures was largely enhanced by the increase in Li/Ti ratio and environmental moisture concentration. Minimizing the Li loss is a key issue for sufficient tritium breeding and reduced corrosion of structural steel. However, a suitable environmental parameter for hyper-stoichiometric Li2+xTiO3+y pebbles has not yet been determined because of the unavailability of thermodynamic data. Herein, a solid/gas equilibria for Li2.12(2)TiO3+y was investigated by measuring vapor pressures using atmosphere controllable Knudsen cell high temperature mass spectrometry. The enhanced thermodynamic activities of Li and Li2O in Li2.12(2)TiO3+y in comparison with those in stoichiometric Li2TiO3 were obtained as functions of temperature and oxygen concentration. The equilibrium constants were used to achieve the optimum moisture concentration that can suppress the vapor reactions in a cylindrical breeding zone with inhomogeneous temperature distribution.
机译:开发更好的陶瓷饲养剂(含含锂氧化物)是实现燃料自充足融合反应器的关键挑战。由于高锂密度增强了燃料氚产量,已经开发了陶瓷种植卵石,Li2 + Xtio3 + Y(Li / Ti> 2),用于演示融合反应器,增强燃料氚产量。先前的研究报道,通过增加Li / Ti比和环境水分浓度,在很大程度上增强了高温下蒸发的锂损失。最小化锂损失是足够的氚繁殖和减少结构钢腐蚀的关键问题。然而,由于热力学数据的不可用性,尚未确定具有超级化学计量Li2 + XTiO3 + Y鹅卵石的合适的环境参数。这里,为了Li2.12(2)的固/气平衡TiO3基+ Y是通过测量用气氛可控的努森池高温质谱蒸汽压影响。与化学计量Li2TiO3中的Li2.12(2)TiO3 + Y中的Li和Li2O的增强的热力学活性作为温度和氧浓度的函数获得。平衡常数用于实现最佳水分浓度,其可以抑制圆柱形育种区中的蒸气反应,其具有不均匀的温度分布。

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