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Lithium conducting ceramics for future electrochemical sensors in molten metals

机译:锂导电陶瓷,用于未来熔融金属中的电化学传感器

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摘要

Lithium 6 is the isotope required to generate in-situ tritium in fusion reactors. Because of that, lithium monitoring in lithium-lead eutectic (Pb-15.7Li) is of great importance for the performance of the liquid blanket. Lithium measurements will be required in order to proof tritium self-sufficiency in liquid metal breeding systems. On-line lithium sensors must be designed and tested in order to accomplish these goals.Solid state electrolytes have been successfully used for gas sensors in many applications. Sensors based on solid state electrolytes have several advantages: generally they are stable compounds which can withstand the harsh chemical environment of the melts, moreover its ionic conductivity increases with the temperature and the output signal (cell potential) is easy to measure.Lithium conducting electrolytes for molten metals are under development at the Electrochemical Methods Laboratory at Institut Quimic de Sarria (IQS) at Barcelona. Its qualification and performance are being tested. Li-probes for molten metals will be based on the use of ceramic type solid state electrolytes.In the present work, Li6BaLa2Ta2O12 was synthesized and characterized. A preliminary investigation of the compatibility and wetting tests of the Li ceramic was performed with molten lead. In future experiments it is expected to evaluate the ceramic compatibility with molten PbLi.
机译:锂6是在聚变反应堆中产生原位required所需的同位素。因此,锂铅共晶(Pb-15.7Li)中的锂监测对于液层的性能至关重要。为了证明liquid在液态金属育种系统中的自给自足,将需要进行锂测量。为了实现这些目标,必须对在线锂传感器进行设计和测试。固态电解质已在许多应用中成功用于气体传感器。基于固态电解质的传感器具有几个优点:通常它们是稳定的化合物,可以承受苛刻的熔体化学环境,而且其离子电导率随温度而增加,并且输出信号(电池电势)易于测量。巴塞罗那Quimic de Sarria研究所(IQS)的电化学方法实验室正在开发用于熔融金属的产品。其资格和性能正在测试中。用于熔融金属的锂探针将基于陶瓷型固态电解质的使用。在本工作中,合成并表征了Li6BaLa2Ta2O12。用熔融铅对Li陶瓷的相容性和润湿性进行了初步研究。在未来的实验中,有望评估陶瓷与熔融PbLi的相容性。

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