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Compatibility Study Between Synthetic Oil and Vitrified Wastes for Direct Thermal Energy Storage

机译:直接热能储存的合成油与玻璃化废料的相容性研究

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Compatibility tests were conducted between synthetic oil and potential solid filler materials in a thermocline tank built at the PROMES-CNRS laboratory. These experiments consisted of placing the oil and the solid materials together in small crucibles (2.3 L) and performing compatibility tests at 300 A degrees C and accelerated ageing tests at 330 A degrees C for 500 h. The mutual influence of the oil and the solid materials was assessed through different measurements: X-ray diffraction and scanning electron microscopy. The influence of the solid on the oil was assessed by measuring thermo-physical and chemical properties. While no significant degradation of the oil is measured at 300 A degrees C, at 330 A degrees C, an increase in the oil degradation rate was observed. Its density, thermal conductivity and specific heat did not change, but its viscosity showed a significant increase. However, after accelerated ageing tests at 330 A degrees C, the oil still shows good heat transfer performance. The solid crystalline structure did not change during the test but some of the samples seemed to absorb oil.
机译:在PROMES-CNRS实验室建造的恒温槽中,对合成油和潜在的固体填充剂材料之间进行了兼容性测试。这些实验包括将油和固体材料放在小坩埚(2.3 L)中,在300 A的温度下进行相容性测试,并在330 A的温度下进行500小时加速老化测试。通过不同的测量方法评估了油和固体材料的相互影响:X射线衍射和扫描电子显微镜。通过测量热物理和化学性质来评估固体对油的影响。虽然在300 A的温度下未观察到油的明显降解,但在330 A的温度下却观察到了油降解率的增加。其密度,热导率和比热没有变化,但其粘度却显示出明显的增加。但是,在330 A摄氏度下进行加速老化测试后,该油仍显示出良好的传热性能。在测试过程中,固体晶体结构没有改变,但是一些样品似乎吸收了油。

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