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On the relationship between the specific heat enhancement of salt-based nanofluids and the ionic exchange capacity of nanoparticles

机译:盐基纳米流体比热增强与纳米颗粒离子交换能力的关系

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摘要

Nanoparticles have been used in thermal applications to increase the specific heat of the molten salts used in Concentrated Solar Power plants for thermal energy storage. Although several mechanisms for abnormal enhancement have been proposed, they are still being investigated and more research is necessary. However, this nanoparticle-salt interaction can also be found in chemical applications in which nanoparticles have proved suitable to be used as an adsorbent for nitrate removal given their high specific surface, reactivity and ionic exchange capacity. In this work, the ionic exchange capacity mechanism for the nanoparticles functionalization phenomenon was evaluated. The ionic exchange capacity of silica and alumina nanoparticles dispersed in lithium, sodium and potassium nitrates was measured. Fourier-transform infrared spectroscopy tests confirmed the adsorption of nitrate ions on the nanoparticle surface. A relationship between the ionic exchange capacity of nanoparticles and the specific heat enhancement of doped molten salts was proposed for the first time.
机译:纳米颗粒已经用于热应用中,以增加在集中式太阳能发电厂中用于热能存储的熔融盐的比热。尽管已经提出了几种异常增强的机制,但是它们仍在研究中,需要进行更多的研究。然而,这种纳米颗粒-盐的相互作用也可以在化学应用中发现,其中考虑到纳米颗粒具有高的比表面积,反应性和离子交换能力,它们被证明适合用作硝酸盐去除的吸附剂。在这项工作中,评估了纳米粒子功能化现象的离子交换容量机理。测量了分散在硝酸锂,钠和钾中的二氧化硅和氧化铝纳米粒子的离子交换容量。傅里叶变换红外光谱测试证实了硝酸根离子在纳米颗粒表面的吸附。首次提出了纳米粒子的离子交换能力与掺杂熔融盐比热增强之间的关系。

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