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Effect of Tourmaline-Doped on the Far Infrared Emission of Iron Ore Tailings Ceramics

机译:电气石掺杂对铁矿石尾矿陶瓷远红外发射的影响

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摘要

Iron ore tailings as secondary resources have been of great importance to many countries in the world. Their compositions are similar to that of infrared emission ceramics, but there are few reports about it. In addition, tourmaline has high infrared emission properties due to its unique structure. With the purpose of expanding functional utilization of iron ore tailings, as well as reducing the production cost of far infrared ceramics, a new kind of far infrared emission ceramics was prepared by using iron ore tailings, calcium carbonate, silica, and natural tourmaline. The ceramics powders were characterized by Fourier transform infrared spectroscope, X-ray diffraction and scanning electron microscopy, respectively. The results show that after being sintered at 1065 degrees C, the percentage of pseudobrookite and lattice strain of samples increased with increasing the elbaite content. Furthermore, the added tourmaline was conducive to the densification sintering of ceramics. The appearance of Li-O vibration at 734.73 cm(-1), as well as the strengthened Fe-O vibration at 987.68 cm(-1) were attributed to the formation of Li0.375Fe1.23Ti1.4O5 solid solution, which led the average far infrared emissivity of ceramics increase from 0.861 to 0.906 within 8-14 mu m.
机译:铁矿石尾矿作为第二资源对世界上许多国家都非常重要。它们的组成与红外发射陶瓷相似,但是很少有报道。另外,电气石由于其独特的结构而具有高的红外发射特性。为了扩大铁矿石尾矿的功能利用,并降低远红外陶瓷的生产成本,利用铁矿石尾矿,碳酸钙,二氧化硅和天然电气石制备了一种新型的远红外发射陶瓷。用傅立叶变换红外光谱仪,X射线衍射仪和扫描电子显微镜对陶瓷粉进行了表征。结果表明,在1065℃下烧结后,随钙铁矿含量的增加,假板钛矿的百分比和晶格应变增加。此外,所添加的电气石有利于陶瓷的致密烧结。 Li-O在734.73 cm(-1)处振动的出现以及在Fe.O在987.68 cm(-1)处振动的增强归因于Li0.375Fe1.23Ti1.4O5固溶体的形成,从而导致陶瓷的平均远红外发射率在8-14微米之间从0.861增加到0.906。

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