首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Discovering the feasibility of using the radiation forces for recovering rare earth elements from coal power plant by-products
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Discovering the feasibility of using the radiation forces for recovering rare earth elements from coal power plant by-products

机译:发现利用辐射力从燃煤电厂副产品中回收稀土元素的可行性

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The feasibility of using laser separation for rare earth recovery from coal ashes was explored. To do so, laser-induced motion and travel distances of some rare earth and rare earth oxides (Lu2O3, Yb2O3, HfO2, Dy2O3, Ta2O5, Tm, Lu, Ho, TeO2, La2O3, Ho, TiO2, Fe2O3 Y2O3, GeO2, Sc2O3) and mineral compounds (MgO,CaO, Al2O3, SiO2, KCl) that are commonly found is coal ashes were numerically investigated. The investigations were carried out for particles in quiescent air, (T = 300 K, mu = 18.46 x 10 N-6 s/m(2), rho = 1.177 kg/m(3)) exposing to a CW laser beam of 6 mm in diameter and it was focused by a 500 mm focal length lens. The results showed that the separation distances between these elements varied from few micrometers to several millimeters and it became widened as the laser power increased. The important result presented here is that all rare earth oxides were separated and concentrated in a small area located near the beam waist while all other mineral compounds traveled further and concentrated in a small area far from the beam waist. Published by Elsevier B.V. on behalf of The Society of Powder Technology Japan. All right reserved.
机译:探索了使用激光分离从煤灰中回收稀土的可行性。为此,一些稀土和稀土氧化物(Lu2O3,Yb2O3,HfO2,Dy2O3,Ta2O5,Tm,Lu,Ho,TeO2,La2O3,Ho,TiO2,Fe2O3 Y2O3,GeO2,Sc2O3的激光诱导运动和行进距离)和矿物化合物(MgO,CaO,Al2O3,SiO2,KCl)的常见发现是煤灰进行了数值研究。研究了暴露于6 CW激光束中的静态空气中的颗粒(T = 300 K,mu = 18.46 x 10 N-6 s / m(2),rho = 1.177 kg / m(3))。直径为100毫米,并通过500毫米焦距镜头聚焦。结果表明,这些元素之间的分离距离从几微米到几毫米不等,并且随着激光功率的增加而扩大。此处提出的重要结果是,所有稀土氧化物均被分离并集中在靠近束腰的一小部分,而所有其他矿物化合物则进一步传播并集中在远离束腰的一小部分。由Elsevier B.V.代表日本粉末技术学会出版。保留所有权利。

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