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首页> 外文期刊>Journal of Environmental Management >Optical, magnetic and electrical properties of new ceramics/lead silicate glass composites recycled from lead crystal wastes
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Optical, magnetic and electrical properties of new ceramics/lead silicate glass composites recycled from lead crystal wastes

机译:新型陶瓷/铅硅酸盐玻璃复合材料的光学,磁性和电性能从铅晶体废物中再循环

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摘要

Nowadays, the disposal of industrial wastes is an ablaze issue worldwide, especially those containing hazardous materials. Lead silicate glass waste (LSG) produced during lead crystal glass manufacturing, which contains about 30% of toxic lead compounds, belongs to this category. This work aims to adopt an innovative clean method to convert this waste into novel advanced ceramic materials via an environmental friendly method. Chromia Cr_2O_3 and hematite Fe_2O_3 ceramics with different content (0, 5, 10, 15%) are added separately to the solid wastes of LSG recovered from national crystal glass industry to obtain various ceramics/LSG composites by pressureless sintering methods. Different properties of the produced composites are evaluated in terms of phase's identification and microstructural features. Optical properties in terms of absorbance, reflectance, band gap (E_g), refractive index (n) and photoluminescence (PL) are investigated. Magnetic and electrical properties are inclusively studied. Results indicated that, an addition of chromia and hematite as well as increasing their content tc 15% has enhanced the microstructural features, optical, electrical and magnetic properties of the obtained composites. Cr_2O_3/LSG composites are considered as promising optical and electrical materials. However. Fe_2O_3/LSG composites showed the highest optical and magnetic properties. They are strongly recommended ir optoelectronic and magneto-optical applications.
机译:如今,工业废物的处置是全球燃烧的问题,特别是那些含有危险物质的爆炸性问题。铅晶体玻璃制造期间产生的铅硅酸盐玻璃废料(LSG),其含有约30%的有毒铅化合物,属于该类别。这项工作旨在采用一种创新的清洁方法,通过环保方法将此废物转化为新颖的先进陶瓷材料。 Chromia CR_2O_3和血液霉素FE_2O_3具有不同含量(0,5,10,15%)的陶瓷被分别加入到由国家水晶玻璃工业中恢复的LSG的固体废物,通过无压烧结方法获得各种陶瓷/ LSG复合材料。在相位的鉴定和微观结构特征方面评估所产生的复合材料的不同性质。研究了吸光度,反射率,带隙(E_G),折射率(N)和光致发光(PL)的光学性质。磁性和电气性质是包容性的。结果表明,添加染色氧化物和赤铁矿以及增加其含量Tc 15%,增强了所得复合材料的微观结构特征,光学,电气和磁性。 CR_2O_3 / LSG复合材料被认为是有前途的光学和电气材料。然而。 FE_2O_3 / LSG复合材料显示出最高的光学和磁性。它们是强烈推荐的IR光电和磁光应用。

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