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首页> 外文期刊>International Journal of Mineral Processing >Characterization of structural changes of mechanically activated natural pyrite using XRD line profile analysis
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Characterization of structural changes of mechanically activated natural pyrite using XRD line profile analysis

机译:机械活化天然黄铁矿结构变化的特征分析

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摘要

In the present study, the X-ray diffraction line profile analysis was used for the characterization of structural changes in mechanically activated pyrite by a planetary ball mill. Applying the Williamson-Hall integral breadth and Warren-Averbach methods, comprehensive investigations were carried out on the XRD patterns in order to separate the crystallite size and microstrain contributions in XRD broadened patterns. The analysis of XRD patterns of mechanically activated pyrite indicated that no phase transformation occurred during milling operation. The results revealed that crystallite size and microstrain decreased and increased, respectively, during mechanical activation process. Volume weighted crystallite size (D-v), surface weighted crystallite size (D-s), strain (epsilon) and root mean square strain (RMSS) changed from 316 nm, 103.6 nm, 0.05% and 0.04% in initial pyrite to 57.73 nm, 25.1 nm, 0224% and 0.117%, respectively, in mechanically activated pyrite for 100 min. In addition, the lattice parameter of mechanically activated pyrite increased as a function of milling time, implying that pyrite lattice volumes were expanded probably due to vacancy formation. Regarding to shape parameter study, the crystallite size broadening portion is more than the strain broadening portion on the broadened peaks in the XRD patterns of mechanically activated pyrite. This may be related to the fracture toughness of pyrite lattice, implying that pyrite structure is refined mainly by decreasing crystallite size rather than lattice strain. From surface area and particle size analysis, it can be confirmed that the agglomeration begins after 50 min mechanical activation. The X-ray amorphization degree increases to about 70% after 100 min intensive milling, reflecting the refractory nature of pyrite. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本研究中,X射线衍射线轮廓分析用于表征行星式球磨机对机械活化的黄铁矿的结构变化。应用Williamson-Hall积分宽度和Warren-Averbach方法,对XRD图案进行了全面研究,以分离出XRD扩展图案中的晶粒尺寸和微应变贡献。机械活化的黄铁矿的XRD图谱分析表明,在铣削操作过程中未发生相变。结果表明,在机械活化过程中,微晶尺寸和微应变分别减小和增加。体积加权晶体尺寸(Dv),表面加权晶体尺寸(Ds),应变(ε)和均方根应变(RMSS)从初始黄铁矿中的316 nm,103.6 nm,0.05%和0.04%更改为57.73 nm,25.1 nm分别在机械活化的黄铁矿中100%,0224%和0.117%。另外,机械活化的黄铁矿的晶格参数随研磨时间的增加而增加,这暗示黄铁矿晶格体积可能由于空位形成而扩大。关于形状参数研究,在机械活化的黄铁矿的XRD图谱的加宽峰上,微晶尺寸加宽部分大于应变加宽部分。这可能与黄铁矿晶格的断裂韧性有关,这意味着黄铁矿结构主要是通过减小微晶尺寸而不是减小晶格应变来细化的。从表面积和粒度分析,可以确认在50分钟的机械活化后开始结块。经过100分钟的强化研磨,X射线非晶化程度增加到约70%,反映出黄铁矿的耐火性质。 (C)2014 Elsevier B.V.保留所有权利。

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