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首页> 外文期刊>Minerals Engineering >Affinity of dual energy X-ray transmission sensors on minerals bearing heavy rare earth elements
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Affinity of dual energy X-ray transmission sensors on minerals bearing heavy rare earth elements

机译:双能X射线传动传感器对耐重稀土元素的矿物质的亲和力

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This work demonstrates the effective use of automatic sensor-based sorting technology as a viable separation method for rare earth element (REE) rich ores composed primarily of xenotime minerals with gagarinite-(Y) and fluocerite-(Ce, La) inclusions. A dual energy X-ray transmission (DE-XRT) sensor affinity was used to evaluate forty-two heavy rare earth element (HREE) ore grab samples from the Madeira deposit. These samples and separated products were scanned by the sensor under many operating parameters. Subsequent analyses, including petrographic and multi-element chemical analyses were performed on the grab samples. Specific mass tests were also compared with energy attenuation curves from the sensor, which correlated strongly with every concentration stage the highest achieved density being 3.01 g/cm(3). The best estimated HREE recovery from laboratory-scale sorting of the samples identified by the sensor was effectively 100%, however this occurred in conjunction with a mass recovery equal to 97% of the feed. Such results are expected knowing that the sample method was not entirely representative. Ongoing research into automatic sorting technology for the upgrading of Brazilian ores is being performed by the Federal University of Rio Grande do Sul (UFRGS), Brazil.
机译:这项工作表明,基于自动传感器的分类技术的有效利用作为稀土元素(REE)的可行分离方法,主要是富含杂皮物 - (Y)和荧光细胞 - (CE,LA)夹杂物的Xenotime矿物组成的富含矿石。使用双能X射线传输(DE-XRT)传感器亲和力来评估来自马德拉矿床的42-2重稀土元素(HREE)矿石抓取样品。在许多操作参数下,传感器扫描这些样品和分离的产品。随后的分析,包括岩体和多元素化学分析在抓取样品上进行。还将特定的质量试验与来自传感器的能量衰减曲线进行比较,其与每个浓度阶段强烈相关的最高达到的密度为3.01g / cm(3)。从传感器识别的样品的实验室范围分选的最佳估计的HREE恢复有效100%,然而这与等于97%的质量恢复相结合。这些结果预计知道样品方法并不完全代表性。在巴西联邦Rio Grande Do Sul(UFRGS)升级为升级巴西矿石的自动排序技术正在进行研究。

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