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Focused Beam Reflectance Measurement for Monitoring the Extent and Efficiency of Flocculation in Mineral Systems

机译:聚焦光束反射率测量,用于监测矿物系统中絮凝的程度和效率

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摘要

Focused beam reflectance measurement (FBRM), where a scanning laser focused through a sapphire window measures real-time reflected chord distributions without solids dilution, is attractive for characterizing flocculation performance. An enhanced measurement principle in new FBRM instruments has implications for flocculation studies, demonstrated using hematite in synthetic Bayer liquor. Comparisons of previous (M500) and new (G400) instruments were complicated by the impact of their different physical dimensions upon flocculation hydrodynamics, but the G400 clearly measured larger chords. The original measurement principle based on a reflected intensity threshold counts large low-density aggregates as multiple chords; in contrast, the change to "edge detection" (very low threshold) is more likely to see a single chord, an advantage for studying mineral systems (aggregates often >500 μm). The G400 also captures bimodal character in unweighted chord distributions, producing distinct peaks for aggregates and fines after suboptimal flocculation; such peaks are rarely well resolved in older FBRM.
机译:聚焦光束反射率测量(FBRM),通过蓝宝石窗口聚焦的扫描激光在没有固体稀释的情况下测量实时反射的弦分布,对于表征絮凝性能很有吸引力。新的FBRM仪器中增强的测量原理对絮凝研究具有重要意义,这在合成拜耳液中使用赤铁矿进行了证明。以前(M500)和新(G400)乐器的比较,由于它们不同的物理尺寸对絮凝流体动力学的影响而变得复杂,但是G400清楚地测量到较大的弦。基于反射强度阈值的原始测量原理将大的低密度集合体计为多个和弦。相反,对“边缘检测”(非常低的阈值)的更改更可能看到一个和弦,这对于研究矿物系统(合计通常> 500μm)而言是一个优势。 G400还捕获了未加权弦分布中的双峰特征,在次优絮凝后产生了明显的聚集体和细粒峰;在较旧的FBRM中,很少能很好地解决此类峰。

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