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An Evaluation of a Two-Stage Spiral Processing Ultrafine Bituminous Coal

机译:二级螺旋处理超细烟煤的评价

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Testing was conducted to evaluate the performance of a multistage Multotec SX7 spiral concentrator treating ultrafine bituminous coal. This spiral mimics a two-stage separation in that the refuse is removed after four turns, and the clean coal and middlings are repulped (without water addition) and then separated in the final three turns. Feed samples were collected from the spiral circuit of a coal cleaning plant located in southwestern Pennsylvania. The samples consisted of undeslimed cyclone feed (nominal - 0.15 mm) and deslimed spiral feed (nominal 0.15 0.053 mm). Testing was carried out to investigate the effects of slurry flow rate and solids concentration on spiral performance. Detailed size and ash analyses were performed on the spiral feed and product samples. For selected tests, float-sink and sulfur analyses were performed. In nearly all cases, ash reduction occurred down to approximately 0.025 mm, with some sulfur reduction occurring even in the - 0.025 mm interval. The separation of the + 0.025 mm material was not significantly affected by the presence of the - 0.025 mm material when treating the undeslimed feed. The - 0.025 mm material split in approximately the same ratio as the slurry, and the majority of the water traveled to the clean coal stream. This split ultimately increased the overall clean coal ash value. A statistical analysis determined that both flow rate and solids concentration affected the clean coal ash value and yield, though the flow rate had a greater effect on the separation.
机译:进行测试以评估多级Multotec SX7螺旋选矿机处理超细烟煤的性能。该螺旋模拟了两阶段的分离,即垃圾在四转后被清除,再将干净的煤和中煤重新制浆(不加水),然后在最后三转分离。进料样品是从宾夕法尼亚州西南部的一家洗煤厂的螺旋回路中收集的。样品由未脱泥的旋风进料(标称-0.15毫米)和脱泥的螺旋进料(标称0.15 0.053毫米)组成。进行测试以研究浆液流速和固体浓度对螺旋性能的影响。对螺旋进料和产品样品进行了详细的粒度和灰分分析。对于选定的测试,进行了浮沉和硫分析。在几乎所有情况下,灰分降低都发生在约0.025 mm的地方,甚至在-0.025 mm的间隔内也有一些硫的减少。处理未脱泥的进料时,+ 0.025 mm物料的分离不会受到-0.025 mm物料的影响。 -0.025 mm的物料以与浆液大致相同的比例分配,大部分水流向清洁的煤流。这次分拆最终提高了整体清洁煤灰的价值。统计分析确定流量和固体浓度均会影响清洁煤灰分的值和收率,尽管流量对分离的影响更大。

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