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首页> 外文期刊>INAE Letters >Modeling and Optimisation of Spiral Concentrator for Beneficiation of Iron Ore Slimes from Kirandul, India
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Modeling and Optimisation of Spiral Concentrator for Beneficiation of Iron Ore Slimes from Kirandul, India

机译:印度Kirandul铁矿石酵母堆积螺旋浓缩器的建模与优化

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摘要

Experiments were carried out using a spiral concentrator test rig containing feed conditioner, centrifugal pump and a spiral concentrator with feed to spiral and recirculation. Time samples of concentrate and tails were collected, weighed, dried analysed. Regression equations were developed for Concentrate yield, grade and percent recovery of iron values using Box Behnken Model and Minitab 19 software. The optimised yield, grade and percent recovery are 69.98,64.98 and 79.20 against the target values of 70.00, 65.00 and 80.00 respectively at 16.00% solids, 2.20 m~3/h feed rate and 14.40 cm splitter position. Surface (wire mesh) plots were drawn using Minitab 19 to explain the relation between independent variables and response variables. Maximum yield predicted was 80.24% by weight at a feed consistency of 20.00% solids, feed rate of 1 m~3/h and at a splitter position of 16.00 cm whereas the minimum yield predicted was 17.19% by weight at a feed consistency of 30.00% solids, feed rate of 3 m~3/h and splitter position of 12.00 cm. Maximum grade predicted was 68.73%Fe at a feed consistency of 30% solids, feed rate of 1.00 m~3/h and splitter position of 12.00 cm, whereas the minimum grade predicted was 61.03 %Fe at a feed consistency of 10% solids, feed rate of 1 m~3/h and splitter position of 16.00 cm. The maximum percent of iron values recovery predicted was 86.19 at a feed consistency of 20.00% solids, feed rate of 1.0 m~3/h and splitter position of 16.00 cm whereas the minimum recovery predicted was 18.82% at a feed consistency of 30% solids, feed rate of 3 m~3/h and splitter position of 12.00 cm. Surface plots were used to explain the variation in response variables concentrate yield, grade and recovery of iron values.
机译:使用螺旋浓缩器试验台进行含有进料调节剂,离心泵和螺旋浓缩器的螺旋浓缩器进行实验,进料与螺旋和再循环。收集浓缩物和尾部的时间样品,称重,干燥分析。使用Box Behnken Model和Minitab 19软件开发了回归方程,用于浓缩产量,等级和铁值恢复的百分比。优化产量,等级和百分比分别为69.98,64.98和79.20分别为70.00,65.00和80.00,分别为16.00%固体,2.20 m〜3 / h饲料速率和14.40厘米的分离器位置。使用Minitab 19绘制表面(电线网)图,以解释独立变量与响应变量之间的关系。预测的最大收率为80.24重量%,进料稠度为20.00%固体,进料速率为1 m〜3 / h,分离位置为16.00厘米,而预测的最低收率为17.19重量%,饲料稠度为30.00 %固体,进料速率为3 m〜3 / h,分配器位置为12.00厘米。预测的最大成绩为68.73%Fe,饲料一致性为30%固体,进料速率为1.00米〜3 / h,分配位置为12.00厘米,而预测的最低等级为61.03%Fe,饲料稠度为10%固体,进料速率为1 m〜3 / h,分配器位置为16.00厘米。预测的铁值的最大百分比为86.19,饲料一致性为20.00%固体,进料速率为1.0 m〜3 / h,分离位置16.00厘米,而预测的最小恢复为18.82%,饲料稠度为30%固体,进料速率为3 m〜3 / h,分配器位置为12.00厘米。表面图用于解释响应变量的变化集中产量,等级和铁值的回收率。

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