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(3)Preliminary phenomenological model of a pilot Jameson flotation cell

机译:(3)试点詹姆森浮选细胞的初步现象学模型

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A preliminary phenomenological model of a flotation process in an L-150 Jameson cell wasdeveloped, in order to predict the metallurgical performance in a cleaner application. In this studythe feed was considered to be composed by chalcopyrite, molybdenite and gangue, which weredistributed in three size classes: +75 [μm], -75 +45 [μm] and -45 [μm].The overall flotation recovery was modelling using a multiphase approach, recognizing that theoverall flotation recovery is obtained from the interaction between three independent zones:downcomer zone, pulp zone and froth zone.The downcomer and pulp zone recoveries, were characterized using the general kinetic model forcontinuous flotation process, considering a first-order kinetic with rectangular distribution in bothcases, and a plug flow and perfect mixing regime to represent the downcomer and pulp zonehydrodynamics, respectively. The forth zone recovery was characterized using a semi-empiricalmodel as function of the principal variables that affect the cleaning zone operation.Furthermore, it was considered that the water recovery comes from the feed flow rate and the washwater flow rate. These were characterized using an exponential and lineal model, respectively, asfunction of the froth height, superficial air rate and superficial wash water rate. The gangue recoveryit was related directly to the water recovery from the feed flow rate by the entrainment factor.The metallurgical simulator was developed to show the effect of feed characteristics and the mainoperating variables on the recovery and concentrate grade. The model parameters were estimatedform previous industrial data for columns and mechanical cells, since at this time the results formetallurgical test in this Jameson cell were not available.Finally, the simulator was implemented online using the computational platform available in theProcess Control Laboratory. The operating variables are taken from the control and monitoringsystem, while the feed characteristics are created virtually. This simulator will allow the developmentof operational and control strategies to reduce the variability of the metallurgical performanceobtained, produced by the natural variability of the feed.
机译:L-150 Jameson细胞中浮选过程的初步现象学模型,以便预测清洁应用中的冶金性能。在本研究中,饲料被认为是用硫铜矿,钼和脉冲叶组成,其中三种尺寸的等级:+75μm,-75 +45μm]和-45 [μm]。整体浮选恢复是使用的一种多相方法,认识到Theoverall浮选回收是从三个独立区域之间的相互作用获得:降压区,纸浆区域和泡沫区域。较劣质间和纸浆区域的回收,考虑到首次 - 综合分布矩形分布的顺序,以及插头流动和完美的混合制度,分别代表降液管和纸浆Zhentohydrodysnamics。第四区恢复的特征在于使用半凸起的模型作为影响清洁区操作的主要变量的功能。诸如认为水回收来自进料流速和洗脸盆流速。这些以指数和线性模型为特征,分别是泡沫高度,浅表空气速率和表面洗涤水速率的函数。膨胀率直接与夹带因子从进料流量的水回收相关。冶金模拟器是开发出饲料特性和主要变量对恢复和浓缩等级的影响。估计模型参数以前的柱和机械电池的工业数据,因为此时该詹姆松单元中的结果不可用。最后,模拟器使用本可以在工程控制实验室中提供的计算平台在线实现。操作变量取自控制和监控系统,而实际上会产生馈线。该模拟器将允许运营和控制策略的开发,以减少冶金能源的可变性,通过饲料的自然可变性产生。

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