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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effect of particle properties on the energy-size reduction of coal in the ball-and-race mill
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Effect of particle properties on the energy-size reduction of coal in the ball-and-race mill

机译:颗粒性质对球血磨机煤能量减少的影响

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摘要

Breakage behaviors and energy consumed characteristics of coal are directly influenced by properties, such as particle size, ash content or density. It is essential to model these effects and conduct quantitative evaluation. In this study, samples of 4 particle sizes x 4 ash contents were ground in a Hardgrove mill for 9 energy levels, respectively. Breakage rate of particles in the top size and t(10) were determined and effects of coal properties on two parameters were also discussed. Though the relation between consumed energies and t(10) of each sample can be described by classical breakage model, experimental data of all samples were scatter. In this case, particle size and ash content were modelled into breakage equation in exponential term, namely t(10) = A x (1-e(-b.x.Ecs/eYa)). This modified model gave good fitting results to experimental data. Introduce of coal properties into energy-size reduction model helps to compare grinding energy efficiency of various coals. Confidence analyses of repeat experiments demonstrated the repeatability of test results and indicated the reliability of new breakage model. (C) 2017 Elsevier B.V. All rights reserved.
机译:破损行为和煤的能量消耗特性直接受属性的影响,例如粒度,灰分含量或密度。对于模拟这些效果并进行定量评估至关重要。在该研究中,将4个粒径×4粒径×4灰分含量的样品分别研磨在硬粒研磨机中,以进行9个能级。确定了顶部尺寸和T(10)中的颗粒的破损率,并确定了煤性能对两种参数的影响。虽然可以通过经典破损模型描述每个样品的消耗能量和T(10)之间的关系,但所有样品的实验数据都是散射。在这种情况下,粒度和灰分含量以指数项的破损方程建模,即T(10)= x(1-e(-b.x.ecs / eya))。该修改模型对实验数据提供了良好的拟合结果。将煤炭特性引入能量尺寸减少模型有助于比较各种煤的研磨能效。重复实验的置信度分析表明了测试结果的可重复性,并表明了新破损模型的可靠性。 (c)2017 Elsevier B.v.保留所有权利。

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