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Analysis of Removal of Unburned Carbon from Bottom Ashes

机译:从底部除去未燃烧碳的分析

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Bottom ash from power plants contains unburned carbon (UC) as a waste, which is a potential contaminant for the environment unless recycled as a source of energy. In the present study, flotation separation of the UC from the bottom ash of a power plant has been studied. The overall combustible grade of the concentrates obtained ranged from 24% to 22 at corresponding combustible recoveries of 45.8% to 80.3%. The data obtained according to a 3-variable 2 level (23) factorial experimental design, examined the influence of dosages collector (kerosene) and frother (AF65) and also impeller speed on the combustible recovery. The main effects of all three factors on the recovery are positive. According to statistical analysis, the most important factor is collector, while the frother has a secondary significance. The effect of impeller (conditioning) speed is also statistically significant. Two of the 2-way interaction effects are significant. Recovery of combustible matter increases with an increase in the dosages of kerosene and AF65. The main and interaction effects involving kerosene consistently point out the selectivity of the flotation process for carbonaceous particles, which have been discussed in relation to dispersion and attachment of collector droplets to the particles, interfacial area and probable collecting properties of the frother used.
机译:来自发电厂的底部灰分含有未燃烧的碳(UC)作为废物,除非作为能量源而被回收的环境是环境的潜在污染物。在本研究中,研究了UC从发电厂的底灰的浮选分离。在相应的可燃回收率为45.8%至80.3%的相应可燃回收率下,所得浓缩物的总体可燃等级范围为45.8%至80.3%。根据3变量2级(23)阶段实验设计所获得的数据检测了剂量收集器(煤油)的影响,以及叶轮速度对可燃回收率的影响。所有三个因素对复苏的主要影响是积极的。根据统计分析,最重要的因素是收集器,而诸如其他具有二次意义。叶轮(调节)速度的影响也是统计学意义的。两个双向互动效应中的两个是显着的。随着煤油和AF65的剂量增加,可燃物质的回收率增加。涉及煤油的主要和相互作用效应始终如一地指出碳质颗粒的浮选过程的选择性,这些粉末颗粒是关于收集器液滴与所用颗粒,界面区域和所用的颗粒的可能收集性能的分散和附着的浮选过程。

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