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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 >Flotation intensification of the coal slime using a new compound collector and the interaction mechanism between the reagent and coal surface
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Flotation intensification of the coal slime using a new compound collector and the interaction mechanism between the reagent and coal surface

机译:使用新的复合收集器和试剂与煤表面之间的相互作用机制浮选强化煤粘液

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摘要

Flotation reagents in particular the flotation collector plays a significant role in the cleaning efficiency of coal slimes in the coal preparation and utilization industry. A new collector (NC) was used to achieve the efficient cleaning of coal slimes. Comparing with the conventional flotation collector of diesel oil (DO), the higher yields and lower ash contents of clean coal with the higher combustible material recoveries could be obtained using the NC in flotation. The optimum NC dosage of 500 g/t was acquired through the unit flotation tests. Fourier transform infrared spectroscopy (FTIR) and contact angle measurement were used to study the interaction mechanism between the flotation collector and coal surface. The results indicated that the stronger electron attracting ability of the ester groups than that of the carbon-carbon double bond resulted in the more stable interaction between the NC and coal surface than that between the DO and coal surface. The contact angle of the coal slime wetting with the NC of 67.1 degrees was larger than that with the DO of 62.6 degrees, suggesting the stronger hydrophobicity of the coal slime with the NC than that with the DO. The chemical composition analysis results suggest that the NC belongs to a compound flotation reagent, which provides an alternative high-efficient collector for coal flotation industry. (C) 2017 Elsevier B.V. All rights reserved.
机译:特别是浮选收集器的浮选试剂在煤炭制备和利用行业中的煤泥浆的清洁效率中起着重要作用。新的收集器(NC)用于实现煤泥的有效清洁。使用NC在浮选中可以获得与柴油(DO)的传统浮选收集器进行比较,具有较高可燃物质回收的清洁煤的较高产率和下灰分含量。通过单位浮选测试获得500g / t的最佳NC剂量。傅里叶变换红外光谱(FTIR)和接触角测量用于研究浮选收集器和煤表面之间的相互作用机制。结果表明,酯基的较强的电子吸引能力比碳 - 碳双键的吸引能力导致Nc和煤表面之间的相互作用更稳定,而不是DO和煤表面。煤粘液润湿的接触角度为67.1度,大于62.6度,表明煤切片与NC的疏水性较强。化学成分分析结果表明,NC属于复合浮选试剂,为煤浮板行业提供另类高效收集器。 (c)2017 Elsevier B.v.保留所有权利。

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