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使用石油磺酸钠使柴油乳化对粉煤灰中碳浮选的影响。

The effect of diesel emulsification using sodium petroleum sulfonate on carbon flotation from fly ash.

机构信息

Mining and Minerals Engineering Department, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.

School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Waste Manag. 2019 Oct;98:144-150. doi: 10.1016/j.wasman.2019.08.027. Epub 2019 Aug 22.

Abstract

It is critical to separate carbon from fly ash due to its increasing amount being produced per year and component requirements for secondary utilizations. Flotation is an efficient technique to fulfill this task. Effects of diesel emulsification using sodium petroleum sulfonate on unburned carbon flotation from a fly ash sample were studied. Flotation tests showed that carbon recovery was increased from 41% to 86% using the emulsified collector at the same dosage level (0.5 kg/ton) as diesel. Zeta potential measurements indicated that both the carbon and emulsified collector droplets carried negative charges within the studied pH range. For fly ash particles with high carbon content, adsorption bands of carbonyl bond (CO) were detected in the FTIR spectra, which agreed with the XPS characterization findings. XPS analysis indicated that the emulsified diesel (ED) collector interacted more intensively with the surface carbon-oxygen groups relative to the normal diesel collector. Finally, the improved efficiency of ED is proved to be related to its polar groups and reduced oil droplet size. The polar groups of ED (mainly sulfonate) interacted with the surface oxygen containing groups (e.g., CO and COOH) through hydrogen bonding and Lewis acid base interaction.

摘要

由于每年产生的飞灰量及其二次利用的成分要求,将碳与飞灰分离至关重要。浮选是完成这项任务的有效技术。本研究考察了使用石油磺酸钠柴油乳液对粉煤灰样品中未燃碳浮选的影响。浮选试验表明,与柴油相比,在相同剂量水平(0.5kg/吨)下,使用乳化捕收剂可将碳回收率从 41%提高到 86%。动电位测量表明,在所研究的 pH 值范围内,碳和乳化捕收剂液滴均带负电荷。对于含碳量高的粉煤灰颗粒,在 FTIR 光谱中检测到羰基(CO)的吸附带,这与 XPS 特征分析结果一致。XPS 分析表明,与普通柴油捕收剂相比,乳化柴油(ED)捕收剂与表面碳氧基团的相互作用更为强烈。最后,证明 ED 的效率提高与其极性基团和减小的油滴尺寸有关。ED 的极性基团(主要是磺酸盐)通过氢键和路易斯酸碱相互作用与表面含氧基团(例如 CO 和 COOH)相互作用。

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