Ab'/> Coal pyrite microwave magnetic strengthening and electromagnetic response in magnetic separation desulfurization process
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Coal pyrite microwave magnetic strengthening and electromagnetic response in magnetic separation desulfurization process

机译:煤硫铁矿微波磁力强化和电磁响应在磁分离脱硫过程中

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AbstractCoal desulfurization is imperative to creating clean coal and reducing harmful emissions during the burning process. Due to the lack of effective technology in the field of fine coal dry separation, a novel microwave-enhanced magnetic property processing method was demonstrated in this manuscript. Using representative simulated minerals, the response and absorption characteristics of coal pyrite were intuitively demonstrated while analyzing the selective absorption mechanisms of different minerals in fine coal. Results show that the coal pyrites from Inner Mongolia were reduced by approximately 20% after 60s of microwave treatment, and 60% after 90s. The binding energy and chemical shift were quite large when the oxidation state was high. Fe2+and troilite FeS were oxidized to Fe2O3after 60s microwave treatment, and to Fe3+after 90s. Dynamic equilibrium was reached after 3min of microwave treatment. The conversion rate was lower for pyrite to pyrrhotite than for pyrrhotite to troilite. The conversion of pyrrhotite to troilite appeared to be sensitive to the amount of microwave treatment. The specific susceptibility dropped rapidly and was nearly an order of magnitude greater than the raw coal. This study indicates a high possibility for coal desulfurization through this dry method enhanced with microwave energy.Graphical abstractDisplay OmittedHighlights?Microwave-enhanced magnetic property process proposed for coal desulfurization.?Networker analyzer used to analyze pyrite response and absorption characteristics.?XPS was used to study combined states and surface chemical analysis of coal.]]>
机译:<![cdata [ 抽象 煤脱硫是在燃烧过程中创造清洁煤炭并减少有害排放的必要性。由于缺乏有效的技术在细煤干燥分离领域,在该稿件中证明了一种新型微波增强的磁性处理方法。使用代表性模拟矿物质,煤黄的响应和吸收特性直观地证明了在细煤中不同矿物的选择性吸收机制。结果表明,在60多次微波处理后,内蒙古的煤硫磷在60多次后减少了约20%,90s后60%。当氧化状态高时,结合能量和化学偏移非常大。 Fe 2 + 和灰泥滴到fe 2 o 3 在90年代之后的FE 3 + 。在微波处理3分钟后达到动态均衡。黄铁矿比吡咯酸盐对毒性的转化率降低。 PyrlOhotite转化为毒性的转化物似乎对微波处理量敏感。具体的敏感性迅速下降,几乎比原煤大的数量级。该研究表明,通过这种干燥方法提高了煤脱硫的高可能性。 图形摘要 显示省略 突出显示 用于煤炭脱硫的微波增强磁性工艺n。 NetWorker分析仪用于分析黄铁矿响应和吸收特性。 XPS用于研究煤的组合状态和表面化学分析。 ]]>

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