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粉煤低温等离子体氧化过程效率及模型构建研究
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作者 单毅 丁华 白向飞 《煤质技术》 2024年第4期1-7,39,共8页
低温等离子体氧化是研究煤中矿物赋存的重要前处理技术,其存在着灰化反应速度慢、过程效率低等问题,需针对设备运行的操作参数进行优化研究,尤其应侧重等离子体与粉煤的反应过程模式及反应速度控制因素以提高粉煤的氧化过程效率。采用... 低温等离子体氧化是研究煤中矿物赋存的重要前处理技术,其存在着灰化反应速度慢、过程效率低等问题,需针对设备运行的操作参数进行优化研究,尤其应侧重等离子体与粉煤的反应过程模式及反应速度控制因素以提高粉煤的氧化过程效率。采用等离子体设备灰化典型气肥煤,以单次灰化时间、设备电参数为操作变量,考察反应速度与灰化时间、有机质含量的关系,分析等离子体等效反应深度、速度控制方程及氧化过程效率优化,并建立粉煤等离子体氧化过程模型。在等效反应深度内,有机质含量小于0.3 g/g后进入降速灰化阶段,需优化操作过程以确保灰化整体速度维持匀速,从而提高氧化过程效率。制定典型气肥煤的综合灰化速度控制方案,即有机质含量在>0.69、0.69~>0.57、0.57~0.46、<0.46 g/g时设置单次灰化时间分别为8、4、2、1 h。 展开更多
关键词 低温等离子体 氧化过程效率 模型构建 灰化时间 有机质含量 煤中矿物 反应深度 速度控制方程
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Studies on Recovery Efficiencies of Phenols from Phenol Fraction Using Alkali Treatment 被引量:2
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作者 S. Aruna Kumari Goruganthula Venkata Subrahmanya Sarma +2 位作者 G. M. J. Raju J. V. S. Murty C. BhaskaraSarma 《Journal of Chemistry and Chemical Engineering》 2013年第4期334-339,共6页
Experiments were conducted for the extraction of phenols from the phenol fraction obtained from the coal tar distillate. The phenol fraction for the present investigation has been procured from Visakhapatnam Steel Pla... Experiments were conducted for the extraction of phenols from the phenol fraction obtained from the coal tar distillate. The phenol fraction for the present investigation has been procured from Visakhapatnam Steel Plant, Visakhapatnam whose composition is known. The phenol fraction from coal tar distillate can be treated for extracting phenols using caustic soda. An attempt has been made to find out whether the existing practice of using only 8%-15% can be modified by increasing the strength of sodium hydroxide and also explore the possibilities of substituting the sodium hydroxide with KOH as an extractant. The different streams of liquids obtained during experimentation have been analyzed by gas chromatograph. Salient features of the study are that higher concentrations of the alkali significantly improved the separation efficiencies of phenols and also regenerate the phenolate with higher phenol content. Increase in the alkali strength has greatly improved the separation as well as the phenol content in the regenerated phenols. Disposal of effluents containing phenols may lead to environmental problem of ground water pollution and the study throws a light on the removal of phenols from the effluents to the extent possible by using higher strength alkali solutions. 展开更多
关键词 Alkali treatment PHENOL phenol fraction recovery efficiency coal tar.
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