煤炭工程 ›› 2024, Vol. 56 ›› Issue (6): 196-202.doi: 10. 11799/ ce202406030

• 研究探讨 • 上一篇    下一篇

煤气化细渣浮选行为及工艺研究

邓二庆,杨珍妮,赵世永,肖雨辰,王纪镇   

  1. 西安科技大学 化学与化工学院,陕西 西安 710054
  • 收稿日期:2023-09-18 修回日期:2023-10-07 出版日期:2023-06-20 发布日期:2025-01-08
  • 通讯作者: 邓二庆 E-mail:1547186557@qq.com

Study on Flotation Behavior and Process of Coal Gasification Fine Slag

  • Received:2023-09-18 Revised:2023-10-07 Online:2023-06-20 Published:2025-01-08

摘要:

针对煤气化细渣浮选回收时浮选药剂消耗量大的问题,以陕西榆林某地煤气化细渣为研究对象,通过全粒级浮选、以及对全粒级浮选产品的粒度分析与各粒级浮选完善指标和可燃体回收率的计算,结合0.5~0.25mm与0.25~0.125mm的SEM、XRD和FTIR结果分析,判断+0.125mm煤气化细渣不能有效通过浮选分离有机质与无机质,因此提出“预先分级+浮选” 联合工艺流程, 对-0.125mm 进行浮选分步释放实验, 将-0.125mm粒级浮选后富集的精煤与预先分级的+0.125mm部分合并作为最终精煤, 获得了灰分为26.38%,产率为66.42%的精矿。“预先分级+浮选” 联合与全粒级浮选工艺流程相比,不但具有工艺流程简单,药剂消耗低,工艺流程调控灵活等优点,而且具有高产率、低灰分的优势,可以更高效地回收利用气化细渣。

关键词: 煤基固废 , 气化渣 , 粒度组成 , 预先分级 , 分步释放 , 资源化利用

Abstract:

In view of the characteristics of large consumption of flotation chemicals during the recycling and utilization of coal gasification fine slag, the coal gasification fine slag in a certain place in Yulin, Shaanxi Province was used as the research object, through whole grain flotation, and the particle size analysis of whole grain flotation products and the calculation of perfect indicators and combustible gas recovery rate of each particle level flotation product, combined with the SEM, XRD and FTIR results of 0.5-0.25 mm and 0.25-0.125 mm were analyzed, and it was judged that +0.125 mm coal gasification fine slag could not effectively separate organic and inorganic matter by flotation, so a pre-grading-flotation combined process was proposed, and the flotation distribution release experiment was carried out on -0.125 mm, and the enriched refined coal after -0.125 mm flotation was combined with the pre-graded +0.125 mm part as the final refined coal, and a concentrate with an ash fraction of 26.38% and a yield of 66.42% was obtained. Compared with the whole grain flotation process, pre-grading-flotation combination not only has the advantages of simple process flow, low chemical consumption, flexible process control, etc., but also has the advantages of high yield and low ash content, and can recover gasified fine residue more efficiently.

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