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现代矿业 ›› 2026, Vol. 42 ›› Issue (01): 8-15.

• 综合述评 • 上一篇    下一篇

煤气化渣炭灰分离及其填充高分子材料研究进展

曹晓璐1 谭金龙1,2 刘广兴1 凌向阳1 牟成乾2   

  1. 1. 河北工程大学矿业与测绘工程学院;2. 山东华勤橡胶科技有限公司
  • 出版日期:2026-01-25 发布日期:2026-01-26

Research Progress of Coal Gasification Slag Carbon Ash Separation and Its Filling Polymer Materials

  1. 1. School of Mining and Geomatics Engineering,Hebei University of Engineering; 2. Shandong Hixih Rubber Technology Co.,Ltd.
  • Online:2026-01-25 Published:2026-01-26

摘要: 为了应对煤气化渣(CGS)综合利用率低及堆存填埋导致的环境与碳排放压力,针对 CGS 中炭灰高度包裹、活性低等关键问题阻碍其有效回收与利用的现状,进行了系统综述。研究 聚焦于 CGS 的物理化学特性、微观形貌分析,以及当前炭灰分离技术与改性工艺的梳理与评估,旨 在探索其作为“碳-硅”双源材料在高分子填料领域的应用潜力。通过改性活化残炭组分,CGS 可 部分或全部替代炭黑等类似填料,实现其在高分子材料中的高值化应用;提出借助构建“分质—改 性—高值”一体化路径,有效整合分离与改性过程,煤气化渣有望纳入环保型高分子材料填料范 畴,推动煤气化渣由末端治理向绿色功能材料的转型。

关键词: 煤气化渣, 炭灰分离, 高分子材料填料, 资源化利用

Abstract: In order to cope with the low comprehensive utilization rate of coal gasification slag (CGS) and the environmental and carbon emission pressure caused by landfill,a systematic review is carried out on the current situation that the key problems such as high encapsulation and low activity of carbon ash in CGS hinder its effective recovery and utilization.The research focuses on the physical and chemical proper⁃ ties and microstructure analysis of CGS,as well as the combing and evaluation of the current carbon ash separation technology and modification process,aiming to explore its application potential as a“carbon-sil⁃ icon”dual-source material in the field of polymer fillers.By modifying the activated carbon residue compo⁃ nent,CGS can partially or completely replace similar fillers such as carbon black to realize its high-value application in polymer materials.It is proposed that by constructing route for integration of“quality-modifi⁃ cation-high value”,the separation and modification process can be effectively integrated,and the coal gas⁃ ification slag is expected to be included in the category of environmentally friendly polymer material fill⁃ ers,promoting the transformation of coal gasification slag from end treatment to green functional materials.

Key words: coal gasification slag, carbon ash separation, polymer material filler, resource utilization