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硅酸盐通报 ›› 2026, Vol. 45 ›› Issue (2): 528-539.DOI: 10.16552/j.cnki.issn1001-1625.2025.0851

• 资源综合利用 • 上一篇    下一篇

煤矸石粉活性提升方式优选与活化机理研究

崔英彬1(), 连海坤1, 刘芳芳1, 王珍2, 凡涛涛3(), 司春棣3, 李子轩3   

  1. 1.河北石太高速公路开发有限公司,石家庄 050299
    2.石家庄铁道大学,土木工程学院,石家庄 050043
    3.石家庄铁道大学,交通运输学院,石家庄 050043
  • 收稿日期:2025-08-22 修订日期:2025-09-28 出版日期:2026-02-20 发布日期:2026-03-09
  • 通信作者: 凡涛涛,博士,讲师。E-mail:fantaotao@stdu.edu.cn
  • 作者简介:崔英彬(1970—),男,高级工程师。主要从事工业固废在道路工程中的资源化利用技术研究。E-mail:506194879@qq.com
  • 基金资助:
    河北省高等学校科学技术研究项目(QN2023178);国家自然科学基金(52378455);河北省交通运输厅科技计划项目(ST-202414)

Optimization Methods and Activation Mechanisms for Enhancing Activity of Coal Gangue Powder

CUI Yingbin1(), LIAN Haikun1, LIU Fangfang1, WANG Zhen2, FAN Taotao3(), SI Chundi3, LI Zixuan3   

  1. 1. Hebei Shi -Tai Expressway Development Co. ,Ltd. ,Shijiazhuang 050299,China
    2. School of Civil Engineering,Shijiazhuang Tiedao University,Shijiazhuang 050043,China
    3. School of Traffic and Transportation,Shijiazhuang Tiedao University,Shijiazhuang 050043,China
  • Received:2025-08-22 Revised:2025-09-28 Published:2026-02-20 Online:2026-03-09

摘要:

煤矸石的活性决定了其在建材领域资源化利用的潜能和场景。为探究煤矸石活性提升方式,以石家庄市域煤矸石粉为对象,取抗压强度、抗折强度和活性指数为评价指标,对比分析机械活化、热活化、化学活化单一和复合处置后煤矸石粉活性与其胶砂力学性能的变化规律,并结合激光粒度测试、XRD和SEM从微观角度解析煤矸石粉活性提升机理。结果表明,机械活化-热活化-化学活化协同处置对煤矸石粉活性及其胶砂力学性能的提升效果最显著,热活化次之,化学活化提升效果与激发剂种类有关,CaO对煤矸石粉活化效果最好。复合活化推荐参数为机械研磨60 min、650 ℃煅烧和4%(质量分数)CaO,对应的煤矸石粉活性指数、胶砂28 d抗压强度和28 d抗折强度分别为108.20%、46.2 MPa和8.1 MPa。机械研磨和高温煅烧通过调控煤矸石粉的粒度分布和物相组成比例,提升煤矸石粉水化反应活性,而化学活化主要基于碱性环境调节促进水化硅酸钙(C-S-H)凝胶等水化产物生成,实现煤矸石粉活性与胶砂力学性能的同步改善。

关键词: 煤矸石粉, 活化方式, 活性指数, 力学强度, 微观测试, 活化机理

Abstract:

The activity of coal gangue determines its potential and application scenarios for resource utilization in the building materials sector. To investigate methods for enhancing coal gangue activity, coal gangue powder from the Shijiazhuang metropolitan area was selected as the subject. Compressive strength, flexural strength, and reactivity index were adopted as evaluation metrics. The study compared the activity of coal gangue powder after single and combined treatments of mechanical activation, thermal activation, and chemical activation, along with the corresponding changes in the mechanical properties of mortar. Additionally, laser particle size analysis, XRD, and SEM were employed to analyze the mechanism of enhancing gangue powder activity at the microscopic level. Results indicate that mechanical activation-thermal activation-chemical activation synergistic treatment yields the most significant enhancement in both reactivity of coal gangue powder and mechanical properties of mortar, followed by thermal activation. The effectiveness of chemical activation depends on the type of activator, with CaO demonstrating the best activation effect. The recommended composite activation parameters are 60 min mechanical grinding, calcination at 650 ℃, and 4% (mass fraction) CaO. The corresponding coal gangue powder reactivity index, 28 d mortar compressive strength, and 28 d flexural strength are 108.20%, 46.2 MPa, and 8.1 MPa, respectively. Mechanical grinding and high-temperature calcination enhance the hydration reactivity of coal gangue powder by regulating its particle size distribution and phase composition ratio. Chemical activation primarily promotes the formation of hydration products like calcium silicate hydrate (C-S-H) gel through alkaline environment adjustment, achieving simultaneous improvement in both the reactivity of coal gangue powder and the mechanical properties of mortar.

Key words: coal gangue powder, activation method, activity index, mechanical strength, microscopic testing, activation mechanism

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