Experimental Study on the Suspending Mechanism of Suspending Agent in Coal-Based Solid Waste Slurry for Long-Distance Pipeline Transportation

IF 2.8 4区 工程技术 Q2 ENGINEERING, CHEMICAL Processes Pub Date : 2024-09-09 DOI:10.3390/pr12091937
Tao Li, Tao Yang, Heng Min, Min Cao, Jingyan Hu
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Abstract

The transportation of coal-based solid waste filling slurry (CSWFS) through pipelines for underground goaf injection is essential for enhancing mine safety and promoting green, low-carbon coal mining. To address the issue of pipeline blockage caused by the suspension sensitivity of CSWFS during long-distance transportation, this study proposes the addition of the suspending agent hydroxypropyl methyl cellulose (HPMC) to transform the filling slurry into a stable suspending slurry. The mechanism by which the suspending agent modifies the rheological property of CSWFS was elucidated and verified. Firstly, an evaluation index system for the suspending state of CSWFS based on the “experimental test and theoretical calculation” was established. The values for layering degree, bleeding rate time-loss, and the corresponding average time-loss rate over 0 to 120 min of A1–A5 CSWFS were recorded as 24 mm–2 mm, 3.0–0.2%, 252.4–54.2%, and 149.6–14.6%, respectively. The concentration gradient evaluation result, C/CA = 0.91 (≥0.8), confirmed that the suspending agent maintained a stable suspending state over time for CSWFS. Secondly, it was demonstrated that the suspending agent HPMC modified the rheological property of A1–A5 CSWFS by increasing its plastic viscosity, which strengthened the viscous resistance to particle settling, thereby transforming a semi-stable slurry into a stable one. Additionally, the formation of a spatial suspending network by the suspending agent ensures that no pipeline blockage accidents occured in practical engineering applications. Furthermore, the XRD and SEM tests were utilized to verify the microstructure of the top (T) and bottom (B) samples in A4 block. It was concluded that the type of hydration products, occurrence forms, lapping compactness, and microstructural development were consistent, ultimately forming a high-strength, dense, hardened filling block. Finally, numerical simulation confirmed that the addition of suspending agent in A4 slurry formed a comprehensive spatial suspending network and a well-structured, unified system. This is one effective approach which could contribute to addressing the technical issue of pipeline blockage during long-distance pipeline transportation.
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长距离管道运输煤基固体废弃物泥浆中悬浮剂的悬浮机理试验研究
煤基固体废弃物充填泥浆(CSWFS)通过管道输送到井下煤层注浆,对提高煤矿安全生产、促进绿色低碳煤炭开采至关重要。针对煤基固体废弃物充填泥浆在长距离运输过程中因悬浮敏感性而导致管道堵塞的问题,本研究提出添加悬浮剂羟丙基甲基纤维素(HPMC),将充填泥浆转化为稳定的悬浮泥浆。研究阐明并验证了悬浮剂改变 CSWFS 流变特性的机理。首先,建立了基于 "实验测试与理论计算 "的 CSWFS 悬浮状态评价指标体系。结果表明,A1-A5 CSWFS 在 0 至 120 min 内的分层度、出血时间损失率和相应的平均时间损失率分别为 24 mm-2 mm、3.0-0.2%、252.4-54.2% 和 149.6-14.6%。浓度梯度评价结果为 C/CA = 0.91(≥0.8),证实悬浮剂在 CSWFS 的悬浮时间内保持了稳定的悬浮状态。其次,实验证明,悬浮剂 HPMC 通过提高 A1-A5 CSWFS 的塑性粘度改变了其流变特性,增强了颗粒沉降的粘滞阻力,从而将半稳定浆液转变为稳定浆液。此外,悬浮剂形成的空间悬浮网络确保了在实际工程应用中不会发生管道堵塞事故。此外,还利用 XRD 和 SEM 测试验证了 A4 块中顶部(T)和底部(B)样品的微观结构。结果表明,水化产物的类型、出现形式、碾压密实度和微观结构的发展是一致的,最终形成了高强度、致密、硬化的填充砌块。最后,数值模拟证实,在 A4 浆料中添加悬浮剂可形成全面的空间悬浮网络和结构良好的统一体系。这是一种有效的方法,有助于解决长输管道运输过程中管道堵塞的技术问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Processes
Processes Chemical Engineering-Bioengineering
CiteScore
5.10
自引率
11.40%
发文量
2239
审稿时长
14.11 days
期刊介绍: Processes (ISSN 2227-9717) provides an advanced forum for process related research in chemistry, biology and allied engineering fields. The journal publishes regular research papers, communications, letters, short notes and reviews. Our aim is to encourage researchers to publish their experimental, theoretical and computational results in as much detail as necessary. There is no restriction on paper length or number of figures and tables.
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