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磷石膏和赤泥在用于垂直屏障的低碳绿色胶凝材料中的回收利用。

Recycling of phosphogypsum and red mud in low carbon and green cementitious materials for vertical barrier.

作者信息

Huang Xiao, Li Jiang-Shan, Jiang Wenhao, Chen Zhen, Wan Yong, Xue Qiang, Liu Lei, Poon Chi Sun

机构信息

State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China; IRSM-CAS/HK PolyU Joint Laboratory on Solid Waste Science, Wuhan 430071, China.

State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China; IRSM-CAS/HK PolyU Joint Laboratory on Solid Waste Science, Wuhan 430071, China.

出版信息

Sci Total Environ. 2022 Sep 10;838(Pt 2):155925. doi: 10.1016/j.scitotenv.2022.155925. Epub 2022 May 16.

Abstract

MgO activated slag and bentonite (MASB) slurry is a new and promising vertical barrier material along with excellent performances. Some solid wastes, such as phosphogypsum (PG), red mud (RM), fly ash and so on, show a positive effect on the performances of alkali activated slag. However, few studies focus on the recycling of these solid wastes in the system of MgO activated slag. The purpose of this paper is to study the incorporation of phosphogypsum and red mud on the mechanical property, permeability and hydration process of MASB slurry. The results showed that the addition of PG could significantly improve the mechanical strength and anti-permeability of the MASB slurry at early age (7 days), where the unconfined compressive strength (UCS) increased from 793.1 kPa to 1395.7 kPa and the permeability coefficient declined from 16.1 × 10 cm/s to 1.7 × 10 cm/s. In contrast, the introduction of RM had some negative effects on its macroscopic properties, resulting the UCS decreased to 580.4 kPa and the permeability coefficient rose to 25.9 × 10 cm/s at 7 days. The ettringite formed in the PG blended MASB slurry led to a notable increase in the absolute solid volume, which could satisfactorily fill the pores and block the pore channels. The combined addition of RM and PG had a synergistic effect on the promotion of hydration process and optimization of the pore structure, contributing to establish a low permeability and high mechanical strength matrix. The overall findings indicate that the use of solid wastes in the MASB slurry can not only improve its engineering properties, but also promotes its sustainability and economical efficiency, holding a great potential for popularization and application.

摘要

氧化镁活化矿渣与膨润土(MASB)浆液是一种新型且具有前景的垂直防渗材料,性能优异。一些固体废弃物,如磷石膏(PG)、赤泥(RM)、粉煤灰等,对碱激发矿渣的性能有积极影响。然而,很少有研究关注这些固体废弃物在氧化镁活化矿渣体系中的再利用。本文旨在研究磷石膏和赤泥的掺入对MASB浆液力学性能、渗透性和水化过程的影响。结果表明,添加PG可显著提高MASB浆液早期(7天)的力学强度和抗渗性,其中无侧限抗压强度(UCS)从793.1 kPa提高到1395.7 kPa,渗透系数从16.1×10 cm/s降至1.7×10 cm/s。相比之下,引入RM对其宏观性能有一些负面影响,导致7天时UCS降至580.4 kPa,渗透系数升至25.9×10 cm/s。PG掺量的MASB浆液中生成的钙矾石导致绝对固体体积显著增加,能令人满意地填充孔隙并堵塞孔隙通道。RM和PG的复合添加对促进水化过程和优化孔隙结构具有协同作用,有助于建立低渗透、高力学强度的基体。总体研究结果表明,在MASB浆液中使用固体废弃物不仅可以改善其工程性能,还能提高其可持续性和经济效益,具有很大的推广应用潜力。

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