Investigation of Hydraulic-Mechanical Properties of Paste Backfill Containing Coal Gangue-Fly Ash and Its Application in an Underground Coal Mine

Исследование гидромеханических свойств пастообразной закладки, содержащей угольную пустую породу и летучую золу, и ее применение на подземной угольной шахте
Xinguo Zhang, Jinxiao Liu, Jia Lin, Fei Li, Zhenzhong Pang
2017-09-01

cemented paste backfillcoal gangue-fly ashhydraulic-mechanical propertiessurface subsidence controluniaxial compressive strength
Backfilling is widely used to control surface subsidence and stope stability to improve pillar recovery. Furthermore, it is also an effective way to process and dispose of mining waste such as coal gangue and tailings. In this study, the hydraulic-mechanical properties of cemented paste backfill materials (CPB) were investigated. Twenty-eight cemented coal gangue-fly ash backfill mixtures were prepared with different water, cement, fly ash and coal gangue content and the slump, segregation and water bleeding ratio tests were conducted. Increasing fly ash content increased the slump value and decreased the segregation value of the slurry. The uniaxial compressive strength (UCS) of the cemented coal gangue-fly ash backfill samples were tested at different curing times. Based on the test results, an optimized recipe was used for the field trial. Longwall cut and backfilling mining method was used in the 2300 mining district to recycle the coal pillar between longwall 2301 and 2302. Both stress and displacement meters were installed in the goaf and their performance was monitored continuously. An increase in stress and displacement values were observed to occur with the working face advanced (up to 325 m and 375 m, respectively); thereafter, a trend of stabilization was observed. The monitoring results suggest that the backfills can efficiently control the roof movement and surface subsidence as well as improve pillar recovery.
1
An optimized mixture based on laboratory hydraulic-mechanical testing was selected for field application in a longwall cut-and-backfilling operation.
2
Field results indicate that the backfill effectively controlled roof movement and surface subsidence while enabling recovery of the coal pillar between longwalls 2301 and 2302.
3
In underground monitoring, stress and displacement increased as the working face advanced up to 325 m and 375 m, respectively, before stabilizing.
4
Increasing fly ash content increased slurry slump while decreasing segregation in cemented coal gangue–fly ash backfill mixtures.
5
Twenty-eight mixtures with varying water, cement, fly ash, and coal gangue contents were evaluated for slump, segregation, bleeding, and uniaxial compressive strength over different curing times.

Cemented coal gangue–fly ash paste backfill used in an underground coal mine

Hydraulic-mechanical properties, strength development, and effectiveness in controlling roof movement and surface subsidence while enabling coal-pillar recovery

Publication Details
Publication Date
2017-09-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Xinguo Zhang
Jinxiao Liu
Jia Lin
Fei Li
Zhenzhong Pang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%