Research progress and innovative pathways for the large-scaled green and low-carbon utilization of coal-based solid wastes
LIU Lang
ZHU Mengbo
WANG Shuangming
YANG Pan
YU Bo
RUAN Shishan
YANG Junjun
XIE Geng
Abstract:Coal mining and processing have provided China with reliable energy security and essential chemical raw materials,signific-antly driving industrial development and social progress.However,this process has also resulted in the production of large amounts of coal-based solid waste.These wastes not only occupy vast land resources but also cause varying degrees of environmental pollution,especially during long-term storage,when they may release harmful gases,heavy metals,and other toxic substances,posing a threat to water,air,and soil safety.Therefore,efficiently and large-scale utilization of coal-based solid waste has become a key technical challenge in achieving re-source recycling and reducing environmental pollution.Based on an analysis of the generation,classification,characteristics,and environ-mental impacts of coal-based solid waste,this paper reclassifies existing coal-based solid waste and systematically summarizes its mature large-scale utilization models in areas such as mine backfilling,construction materials,and ecological restoration.It also proposes innovat-ive pathways for the green and low-carbon utilization of coal-based solid waste.The study shows that:①Coal-based solid waste can be classified into two categories:denatured and original coal-based solid waste,with denatured coal-based solid waste having the potential to develop cementing materials and carbon sequestration functions,while original coal-based solid waste possesses the characteristics of nat-ural aggregates and soil materials;②Currently,the main large-scale utilization models of coal-based solid waste include mine backfilling(such as cementing materials,paste backfilling,and grout backfilling),construction materials(such as cement supplementary materials,road materials,and precast components),ecological restoration(such as filling of subsidence areas,reclamation of wastelands,and soil im-provement),and resource extraction and utilization(carbonaceous components,aluminium,sulfur and rare elements);③A new techno-logy for graded,quality-specific,and full-component utilization of coal-based solid waste is proposed,which extracts high-value compon-ents and uses the remaining components for backfilling of mined-out areas,maximizing resource utilization;④Innovative technologies for modifying and co-disposing of high-salinity wastewater,modifying backfill for co-constructing storage facilities,and co-sequestering haz-ardous solid waste in functional storage are discussed.This research aims to improve the resource utilization efficiency of bulk coal-based solid waste,promote the green transformation of the coal industry,and provide new pathways for the sustainable development of coal re-sources.
Keywords:denatured coal-based solid wasteoriginal coal-based solid wastegreen and low-carbonlarge-scale utilization
Publication Date:2025-06-30
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:22( 82-103 )
Coal Science and Technology

Coal Science and Technology

ISTICPKUEICSCD
ISSN:0253-2336
Year, Vol.(Issue):2025,53(6)