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    煤矸石固废高值化利用研究现状与进展

    Research status and progress of high-value utilization of coal gangue solid waste

    • 摘要: 煤矸石是煤矿开采和选煤过程中产生的固体废弃物,长期自然堆积不仅压占土地,造成水土流失,而且会引发自燃、爆炸等危险事故。此外,煤矸石中含有多种重金属元素,会造成土壤和地下水污染。据统计,我国煤矸石年产量已超7亿t,累计堆存量超60亿t。因此,煤矸石的处理和利用已经成为煤炭工业需要解决的主要问题。目前我国煤矸石主要利用途径为填坑筑路、矿区回填、低性能矸石砖瓦建材等,这些粗犷型应用未能充分利用到煤矸石中丰富的化学成分(SiO2、Al2O3、Fe2O3、K2O、MgO、CaO和Na2O等)和稀有元素(Ni、B、Be、Ti、Ga等)。随着我国可持续发展战略的实施,煤矸石逐渐向绿色高值化利用方向发展,通过酸浸法提取氧化铝、硅胶等化工原料;以碱激发工艺制备地质聚合物材料,其强度可达传统水泥的1.5倍;利用热活化技术合成沸石分子筛,应用于废水处理与气体吸附;通过配方优化烧制高性能陶瓷,或经微生物改性制成土壤改良剂,有效调节土壤酸碱度并补充微量元素。从煤矸矿物成分角度出发,系统论述了以煤矸石为原料提取化工产品,合成地质聚合物,制备陶瓷、沸石分子筛和土壤改良剂等高值化利用现状,分析了煤矸石应用过程中存在的主要问题和多组分梯级利用模式的发展趋势,以期为煤矸石相关研究和固体废弃物高值化利用提供思路和借鉴。

       

      Abstract: Coal gangue, a solid waste generated during coal mining and washing processes, poses significant environmental risks when left to accumulate naturally.Prolonged accumulation not only occupies land and causes soil erosion but also increases hazards like spontaneous combustion and explosions. Moreover, its heavy metal content contributes to soil and groundwater contamination. Statistics show China's annual coal gangue production exceeds 700 million tons, with cumulative stockpiles surpassing 6 billion tons.Consequently, effective management and utilization of coal gangue have become critical challenges for the coal industry. Current applications primarily include road construction using waste rock, mine backfilling, and producing low-performance building materials like bricks and tiles. These rough applications fail to make full use of the rich chemical components and rare elements of coal gangue, such as SiO2, Al2O3, Fe2O3, K2O, MgO, CaO, Na2O, Ni, B, Be, Ti and Ga. With China's sustainable development strategy, the industry is shifting toward green, high-value utilization. Innovative approaches include: extracting alumina and silica gel through acid leaching; developing geopolymer materials with 1.5 times the strength of traditional cement via alkali-activated processes; synthesizing zeolite molecular sieves for wastewater treatment and gas adsorption using thermal activation technology; and optimizing formulations to produce high-performance ceramics or microbial-modified soil conditioners that regulate pH levels and supplement trace elements. From the perspective of coal gangue mineral composition, this study systematically discusses the current status of high-value utilization of coal gangue as raw material, including chemical product extraction, synthetic geopolymer production, and preparation of ceramics, zeolite molecular sieves, and soil amendments. It analyzes the main challenges in coal gangue application and the development trends of multi-component cascade utilization models, aiming to provide insights and references for related research on coal gangue and the high-value utilization of solid waste.

       

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