Behavior and mechanism of impurity removal in the process of producing ultra-low ash coal from long-flame coal by low-temperature alkali melting and acid step leaching

杂质 碱金属 浸出(土壤学) 材料科学 熔化温度 化学 粉煤灰 化学工程 无机化学 废物管理 冶金 环境科学 有机化学 复合材料 土壤水分 土壤科学 工程类
作者
Xiaowei Deng,Jinwen Wu,Le Chen,Ruixue Lou,Guolong Zhong,Yihong Jia,Chaojun Fang,Hongxiang Xu,Gen Huang,Zhijun Zhang,Guosheng Li
出处
期刊:Fuel [Elsevier BV]
卷期号:402: 135949-135949 被引量:2
标识
DOI:10.1016/j.fuel.2025.135949
摘要

• Preparation of ultra-low ash coal by low-temperature melting and acid leaching. • The migration law of Si/S/Fe/Al reveals the demineralization mechanism. • The minerals in long-flame coal have been deeply removed. • The ash content of ultra-low ash is 0.009%, and the demineralization rate is 99.42% Coal, besides diamond and graphite, is the largest source of carbon material in nature. Due to its high chemical reactivity, long-flame coal will be an important precursor of coal-based functional carbon materials. However, coal’s deep desulphurization and ultra-pure preparation have become the main bottlenecks that affect its development. Taking Xinjiang long-flame coal as raw material, the mechanism of removing impurities in long-flame coal to produce ultra-low ash coal by low-temperature alkali melting and acid step leaching was studied. The behavior and mechanism of impurity removal were further explored. The results showed that 0.80 % ash could be extracted during alkali melting, and the yield could reach 73.26 %. After leaching and enrichment with HNO 3 , the ultra-low ash coal with 0.009 % ash was obtained. The maximum demineralization rate was 99.42 %. The migration mechanism of Si/S/Fe/Al elements was analyzed. Some Si/S elements were removed as oxides, while a small amount of Si/S reacted with NaOH to produce oxides such as Na 2 SiO 3 and Na 2 S. Fe/Al elements generated Fe(OH) 2 , NaAlO 2 , and other precipitates. Further in the acid leaching process, the oxide generated by Si/S was dissolved, resulting in a small amount of undissolved quartz precipitation. Fe/Al was almost removed. The Si/S dissolution-Fe /Al leaching-step removal mechanism in the process of producing ultra-low ash coal from long-flame coal was revealed. The ultra-low ash coal prepared by this method has high application value, which can provide raw materials for the positive electrode of sodium ion batteries and high-quality activated carbon.
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