显微组分
煤
水力旋流器
算术下溢
重力分离
洁净煤
化学
分离器(采油)
矿物学
环境科学
地质学
采矿工程
石油工程
环境工程
计算机科学
物理
机械
有机化学
热力学
程序设计语言
作者
Xuebin Zhang,Youjun Tao,Yushuai Xian
标识
DOI:10.1080/19392699.2023.2270935
摘要
ABSTRACTEfficient enrichment of macerals improves the liquefaction efficiency of low-rank coal. The paper studied the characteristics of Shendong low-rank coal, including proximate and ultimate analyses, size and density compositions, and petrographic analysis, as well as the migration regularity of narrow particle size of low-rank coal macerals in the enhanced gravity field. On this basis, a novel classification separation process for low-rank coal macerals using Krebs hydrocyclone and enhanced gravity separator was proposed. The classification size was determined to be 0.074 mm and Krebs hydrocyclone achieved a satisfactory classification effect with a classification efficiency of 84.72%. Based on the enhanced gravity separation results of macerals from hydrocyclone underflow and overflow, the optimal sorting solutions for underflow and overflow were obtained through response surface analysis, respectively. Through the novel classification separation process, the vitrinite content of clean coal has been increased from 46.60% to 61.33% with an outstanding recovery of 77.40%. The novel classification separation process using hydrocyclone and enhanced gravity separator develops an excellent enrichment effect for low-rank coal macerals, which also provides a prospective approach for the cleaner utilization of low-rank coal.KEYWORDS: Low-rank coal maceralshydrocycloneclassification separationenhanced gravity separationresponse surface analysis Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThis work was supported by the National Natural Science Foundation of China under Grant No. 51874303.
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