期刊文献+

Using HyperCoal to prepare metallurgical coal briquettes via hot-pressing 被引量:6

Using HyperCoal to prepare metallurgical coal briquettes via hot-pressing
下载PDF
导出
摘要 HyperCoal was prepared from low-rank coal via high-temperature solvent extraction with N-methylpyrrolidone as an extraction solvent and a liquid-to-solid ratio of 50 mL/g in a high-temperature and high-pressure reactor. When HyperCoal was used as a binder and pulverized coal was used as the raw material, the compressive strength of the hot-pressed briquettes(each with a diameter of 20 mm and mass of 5 g) under different conditions was studied using a hot-pressing mold and a high-temperature furnace. The compressive strength of the hot-pressed briquettes was substantially improved and reached 436 N when the holding time period was 15 min, the hot-pressing temperature was 673 K, and the HyperCoal content, was 15 wt%. Changes in the carbonaceous structure, as reflected by the intensity ratio between the Raman G-and D-bands(IG/ID), strongly affected the compressive strength of hot-pressed briquettes prepared at different hot-pressing temperatures. Compared with cold-pressed briquettes, hot-pressed briquettes have many advantages, including high compressive strength, low ash content, high moisture resistance, and good thermal stability; thus, we expect that hot-pressed briquettes will have broad application prospects. HyperCoal was prepared from low-rank coal via high-temperature solvent extraction with N-methylpyrrolidone as an extraction solvent and a liquid-to-solid ratio of 50 mL/g in a high-temperature and high-pressure reactor. When HyperCoal was used as a binder and pulverized coal was used as the raw material, the compressive strength of the hot-pressed briquettes(each with a diameter of 20 mm and mass of 5 g) under different conditions was studied using a hot-pressing mold and a high-temperature furnace. The compressive strength of the hot-pressed briquettes was substantially improved and reached 436 N when the holding time period was 15 min, the hot-pressing temperature was 673 K, and the HyperCoal content, was 15 wt%. Changes in the carbonaceous structure, as reflected by the intensity ratio between the Raman G-and D-bands(IG/ID), strongly affected the compressive strength of hot-pressed briquettes prepared at different hot-pressing temperatures. Compared with cold-pressed briquettes, hot-pressed briquettes have many advantages, including high compressive strength, low ash content, high moisture resistance, and good thermal stability; thus, we expect that hot-pressed briquettes will have broad application prospects.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第5期547-554,共8页 矿物冶金与材料学报(英文版)
基金 financially supported by the NationalNatural Science Foundation of China (No. 51574023) the National Key Research and Development Program ofChina (No. 2016YFB0600701)
关键词 HyperCoal COAL BRIQUETTE COMPRESSIVE strength BINDER HOT-PRESSING Hyper Coal coal briquette compressive strength binder hot-pressing
  • 相关文献

参考文献4

二级参考文献59

  • 1侯丽红,申峻,李伟,凌开成.溶胀技术在煤科学中的研究进展[J].现代化工,2011,31(S1):38-42. 被引量:2
  • 2胡凯,刘英俊,Ronald W.T.Wilkins.激光喇曼光谱碳质地温计及其地质应用[J].地质科学,1993,28(3):235-245. 被引量:23
  • 3周渝生.煤基熔融还原炼铁新工艺开发现状评述[J].钢铁,2005,40(11):1-8. 被引量:35
  • 4葛岭梅,王晓华,夏美丽,薛晓宏.贵州煤萃取物的族组成与萃取动力学特征探讨[J].湖南科技大学学报(自然科学版),2006,21(1):77-81. 被引量:4
  • 5王知彩,水恒福,张德祥,高晋生.水热处理对神华煤质的影响[J].燃料化学学报,2006,34(5):524-529. 被引量:29
  • 6YOSHIDA T, TAKANOHASHI T, SAKANISHI K, SAITO I, FUJ/TA M, MASHIMO K. The effect of extraction condition on "HyperCoal" production ( 1 ) -under room temperature filtration [ J ]. Fuel, 2002, 81 ( 11/12 ) : 1463-1469.
  • 7OKUYAMA N, FURUYA A, KOMATSU N, SHIGEHISA T. Development of a Hyper-coal process to produce ash-free coal[ J].Kobe Steel Engineering Reports, 2006, 56(2) : 15-22.
  • 8MASAKI K, YOSHIDA T, LI C, TAKANOHASHI T, SAITO I. The effects of pretreatment and the addition of polar compounds on the production of "HyperCoal" from subbituminous coals[ J].Energy Fuels, 2004, 18(4) : 995-1000.
  • 9MASAKI K, KASHIMURA N, TAKANOHASHI T, SATO S, MATSUMURA A, SAITO I. Effect of pretreatment with carbonic acid on "HyperCoal" ( ash-free coal) production from low-rank coals[ J]. Energy Fuels, 2005, 19( 5 ) : 2021-2025.
  • 10MIURA K, NAKAGAWA H, ASHIDA R, II-IARA T. Production of clean fuels by solvent skimming of coal at around 350C [J]. Fuel, 2004, 83(6) : 733-738.

共引文献56

同被引文献71

引证文献6

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部