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Preparation of nitric humic acid by catalytic oxidation from Guizhou coal with catalysts 被引量:9

Preparation of nitric humic acid by catalytic oxidation from Guizhou coal with catalysts
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摘要 Nitric humic acid was prepared by catalytic oxidation between nitric acid and Guizhou coal, with added catalysts. We investigated catalytic oxidation processes and the factors that affect the reactions. The effects of different catalysts, including NiSO 4 support on active carbon (AC-NiSO 4 ), NiSO 4 support on silicon dioxide (SiO 2 -NiSO 4 ), composites of SO 4 2à /Fe 2 O 3 , Zr-iron and vanadium-iron composite were studied. As well, we investigated nitric humic acid yields and the chemical structure of products by element analysis, FT-IR and E4/E6 (an absorbance ratio at wavelengths of 465 and 665 nm of humic acid alkaline extraction solutions). The results show that the catalytic oxidation reaction with added catalysts can increase humic acid yields by 18.7%, 16.36%, 12.94%, 5.61% and 8.59%, respectively. The highest yield of humic acid, i.e., 36.0%, was obtained with AC-NiSO 4 as the catalyst. The amounts of C and H decreased with the amount of nitrogen. The increase in the E4/E6 ratio in catalytic oxidation of (Guizhou) coal shows that small molecular weights and high yields of nitric humic acid can be obtained by catalytic oxidation reactions. Nitric humic acid was prepared by catalytic oxidation between nitric acid and Guizhou coal, with added catalysts. We investigated catalytic oxidation processes and the factors that affect the reactions. The effects of different catalysts, including NiSO4 support on active carbon (AC-NiS04), NiS04 support on sil- icon dioxide (SiO2-NiSO4), composites of SO42-1Fe203, Zr-iron and vanadium-iron composite were stud- ied. As well, we investigated nitric humic acid yields and the chemical structure of products by element analysis, FT-IR and E4/E6 (an absorbance ratio at wavelengths of 465 and 665 nm of humic acid alkaline extraction solutions). The results show that the catalytic oxidation reaction with added catalysts can increase humic acid yields by 18.7%, 16.36% 12.94%, 5.61% and 8.59%, respectively. The highest yield of humic acid, i.e., 36.0%, was obtained with AC-NiSO4 as the catalyst. The amounts of C and H decreased with the amount of nitrogen. The increase in the E4/E6 ratio in catalytic oxidation of (Guizhou) coal shows that small molecular weights and high yields of nitric humic acid can be obtained by catalytic oxidation reactions.
出处 《International Journal of Mining Science and Technology》 2012年第1期75-78,共4页 矿业科学技术学报(英文版)
基金 sponsored by the Shaanxi Key Scientific and Technological Project, China (No. 2010K07-20) the National Science and Technology Major Project (No. 2011ZX05037-003)
关键词 催化氧化反应 催化剂制备 腐植酸 贵州煤 硝酸 E4/E6值 复合材料 吸光度比值 Guizhou coal Catalytic oxidation Humic acid Catalysts
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  • 1姜玉凤,李侃社,周安宁,杨致远.神府煤光催化氧化产生腐植酸的特性研究[J].煤炭转化,2004,27(4):83-86. 被引量:11
  • 2陆伟,王德明,周福宝,戴广龙,李增华.绝热氧化法研究煤的自燃特性[J].中国矿业大学学报,2005,34(2):213-217. 被引量:50
  • 3杨志远,周安宁.神府煤光催化氧化降解过程的FTIR研究[J].煤炭学报,2005,30(6):759-763. 被引量:16
  • 4舒新前,王祖讷,徐精求,葛岭梅.神府煤煤岩组分的结构特征及其差异[J].燃料化学学报,1996,24(5):426-433. 被引量:57
  • 5Libuse M, Josef K, Jirina C, et al. Humic acids from coal of the North-Bohemia coal field[J]. Reactive and functional polymers. 2001, 47(2) : 119-123.
  • 6R. M. Fakoussa, P. J. Frost. In vivo-decolerization of coal-derived humic acids by laccase-excreting fungus: Appl Microbiol Biotechnol[J]. 1999, 52: 60-65.
  • 7Platonov V V. Study of the chemical composition of brown-coal humic acids byadsorption liquid chromatography[J]. Fuel and energy abstracts. 1997, 38(6): 381-389.
  • 8Butuzova L, krzton A, Bazarova O. Structure and properties of humic acid obtainedfromthermo-oxidisedbrowncoal[J]. Fuel, 1998, 77(6): 581-584.
  • 9中科院山西煤化所.腐植酸及其原料煤分析方法[M].1981.
  • 10何曼君,陈维孝,董西侠.高分子物理[M].上海:复旦大学出版社,1991.46-48.

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