Volume 40 Issue 01
Jan.  2012
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GONG Gui-zhen, WEI Xian-yong, ZONG Zhi-min. Separation and analysis of the degradation products of two coals in aqueous NaOCl solution[J]. Journal of Fuel Chemistry and Technology, 2012, 40(01): 1-7.
Citation: GONG Gui-zhen, WEI Xian-yong, ZONG Zhi-min. Separation and analysis of the degradation products of two coals in aqueous NaOCl solution[J]. Journal of Fuel Chemistry and Technology, 2012, 40(01): 1-7.

Separation and analysis of the degradation products of two coals in aqueous NaOCl solution

  • Received Date: 2011-07-01
  • Rev Recd Date: 2011-10-07
  • Publish Date: 2012-01-31
  • Two coals were oxidized with aqueous NaOCl solution under mild conditions. The reaction mixture acidified was sequentially extracted with ethoxyethane, CS2, petroleum ether, acetic ester and benzene, followed esterification by CH2N2 and analysis with GC/MS. The results show that chloro-substituted compounds, aliphatic acids and aromatic polycarboxylic acids are main products. The oxidative product was sequentially extracted with different polar solvents and achieved a simple group separation. Effective separation and analysis of oxidation products of coal in aqueous NaOCl solution, established by the study, provides a feasible method for high value-added use of coal.
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  • LIU Z-X, LIU Z-C, ZONG Z-M, WEI, X-Y, WANG J, LEE C W. GC/MS analysis of water-soluble products from the mild oxidation of Longkou brown coal with H2O2[J]. Energy Fuels, 2003, 17(2):424-426.
    HAYATSU R, WINANS R E, SCOTT R G, McBETH R L. Is kerogen-like material present in coal? 1 Buffer-controlled permanganate oxidation of coal[J]. Fuel, 1981, 60(2):158-161.
    CHO E H, LUO Q. Coal oxidation and calcium loading on oxidized coal[J]. Fuel Process Technol, 1996, 46(1):25-39.
    HUANG Y-G, ZONG Z-M, YAO Z-S, ZHENG Y-X, MOU J, LIU G-F, CAO J-P, DING M-J, CAI K-Y, WANG F, ZHAO W, XIA Z-L, WU L, WEI X-Y. Ruthenium ion-catalyzed oxidation of Shenfu coal and its residues[J]. Energy Fuels, 2008, 22(3):1799-1806.
    MURATA S, TANI Y, HIRO M, KIDENA K, ARTOK L, NOMURA M, MIYAKE M. Structural analysis of coal through RICO reaction:Detailed analysis of heavy fractions[J]. Fuel, 2001, 80(14):2099-2109.
    CHAKRABARTTY S K, KRETSCHMER H O. Studies on the structure of coals:Part1 The nature of aliphatic groups[J]. Fuel, 1972, 51(2):160-163.
    CHAKRABARTTY S K, KRETSCHMER H O. Studies on the structure of coals:2 The valence state of carbon in coal[J]. Fuel, 1974, 53(2):132-135.
    MAYO F R, PAVELKA L A, HIRSCHON A S, ZEVELY J S. Extractions and reactions of coals below 100 ℃:4 Oxidation of Illinois No.6 coal[J]. Fuel, 1988, 67(5):612-618.
    LANDOLT R G. Role of substituents and pH in activating hypochlorite oxidations of coal models[J]. Fuel, 1977, 56(2):224-225.
    ZHANG W, XU Z, PAN B, LV L, ZHANG Q, ZHANG Q, DU W, PAN B, ZHANG Q. Assessment on the removal of dimethyl phthalate from aqueous phase using a hydrophilic hyper-cross-linked polymer resin NDA-702[J]. J Colloid Interface Sci, 2007, 311(2):382-390.
    HIGASHI F, HAYASHI R, YAMAZAKI T. Solution copolyeondensation of isophthalic acid, terephthalic acid, 4,4’-dihydroxydiphenylsulfone, and bisphenols with a tosyl chloride/dimethylformamide/pyridine condensing agent[J]. J Appl Polymer Sci, 2002, 86(10):2607-2610.
    HIGASHI F, MORIYA M. Solution polycondensation of isophthalic acid/terephthalic acid and tetrachlorobisphenol A of low polymerizability with tosyl chloride/dimethylfor ma mide/pyridine improved by the introduction of comonomes of smaller sizes[J]. J Polym Sci Part A, 2003, 41(6):821-830.
    WAGNER S, DAI H, STAOLETON R, ILLINGSWORTH M L, SIOCHI E J. Pendent polyimides using mellitic acid dianhydride:I An atomic oxygen-resistant, pendent 4, 4’-ODA/PMDA/MADA Co-polyimide containing zirconium[J]. High Perform Polym, 2006, 18(4):399-419.
    MONTICELLI O, RUSSO S, CAMOAGNA R, VOIT B. Preparation and characterisation of blends based on polyamide 6 and hyperbranched aramids as palladium nanoparticle supports[J]. Polymer, 2005, 46(11):3597-3606.
    REN H, SUN J, ZHAO Q, ZHOU Q, LING Q. Synthesis and characterization of a novel heat resistant epoxy resin based on N,N’-bis (5-hydroxy-1-naphthyl) pyromellitic diimide[J]. Polymer, 2008, 49(24):5249-5253.
    MROZINSKI J, BIENKO A, KOPEL P, LAMGER V. Structure and magnetic properties of a trinuclear nickel(II) complex with benzenetricarboxylate bridge[J]. Inorg Chim Acta, 2008, 361(12/13):3723-3729.
    KOPEL P, KAMENICEK J, PETRICEK V, KURECKA A, KALINSKA B, MROZINSKI J. Syntheses and study on nickel and copper complexes with 1,3,5-benzenetricarboxylic acid. Crystal and molecular structure of (ClO4)3·4H2O[J]. Polyhedron, 2007, 26(3):535-542.
    WANG X L, LI J, LIN H Y, HU H L, CHEN B K, MU B. Synthesis, structures and electrochemical properties of two novel metal-organic coordination complexes based on trimesic acid (H3BTC) and 2,5-bis (3-pyridyl)-1,3,4-oxadiazole (BPO)[J]. Solid State Sci, 2009, 11(12):2118-2124.
    ZHENG C, REN H, CUI Z, CHEN F, HONG G. Synthesis and characterization of nano-scale terbium (III)-trimesic acid (TMA)-1, 10-phenanthroline(phen) luminescent complex[J]. J Alloys Compd, 2009, 477(1/2):333-336.
    KARABACH Y Y, KIRILLOV A M, HAUKKA M, KOPYLOVICH M N, POMBEIRO A J L. Copper(II) coordination polymers derived from triethanolamine and pyromellitic acid for bioinspired mild peroxidative oxidation of cyclohexane[J]. J Inorg Biochem, 2008, 102(5/6):1190-1194.
    王晓华. 煤的溶剂分级萃取研究. 徐州:中国矿业大学, 2002. (WANG Xiao-hua. Fractionated extraction of coals and compositional and structural analysis of the extracts. Xuzhou:China University of Mining and Technology, 2002.)
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