Citation:
OUYANG Xin-ping, TAN You-dan, QIU Xue-qing. Oxidative degradation of lignin for producing monophenolic compounds[J]. Journal of Fuel Chemistry and Technology,
;2014, 42(6): 677-682.
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Oxidative degradation of lignin for producing monophenolic compounds was carried out under microwave irradiation, with H2O2, CuO and Fe2(SO4)3 as the oxidants. The results indicated that the yield of monophenolic compounds and degradation rate of lignin feed reach 11.86% and 90.88%, respectively, under the relatively benign conditions of 180 ℃. Oxidative degradation of lignin with H2O2 as a single oxidant gives a high degradation rate but a lower yield of monophenolic compounds, due to the aromatic ring opening reaction; however, Cu2+ present in the oxidant system is able to promote the cleavage of side chain and ether bond, whereas Fe3+ to enhance the oxidation ability of H2O2, which are then conducive to improving the yield of monophenolic compounds. A moderate increase of degradation temperature and reaction time are favorable for improving the yield of monophenolic compounds. Owing to the coexistence of lignin degradation and recondensation of degraded fragments, the prevention of degraded lignin from recondensation turns to be a key issue to achieve a high yield of monophenolic compounds.
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[1]
[1] 苏深, 李文, 白宗庆, 相宏伟, 白进. Al2O3·Na2O·xH2O/NaOH/Al(OH)3催化剂催化木质素水蒸气气化制氢研究[J]. 燃料化学学报, 2010, 38(3): 270-274. (SU Shen, LI Wen, BAI Zong-qing, XIANG Hong-wei, BAI Jin. Production of hydrogen by steam gasification from lign in with Al2O3·Na2O·xH2O/NaOH/Al(OH)3 catalyst[J]. Journal of Fuel Chemistry and Technology, 2010, 38(3): 270-274.)
-
[2]
[2] CARLO B, D'AURIA M, MAGGIO P D, FERRI R. Characterization and degradation of lignin from steam explosion of pine and corn stalk of lignin: The role of super oxide ion and ozone[J]. Ind Crop Prod, 2008, 27(2): 182-188.
-
[3]
[3] YUAN Z, CHENG S, LEITCH M, XU C. Hydrolytic degradation of alkaline lignin in hot-compressed water and ethanol[J]. Bioresour Technol, 2010, 101(23): 9308-9313.
-
[4]
[4] 赵雪冰, 苏凤宜, 邢新会. 过氧乙酸氧化木质素磺酸钠[J]. 清华大学学报(自然科学版), 2005, 45(9): 1244-1247. (ZHAO Xue-bing, SU Feng-yi, XIN Xing-hui. Oxidation of sodium lignosulphonate by peracetic acid[J]. Journal of Tsinghua University (Science and Technology), 2005, 45(9): 1244-1247.)
-
[5]
[5] KIBET J, KHACHATRYAN L, DELLINGER B. Molecular products and radicals from pyrolysis of lignin[J]. Environ Sci Technol, 2012, 46(23): 12994-13001.
-
[6]
[6] 于玉肖, 徐莹, 王铁军, 马隆龙, 张琦, 张兴华, 张雪. 木质素降解模型化合物愈创木酚及苯酚原位加氢制备环己醇[J]. 燃料化学学报, 2013, 41(4): 443-448. (YU Yu-xiao, XU Ying, WANG Tie-jun, MA Long-long, ZHANG Qi, ZHANG Xing-hua, ZHANG Xue. In-situ hydrogenation of lignin depolymerization model compounds to cyclohexanol[J]. Journal of Fuel Chemistry and Technology, 2013, 41(4): 443-448.)
-
[7]
[7] 王威燕, 张小哲, 杨运泉, 杨彦松, 彭会左, 刘文英. 生物油中酚类化合物加氢脱氧催化剂研究进展[J]. 催化学报, 2012, 33(2): 215-221. (WANG Wei-yan, ZHANG Xiao-zhe, YANG Yun-quan, YANG Yan-song, PENG Hui-zuo, LIU Wen-ying. Progress in the catalysts for the hydrodeoxygenation of phenols in bio-oil[J]. Chinese Journal of Catalysis, 2012, 33(2): 215-221.)
-
[8]
[8] PINKOWSKA H, WOLAK P, ZLOCINSKA A. Hydrothermal decomposition of alkali lignin in sub-and supercritical water[J]. Chem Eng J, 2012, 187: 410-414.
-
[9]
[9] KAISER N, BREMBERG U, LARHED M, MOBERG C, HALLBERG A. Fast, convenient, and efficient molybdenum-catalyzed asymmetric allylic alkylation under noninert conditions: An example of microwave-promoted fast chemistry[J]. Angew Chem, 2000, 112(20): 3741-3744.
-
[10]
[10] GU X, CHENG K, HE M, SHI Y, LI Z. La-modified SBA-15/H2O2 systems for the microwave assisted oxidation of organosolv beech wood lignin[J]. Maderas-Cienc Tecnol, 2012, 14(1): 31-42.
-
[11]
[11] 胡立红, 周永红, 刘瑞杰, 张猛. 木质素氧化降解制备分类化合物研究进展[J]. 生物质化学工程, 2012, 46(1): 23-32. (HU Li-hong, ZHOU Yong-hong, LIU Rui-jie, ZHANG Meng. Progress of production of phenolic compounds via oxidative degradtion of lignin[J]. Biomass Chemical Engineering, 2012, 46(1): 23-32.)
-
[12]
[12] CHEN C, PAKDEL H, ROY C. Production of monomeric phenols by thermochemical conversion of biomass: A review[J]. Bioresour Technol, 2001, 79(3): 277-299.
-
[13]
[13] SUN R, LAWTHER J, BANKS W. The effect of alkaline nitrobenzene oxidation conditions on the yield and components of phenolic monomers in wheat straw lignin and compared to cupric (Ⅱ) oxidation[J]. Ind Cro Prod, 1995, 4(4): 241-254.
-
[14]
[14] ZHANG S, YU H, WU L. Degradation of calcium lignosulfonate using Gamma-ray irradiation[J]. Chemosphere, 2004, 57(9): 1181-1187.
-
[15]
[15] ROBERTS V, STEIN V, REINER T, LEMONIDOU A, LI X, LERCHER J. Towards quantitative catalytic lignin depolymerization[J]. Chem-Eur J, 2011, 17(21): 5939-5948.
-
[16]
[16] MILLER J, EVANS L, LITTLEWOLF A, TRUDELL D. Batch microreactor studies of lignin and lignin model compound depolymerization by bases in alcohol solvents[J]. Fuel, 1999, 78(11): 1363-1366.
-
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