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钯/炭催化剂对碱木质素还原反应的催化作用 被引量:32

Catalytic Effect of Pd/C Catalyst on Deoxidizing of Straw Alkali Lignin
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摘要 采用甲醛还原法制备钯 /炭 (Pd/C)催化剂 ,考察了以Pd/C为催化剂 ,以环己烯为氢给予体的催化体系对麦秆碱木质素还原反应的催化作用 ,用化学法对反应前后碱木质素官能团进行了定量测定 ,用FTIR、UV和1 HNMR光谱对木质素化学结构进行了分析。结果表明 ,Pd/C催化剂对碱木质素还原反应具有较高的催化活性 ,碱木质素总羟基含量增加了 46 95% ,酚羟基含量增加了 33 74% ,醇羟基含量增加了 63 93 % ;甲氧基含量降低了 1 7 73 % ,羧基含量降低了 53 41 % ,总酸性基变化不大 ,木质素的苯环结构稳定 ,活性官能团增加 ,反应活性提高 ,Pd/C催化剂对木质素还原活化反应具有良好的催化作用。 The Pd/C catalyst was prepared by formaldehyde deoxidation method and the catalytic effect of active carbon supported palladium on the deoxidizing reaction of alkali lignin from the straw was investigated. The functional groups of the straw alkali lignin were determined quantitatively befor and after reaction ,the chemical structure of the lignin was analyzed by means of FTIR,UV and 1H-NMR.The results indicated that the Pd/C catalyst had better catalytic effect on the deoxidizing reaction of straw alkali lignin. It was found that the content of total hydroxyl increased 49.95 %,the phenolic hydroxyl increased 33.74 %,the aliphatic hydroxyl increased 63.93%,on the other hand the methoxyl group decreased 17.73%;the content of carboxyl reduced 53.41% and the total acidic group had little changes;the phenyl structure of lignin was steady.The active functional group of alkali lignin was increased so that the reactive activity was enhanced.
出处 《中国造纸学报》 CAS CSCD 北大核心 2004年第2期129-133,共5页 Transactions of China Pulp and Paper
基金 国家自然科学基金资助项目 (30 4 71 363)部分内容 东北林业大学院士启动基金项目
关键词 碱木质素 PD/C催化剂 还原反应 羟基含量 催化作用 催化体系 羧基含量 总酸 酚羟基 麦秆 Pd/C catalyst alkali lignin reductive reaction activate
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  • 1Faix O; Grunwald C Determination of Phenolic Group Content of Milled Wood Lignins (MWL) from Different Botanical Origins Using Selective Aminolysis, FTIR, 1H - NMR, and UV Spectroscopy [ J ] . Holzforschung, 1992,46:425
  • 2Coleman R,S,Shan Jikesh A. Chmoselective Cleavage of Benzyl Ethers,Esters and Carbamates in the Presence of other Easily Reducible Groups.Synthesis, 1999: 1399
  • 3Karwa S L, Rajadhyaksha R A Selective catalytic hydrogenation of nitrobenzene to hydrazobenzene [J]. Ind. Eng. Chem. Res., 1988, 27(1):21

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