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水相电位滴定法测定木质素的酚羟基和羧酸基含量
引用本文:周明松,黄恺,邱学青,杨东杰.水相电位滴定法测定木质素的酚羟基和羧酸基含量[J].化工学报,2012,63(1):258-265.
作者姓名:周明松  黄恺  邱学青  杨东杰
作者单位:1.华南理工大学化学与化工学院;2广东省绿色化学产品技术重点实验室
基金项目:国家杰出青年科学基金,国家自然科学基金,国家重点基础研究发展计划项目
摘    要:引言木质素是自然界中仅次于纤维素的第二大可再生资源,是人类未来的主要资源来源1]。以木质素为原料制备新材料和化工原料,逐步替代化石等日趋枯竭的不可再生资源,正成为一种新的发展趋

关 键 词:木质素  酚羟基  羧酸基  水相  电位滴定  
收稿时间:2011-05-10
修稿时间:2011-08-26

Content determination of phenolic hydroxyl and carboxyl in lignin by aqueous phase potentiometric titration
ZHOU Mingsong , HUANG Kai , QIU Xueqing , YANG Dongjie.Content determination of phenolic hydroxyl and carboxyl in lignin by aqueous phase potentiometric titration[J].Journal of Chemical Industry and Engineering(China),2012,63(1):258-265.
Authors:ZHOU Mingsong  HUANG Kai  QIU Xueqing  YANG Dongjie
Affiliation:1.School of Chemistry and Chemical Engineering,South China University of Technology;2Guangdong Provincial Laboratory of Green Chemical Technology
Abstract:The potentiometric titration in aqueous phase is used for determination content of phenolic hydroxyl and carboxyl on alkali lignin(AL) and sodium lignosulphonate(SL).The results show that the content of phenolic hydroxyl and carboxyl are 2.81 mmol·g-1 and 1.72 mmol·g-1 for AL,and 1.32 mmol·g-1 and 0.86 mmol·g-1 for SL,respectively.A comparison with classical non-aqueous potentiometric titration indicates that the stability is more excellent for the measurement in aqueous phase.The dynamic light scattering(DLS) method is used for the study of hydrodynamic diameter distributions of AL and SL in DMF and water solvents.The results show that they have stronger aggregation in DMF than in alkaline water,indicating that there is better dissolubility in alkaline aqueous solution than in DMF solvent.Therefore,it can be considered that the aqueous potentiometric titration is more suitable for the quantitative determination of phenolic hydroxyl and carboxyl contents on lignin-based compounds and can be an option for quantitative determination of the functional groups on lignin.
Keywords:lignin  phenolic hydroxyl  carboxyl  aqueous phase  potentiometric titration
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