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研究一种特定的木质素模型:γ-氧化及其如何影响醇醛脱氢共聚物的水解效率。

Study of a specific lignin model: γ-oxidation and how it influences the hydrolysis efficiency of alcohol-aldehyde dehydrogenation copolymers.

机构信息

UMR 614 FARE, INRA, Bât 18-Moulin de la Housse-BP, 1039-51687 Reims Cedex 2, France.

出版信息

Bioresour Technol. 2011 May;102(10):5567-73. doi: 10.1016/j.biortech.2011.02.103. Epub 2011 Mar 2.

Abstract

Six coniferyl alcohol-coniferaldehyde dehydrogenation copolymers (DHcoPs) were synthesized in order to determine the influence of an increased number of aldehyde functions on hydrolysis. After heterogeneous hydrolysis using acidic Montmorillonite K10 clay, the DHcoPs were thioacidolyzed and analyzed by gel permeation chromatography (GPC). Comparison of the thioacidolyzed products, with and without the hydrolysis step, showed that there was a greater proportion of condensation reaction in the absence of aldehyde. When the coniferaldehyde content in the initial synthetic mixture was more than 30% (w/w), only a low fraction of condensed products was generated during the K10 clay hydrolysis step. This suggests that condensation pathways are mainly due to the alcohol present in the γ-position in the DHcoPs. Investigation of the reactivity and the potential condensation of aldehyde and alcohol monomers under hydrolysis conditions showed the important conversion of coniferyl alcohol and conversely the stability of coniferaldehyde.

摘要

为了确定增加醛基数量对水解的影响,合成了六种松柏醇-松柏醛脱氢共聚物(DHcoPs)。使用酸性蒙脱土 K10 粘土进行非均相水解后,对 DHcoPs 进行硫代酸解,并通过凝胶渗透色谱(GPC)进行分析。比较有和没有水解步骤的硫代酸解产物表明,在没有醛的情况下,缩合反应的比例更大。当初始合成混合物中的松柏醛含量超过 30%(w/w)时,在 K10 粘土水解步骤中仅生成了少量的缩合产物。这表明缩合途径主要归因于 DHcoPs 中γ位的醇。对水解条件下醛和醇单体的反应性和潜在缩合的研究表明,松柏醇的转化率很重要,相反,松柏醛的稳定性也很重要。

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