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首页> 外文期刊>Journal of Polymers and the Environment >Oxygen Permeability and Biodegradability of Polyuronic Acids Prepared from Polysaccharides by TEMPO-Mediated Oxidation
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Oxygen Permeability and Biodegradability of Polyuronic Acids Prepared from Polysaccharides by TEMPO-Mediated Oxidation

机译:TEMPO介导的氧化法从多糖制得的聚脲醛酸的透氧性和生物降解性

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Polyuronic acids, i.e., amylouronic acid, cellouronic acid and chitouronic acid, were prepared from starch, cellulose and chitin, respectively, by the 2,2,6,6-tetramethylpiperidine-1-oxy radical (TEMPO)-mediated oxidation, and their gas-barrier properties and biodegradability were studied in consideration to use the polyuronic acids as flexible packaging films or coating materials. Cellouronic acid and amylouronic acid had excellent oxygen-barrier properties similar to that of poly(vinyl alcohol) (PVA), while chitouronic acid did not. The regular chemical structures of the former two polyuronic acids with no bulky substituents or adducts may have brought about such high oxygen-barrier levels. An oxidized product prepared form fine microcrystalline cellulose by the TEMPO-mediated oxidation was not completely dissolved in water, but became a paste. However, this paste also formed sufficiently smooth films by coating, and had good gas-barrier property. All polyuronic acids prepared were biodegradable; cellouronic acid and chitouronic acid had high degrees of biodegradability, while amylouronic acid had quite low value. These various characteristics are significant for end use of these new polyuronic acids as gas-barrier materials for biodegradable packaging.
机译:通过2,2,6,6-四甲基哌啶-1-氧基(TEMPO)介导的氧化作用,分别由淀粉,纤维素和几丁质制备聚尿酸,即戊糖醛酸,纤维素尿酸和壳糖醛酸,并对其进行氧化。考虑到使用聚脲醛酸作为软包装膜或涂料,对阻气性和生物降解性进行了研究。纤维素酸和戊糖醛酸具有优异的阻氧性能,类似于聚乙烯醇(PVA),而壳糖醛酸则没有。没有大的取代基或加合物的前两种聚糖醛酸的规则化学结构可能带来了如此高的氧阻隔水平。由TEMPO介导的氧化作用由微晶纤维素细粉制备的氧化产物没有完全溶解在水中,而是变成糊状物。但是,该糊剂也通过涂布形成足够光滑的膜,并且具有良好的阻气性。制备的所有聚脲醛酸都是可生物降解的。纤维素尿酸和壳糖醛酸具有较高的生物降解度,而戊糖醛酸的降解值却相当低。这些新特性对于这些新的聚脲醛酸作为可生物降解包装的阻气材料的最终用途非常重要。

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