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Oxidative Functionalisation of Lignin by Layer-by-Layer Immobilised Laccases and Laccase Microcapsules

机译:多层固定化漆酶和漆酶微胶囊对木质素的氧化功能化

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摘要

Laccase was either supported onto alumina particles or physically entrapped inside microcapsules. In both cases, the enzyme was protected by coating with oppositely charged polyelectrolytes by means of the layer-by-layer technique. The activities of these laccase particles and microcapsules were studied on softwood milled wood and kraft residual lignins, in the presence and absence of different mediators. Quantitative 31P NMR was used to determine the structural modifications induced in the lignin structures. Compared to the native enzyme, the laccase particles and microcapsules were found to be more reactive, showing higher conversions. Irrespective of the experimental conditions, the oxidation efficiency was enhanced by the presence of 1-hydroxybenzotriazole or violuric acid as the oxidation mediator. Differently immobilised laccases showed distinct reaction selectivities in the oxidative pattern of lignin.
机译:漆酶要么被支撑在氧化铝颗粒上,要么​​被物理包裹在微胶囊中。在两种情况下,均通过逐层技术用相反电荷的聚电解质包被来保护酶。在存在和不存在不同介质的情况下,研究了这些漆酶颗粒和微胶囊在软木磨碎的木材和牛皮纸上残留的木质素上的活性。 31P NMR定量用于确定木质素结构中诱导的结构修饰。与天然酶相比,漆酶颗粒和微胶囊被发现具有更高的反应性,显示出更高的转化率。无论实验条件如何,通过1-羟基苯并三唑或紫草酸作为氧化介质的存在都可以提高氧化效率。不同固定的漆酶在木质素的氧化模式中显示出不同的反应选择性。

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