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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Enzymatic Synthesis of a Diene Ester Monomer Derived from Renewable Resource
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Enzymatic Synthesis of a Diene Ester Monomer Derived from Renewable Resource

机译:衍生自再生资源的二烯酯单体的酶促合成

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摘要

The total or partial substitution of fossil raw materials by biobased materials from renewable resources is one of the great challenges of our society. In this context, the reaction under mild condition as enzyme-catalyzed esterification was applied to investigate the esterification of the biobased 10-undecenoic acid with 2-hydroxyethyl methacrylate (HEMA) to obtain a new diene ester monomer. The environmentally friendly enzymatic reaction presented up to 100% of conversion; moreover, the production of possible by-products was minimized controlling reaction time and amount of enzyme. Furthermore, the presence of chloroform was evaluated during the enzymatic reactions and despite high conversions with higher enzyme concentration, the solvent-free system showed fast kinetics even with 1.13 U/g substrates. In addition, the commercial immobilized lipases Novozym 435 and NS 88011 could be applied for up to 10 cycles keeping conversions about 90%. The scale-up of the reaction was possible and a purification procedure was applied in order to isolate the diene ester monomer 2-(10-undecenoyloxy)ethyl methacrylate, preserving its double bonds, which could allow a potential use of this product in the synthesis of new renewable polymers through techniques as metathesis, thiol-ene, or free-radical polymerization.
机译:来自可再生资源的生物化材料的整体或部分替代化石原料是我们社会的巨大挑战之一。在这种情况下,施加温和条件下的反应作为酶催化的酯化,研究了与甲基丙烯酸2-羟乙基甲酸甲酯(HEMA)的生物化的10-过脱烯酸的酯化,得到新的二烯酯单体。环保酶反应呈现出100%的转化率;此外,可以最小化可能副产物的产生控制反应时间和酶量。此外,在酶促反应期间评价氯仿的存在,尽管酶浓度较高,但溶剂的系统均匀地显示出快速动力学,即使是1.13 U / G基材。此外,商业固定化脂肪酶Novozym 435和NS 88011可以施加多达10个循环,保持约90%的转化。可以进行反应的扩大率,施用纯化方法,以分离二烯酯单体2-(10-过索氧基氧基)乙基丙烯酸甲酯,保持其双键,这可以允许在合成中使用该产品通过技术作为复分解,硫醇-NE或自由基聚合的技术新的可再生聚合物。

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