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Intensification of Enzymatic Reactions in Heterogeneous Systems by Low Intensity, Uniform Sonication: New Road to 'Green Chemistry'

机译:低强度,统一超声处理的异构体系中的酶促反应的强化:“绿色化学”的新道路

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Enzymatic bio-processing of various substrates generates significantly less wastewater effluents that are readily biodegradable, and do not pose an environmental threat. However, two major shortcomings that impede acceptance by industry are expensive processing costs and slow reaction rates. Enzymatic bio-processing of cotton textiles with cellulase and pectinase enzyme processing solutions, under low energy, uniform sonication greatly improved the efficiency of the enzymes and significantly increased the overall reaction rates. Specific critical features of combined enzyme/ultrasound bio-processing are: a) cavitation effects that enhance the transport of enzyme macromolecules toward the substrate surface, b) the several hundred fold greater effect of cavitation in heterogeneous than homogeneous systems, and c) the maximum effects of cavitation at -50 °C that are optimum temperature for most enzymatic reactions. Contrary to common belief, low intensity, uniform sonication does not damage or inactivate sensitive structures of enzyme protein macromolecules Overall, under specific conditions, carefully controlled introduction of ultrasound energy during enzymatic bio-processing has an excellent potential for the intensification of a variety of technological processes that involve many types of industrial enzymes and substrates.
机译:各种基材的酶生物加工产生明显较少的废水流出物,其易生物降解,并且不会造成环境威胁。然而,两种主要缺点妨碍行业接受是昂贵的加工成本和缓慢的反应率。酶法生物加工纤维素酶和果胶酶酶加工溶液,在低能量下,均匀的超声处理大大提高了酶的效率,显着提高了整体反应速率。组合酶/超声生物加工的特定关键特征是:a)气相效应,其增强酶大分子朝向基板表面的传输,b)空化的效果多于均匀的系统,C)最大值空化对最佳温度的空化对大多数酶促反应的最佳温度。与常见的信念,低强度,均匀的超声处理不会损坏或酶蛋白质大分子的敏感结构总体,在特定条件下,在酶生物加工过程中小心控制的超声能量引入具有优异的各种技术的强化潜力。涉及许多类型的工业酶和基材的方法。

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