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Continuous synthesis of hexanal by immobilized hydroperoxide lyase in packed-bed reactor

机译:固定床反应器中固定化氢过氧化物裂解酶连续合成己醛

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This study aimed to develop an optimal continuous procedure of immobilized hydroperoxide lyase (HPL)-catalyzed synthesis of hexanal. A central composite design was used to study the combined effect of substrate concentration and the residence time of the reactant on hexanal concentration. The optimum conditions for hexanal synthesis included a 13-HPOD concentration of 43.54 mM and a residence time of 60.99 min. The maximum hexanal concentration was 3560 +/- A 130 mg/L when 16 U of immobilized HPLwas used. Furthermore, the stability of immobilized HPL was significantly improved in the packed-bed reactor, as evidenced by the slowed enzyme inactivation and prolonged operation time. The immobilized HPL remained activity until 40 mL substrate solution flowed past the packed-bed reactor. The catalyst productivity of hexanal in the packed-bed reactor was 5.35 +/- A 0.34 mg/U, much higher than that in the batch stirred reactor. This study was greatly meaningful for providing a green method to the large-scale production of hexanal.
机译:这项研究旨在开发固定化氢过氧化物裂解酶(HPL)催化己醛合成的最佳连续程序。中央复合设计用于研究底物浓度和反应物停留时间对己醛浓度的综合影响。己醛合成的最佳条件包括13-HPOD浓度为43.54 mM,停留时间为60.99 min。当使用16 U的固定HPL时,最大己醛浓度为3560 +/- A 130 mg / L。此外,固定床HPL的稳定性在填充床反应器中得到了显着改善,这可通过减慢酶的失活速度和延长操作时间来证明。固定的HPL保持活性,直到40 mL底物溶液流过填充床反应器。填充床反应器中己醛的催化剂生产率为5.35 +/- A 0.34 mg / U,比间歇搅拌反应器中的高得多。这项研究对于为绿色己醛的大规模生产提供绿色方法具有重大意义。

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