The Atmospheric Pressure Capillary Plasma Jet Is Well-Suited to Supply H(2)O(2) for Plasma-Driven Biocatalysis

大气压毛细管等离子体射流非常适合为等离子体驱动的生物催化提供H(2)O(2)

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Abstract

Plasma-generated H(2)O(2) can be used to fuel biocatalytic reactions that require H(2)O(2) as a cosubstrate, such as the conversion of ethylbenzene to (R)-1-phenylethanol ((R)-1-PhOl) catalyzed by unspecific peroxygenase from Agrocybe aegerita (rAaeUPO). Immobilization is recently shown to protect biocatalysts from inactivation by highly reactive plasma-produced species; however, H(2)O(2) supply by the employed plasma sources (μAPPJ and DBD) is limiting for rAaeUPO performance. This study evaluates a recently introduced capillary plasma jet for suitability to supply H(2)O(2) in situ. H(2)O(2) production is modulated by varying the water concentration in the feed gas, providing a greater operating window for applications in plasma-driven biocatalysis. In a static system after 80 min of biocatalysis, a turnover number of 44,199 mol((R)-1-PhOl) mol(-1) (rAaeUPO) is achieved without significant enzyme inactivation. By exchanging the reaction solution every 5 min, a total product yield of 122 μmol (R)-1-PhOl is achieved in 700 min run time, resulting in a total turnover number of 174,209 mol((R)-1-PhOl) mol(-1) (rAaeUPO). This study concludes that the capillary plasma jet, due to its flexibility regarding feed gas, admixtures, and power input, is well suited for in situ H(2)O(2) generation for plasma-driven biocatalysis tailoring to enzymes with high H(2)O(2) turnover.

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