首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Improvement of oxygen transfer coefficient during Penicillium canescens culture - Influence of turbine design, agitation speed, and air flow rate on xylanase production
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Improvement of oxygen transfer coefficient during Penicillium canescens culture - Influence of turbine design, agitation speed, and air flow rate on xylanase production

机译:甘蔗青霉培养过程中氧气转移系数的改善-涡轮设计,搅拌速度和空气流速对木聚糖酶生产的影响

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To improve xylanase productivity from Penicillium canescens 10-10c culture, an optimization of oxygen supply is required. Because the strain is sensitive to shear forces, leading to lower xylanase productivity as to morphological alteration, vigorous mixing is not desired. The influence of turbine design, agitation speed, and air flow rate on K(1)a (global mass transfer coefficient, h(-1)) and enzyme production is discussed. K(1)a values increased with agitation speed and air flow rate, whatever the impeller, in our assay conditions. Agitation had more influence on K(1)a values than air flow, when a disk-mounted blade's impeller (DT) is used; an opposite result was obtained with a hub-mounted pitched blade's impeller (PBT). Xylanase production appeared as a function of specific power (W/m(3)), and an optimum was found in 20 and 100 L STRs fitted with DT impellers. On the other hand, the use of a hub-mounted pitched blade impeller (PBT8), instead of a disk-mounted blade impeller (DT4), reduced the lag time of hemicellulase production and increased xylanase productivity 1.3-fold. [References: 23]
机译:为了提高甘蔗青霉10-10c培养物中的木聚糖酶生产率,需要优化氧气供应。因为该菌株对剪切力敏感,导致较低的木聚糖酶生产率以改变形态,所以不希望剧烈混合。讨论了涡轮设计,搅拌速度和空气流速对K(1)a(全局传质系数,h(-1))和酶产生的影响。在我们的测定条件下,无论叶轮如何,K(1)a值都会随着搅拌速度和空气流速的增加而增加。当使用圆盘安装式叶片的叶轮(DT)时,搅拌对K(1)a值的影响比对气流的影响大。使用安装在轮毂上的变桨叶轮(PBT)可获得相反的结果。木聚糖酶的产生表现为比功率的函数(W / m(3)),在装有DT叶轮的20和100 L STR中发现了最佳值。另一方面,使用安装在轮毂上的桨叶式叶轮(PBT8)而不是安装在磁盘上的桨叶式叶轮(DT4),可减少半纤维素酶生产的滞后时间,并使木聚糖酶生产率提高1.3倍。 [参考:23]

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