VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT Espoo, Finland.
Bioresour Technol. 2013 Dec;149:191-9. doi: 10.1016/j.biortech.2013.09.029. Epub 2013 Sep 20.
The aim of the work was to test the hypothesis that at low water content enzyme action on biomass is enhanced when the raw material is in the form of a continuous mass instead of powder/granular form. Effects of two pre-mixing methods, blade-mixing and extrusion, on xylanase action were studied during stationary incubation of wheat bran of different particle sizes, also in comparison with incubation at high water content with continuous stirring. The use of an extruder enhanced arabinoxylan (AX) solubilisation at low water content (<54%), as compared to blade-mixing. AX solubilisation was highest in the high-water stirring treatment, but based on molecular weight, xylanase action on solubilised AX was similar as in the extrusion-aided process. Pre-mixing by extrusion enabled efficient enzyme action at low water content without the requirement for continuous mixing, probably due to the enhanced diffusion by the formation of a continuous mass in the extruder.
这项工作的目的是验证这样一个假设,即在低含水量的情况下,当原料呈连续块状而不是粉末/颗粒状时,酶对生物质的作用会增强。研究了两种预混合方法——叶片混合和挤压——对不同粒径麦麸中木聚糖酶作用的影响,也与高含水量下连续搅拌的情况进行了比较。与叶片混合相比,使用挤出机能在低含水量(<54%)下增强阿拉伯木聚糖(AX)的溶解。在高水搅拌处理中,AX 的溶解率最高,但根据分子量,在挤出辅助过程中,木聚糖酶对溶解的 AX 的作用与在挤出辅助过程中相似。通过挤压进行预混合可以在低含水量下实现有效的酶作用,而无需连续混合,这可能是由于在挤出机中形成连续块状物而增强了扩散。