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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Sequential solid-state and submerged cultivation of Aspergillus niger on sugarcane bagasse for the production of cellulase
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Sequential solid-state and submerged cultivation of Aspergillus niger on sugarcane bagasse for the production of cellulase

机译:黑曲霉在甘蔗渣上的顺序固态和水下培养用于生产纤维素酶

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Sequential solid-state and submerged cultivation with sugarcane bagasse as substrate for cellulase production by. Aspergillus niger A12 was assessed by measuring endoglucanase activity. An unconventional pre-culture with an initial fungal growth phase under solid-state cultivation was followed by a transition to submerged fermentation by adding the liquid culture medium to the mycelium grown on solid substrate. For comparison, control experiments were conducted using conventional submerged cultivation. The cultures were carried out in shake flasks and in a 5-L bubble column bioreactor. An endoglucanase productivity of 57. ±. 13. IU/L/h was achieved in bubble column cultivations prepared using the new method, representing an approximately 3-fold improvement compared to conventional submerged fermentation. Therefore, the methodology proposed here of a sequential fermentation process offers a promising alternative for cellulase production.
机译:以甘蔗渣为基质的连续固态浸没式培养,用于生产纤维素酶。通过测量内切葡聚糖酶活性来评估黑曲霉A12。在固态培养下具有初始真菌生长阶段的非常规预培养之后,通过将液体培养基添加到在固体基质上生长的菌丝体,过渡到深层发酵。为了进行比较,使用常规的浸没栽培进行了对照实验。培养在摇瓶和5-L鼓泡柱生物反应器中进行。内切葡聚糖酶的生产率为57。±。 13.在使用新方法制备的鼓泡培养中,IU / L / h达到了IU / L / h,与传统的水下发酵相比,提高了约3倍。因此,这里提出的顺序发酵方法的方法为纤维素酶的生产提供了有希望的替代方法。

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