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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Scale-up of biopesticide production processes using wastewater sludge as a raw material.
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Scale-up of biopesticide production processes using wastewater sludge as a raw material.

机译:使用废水污泥作为原料扩大生物农药生产工艺的规模。

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摘要

Studies were conducted on the production of Bacillus thuringiensis (Bt)-based biopesticides to ascertain the performance of the process in shake flasks, and in two geometrically similar fermentors (15 and 150 l) utilizing wastewater sludge as a raw material. The results showed that it was possible to achieve better oxygen transfer in the larger capacity fermentor. Viable cell counts increased by 38-55% in the bioreactor compared to shake flasks. As for spore counts, an increase of 25% was observed when changing from shake flask to fermentor experiments. Spore counts were unchanged in bench (15 l) and pilot scale (5.3-5.5 e+08 cfu/ml; 150 l). An improvement of 30% in the entomotoxicity potential was obtained at pilot scale. Protease activity increased by two to four times at bench and pilot scale, respectively, compared to the maximum activity obtained in shake flasks. The maximum protease activity (4.1 IU/ml) was obtained in pilot scale due to better oxygen transfer. The Bt fermentation process using sludge as raw material was successfully scaled up and resulted in high productivity for toxin protein yield and a high protease activity.
机译:对苏云金芽孢杆菌(Bt)的生物农药的生产进行了研究,以确定该工艺在摇瓶中以及在两个以废水污泥为原料的几何相似的发酵罐(15和150 l)中的性能。结果表明,在大容量发酵罐中可以实现更好的氧转移。与摇瓶相比,生物反应器中的活细胞计数增加了38-55%。至于孢子数,从摇瓶改为发酵罐实验时观察到增加了25%。在试验台(15 l)和中试规模(5.3-5.5 e + 08 cfu / ml; 150 l)中,孢子数没有变化。在中试规模下,其潜在的毒性提高了30%。与摇瓶中获得的最大活性相比,蛋白酶活性在实验台和中试规模下分别增加了2至4倍。由于更好的氧气转移,在中试规模下获得了最大的蛋白酶活性(4.1 IU / ml)。以污泥为原料的Bt发酵工艺成功扩大规模,并提高了毒素蛋白产量和蛋白酶活性的生产率。

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