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Production of single-cell protein with two-step fermentation for treatment of potato starch processing waste

机译:两步发酵生产单细胞蛋白质,用于处理马铃薯淀粉加工废料

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摘要

Potato starch processing waste is causing serious environmental problems. This study aimed to convert potato starch processing waste into single-cell protein as high-quality feed using a two-step fermentation process. The mutant strain Aspergillus niger H3 was selected after UV irradiation and ethyl methyl sulfone mutagenesis for more cellulase production. The activities of sodium carboxymethyl cellulase and filter paperase of strain H3 were 8.86 and 4.79 U, respectively, which were much higher than the parent strain (1.18 and 0.62 U). After treatment with strain H3, the cellulose degradation rate of potato residue was 80.54 %. A liquid fermentation using Bacillus licheniformis was performed as the second step. The optimized fermentation conditions were temperature of 32.8 ℃, pH 6.67, and inoculum concentration of 1.78 % using the response surface method. Results of this study showed a potential application in large-scale industrial conversion.
机译:马铃薯淀粉加工废料引起严重的环境问题。这项研究旨在通过两步发酵工艺将马铃薯淀粉加工废料转化为单细胞蛋白质,作为优质饲料。在紫外线照射和乙基甲基砜诱变后,选择突变菌株黑曲霉H3,以产生更多的纤维素酶。 H3菌株的羧甲基纤维素钠和滤纸酶的活性分别为8.86和4.79 U,远高于亲本菌株(1.18和0.62 U)。用菌株H3处理后,马铃薯残留物的纤维素降解率为80.54%。作为第二步骤,使用地衣芽孢杆菌进行了液体发酵。采用响应面法优化了发酵温度,温度为32.8℃,pH为6.67,接种浓度为1.78%。这项研究的结果显示了在大规模工业转化中的潜在应用。

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