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Screening of different agroindustrial by-products for industrial enzymes production by fermentation processes

机译:筛选发酵过程生产工业酶的不同农副产品

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Agroindustrial by-products are an abundant source of biocompounds that contain valuable nutrients, which are not exploited. In this work, lignocellulosic wastes (LW) were used in submerged fermentation (SmF) and solid-state fermentation (SSF) by Aspergillus niger NRRL3 to obtain valuable enzymes required in industries. SmF using soya bean hulls (SH), wheat bran (WB) and a by-product of wheat flour (F) produced the highest activities of endo-1,4-beta-xylanase (Xyl) and endo-1,4-beta-D-glucanase (EG) being at least 3 times lower than those obtained by SSF. The highest ratio of Xyl to EG was obtained in SmF with F. Xyl obtained by SmF with WB was the most thermally resistant. The enzymatic extract obtained in SmF using SH presented a high power of saccharification. The production of enzymes for further application such as bioethanol generation process revalue these LW and can help offset growing environmental problems.
机译:农用工业副产品是生物化合物的丰富来源,其中含有未被利用的宝贵营养素。在这项工作中,木质纤维素废料(LW)被黑曲霉NRRL3用于深层发酵(SmF)和固态发酵(SSF),以获得工业所需的有价值的酶。使用大豆壳(SH),麦麸(WB)和小麦粉副产品(F)的SmF产生的内切1,4-β-木聚糖酶(Xyl)和内切1,4-β活性最高-D-葡聚糖酶(EG)至少比SSF获得的酶低3倍。 Xyl与EG的比例最高是在SmF和F中获得的。通过SmF和WB获得的Xyl具有最高的耐热性。使用SH在SmF中获得的酶提取物具有很高的糖化能力。用于进一步应用的酶的生产,例如生物乙醇的生产过程,对这些低分子量废物进行了重新估价,可以帮助抵消日益严重的环境问题。

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