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首页> 外文期刊>MicrobiologyOpen >Biological wheat straw valorization: Multicriteria optimization of Polyporus brumalis pretreatment in packed bed bioreactor
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Biological wheat straw valorization: Multicriteria optimization of Polyporus brumalis pretreatment in packed bed bioreactor

机译:生物小麦秸秆的价值评估:填充床生物反应器中猪Poly预处理的多标准优化

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摘要

The purpose of this work was to optimize the pretreatment process of wheat straw by Polyporus brumalis _BRFM985 in order to improve carbohydrate accessibility for more efficient bioconversion. Indeed, there is growing demands to develop sustainable routes for lignocellulosic feedstocks valorization into value‐added products in energy, chemicals, materials, and animal feed fields. To be achieved, implementation of cheap and ecofriendly biomass pretreatment processes is necessary. In this frame, white rot basidiomycetes, well known for their ability to degrade lignin efficiently and selectively, are of great interest. The pretreatment of wheat straw by Polyporus brumalis _BRFM985 was performed in packed bed bioreactor and optimized using response surface methodology. The four pretreatment parameters optimized were metals addition (Cu, Mn, and Fe), time of culture, initial water content, and temperature. Multicriteria optimization highlighted that wheat straw pretreatment by Polyporus brumalis_ BRFM985 in the presence of metals with high initial water content of 3.6?g H 2 O/g at 27°C for 15–16?days led to an improvement of carbohydrate accessibility with minimal matter loss.
机译:这项工作的目的是优化猪Poly(Polyporus brumalis _BRFM985)对小麦秸秆的预处理工艺,以改善碳水化合物的可及性,从而实现更有效的生物转化。确实,对于在能源,化工,材料和动物饲料领域将木质纤维素原料增值为增值产品的可持续路线的需求不断增长。为了实现这一点,有必要实施廉价且环保的生物质预处理工艺。在这种情况下,以其能有效和选择性地降解木质素的能力而闻名的白腐担子菌引起了极大的兴趣。在填充床生物反应器中进行了布鲁氏猪Poly_BRFM985对小麦秸秆的预处理,并使用响应面方法进行了优化。优化的四个预处理参数是金属添加量(铜,锰和铁),培养时间,初始含水量和温度。多标准优化表明,在27°C下初始水含量高至3.6?g H 2 O / g的金属中,通过多孔猪Poly BRFM985预处理麦草预处理15–16天,可以使碳水化合物的可及性提高至最低限度失利。

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