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首页> 外文期刊>Waste Management >Valorization of agro-industrial wastes by producing 2-phenylethanol via solid-state fermentation: Influence of substrate selection on the process
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Valorization of agro-industrial wastes by producing 2-phenylethanol via solid-state fermentation: Influence of substrate selection on the process

机译:通过固态发酵产生2-苯基乙醇的农业工业废物的估值:基材选择对工艺的影响

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摘要

2-phenylethanol (2-PE) is a value-added compound widely used in industry due to its rose-like odor and antibacterial properties that can be bioproduced using wastes as raw materials. This study presents the valorization of nine agro-industrial wastes as potential substrates for 2-PE production using an isolated 2-PE producer Pichia kudriavzevii, and the solid-state fermentation (SSF) technology as an alternative approach. The assessed substrates comprised wastes of varied traits such that each of them provided different characteristics to the fermentation. Thus, by using a principal component analysis (PCA), it was possible to identify the most significant characteristics associated with the substrates affecting the 2-PE production. Results show that L-phenylalanine biotransformation was more efficient than de novo synthesis for producing 2-PE. Besides, from the evaluated set, the maximum 2-PE production was achieved with red apple pomace, reaching 1.7 and 25.2 mg_(2PE) per gram of used waste through de novo and L-phenylalanine biotransformation, respectively. In that scenario, volumetric productivity and precursor yield were 39.6 mg_(2PE) L~(-1)h~(-1) and 0.69 g_(2PE) per gram of L-phenylalanine added, respectively. From the PCA, it was identified that the reducing sugars content of the substrate, the air-filled porosity of the bed and the L-phenylalanine availability were the most critical parameters (associated with the substrates) influencing the microbial activity and 2-PE production. These results suggest that the desirable traits a solid media needs for promoting 2-PE production via SSF could be reached by using a combination of wastes in a synergistic approach.
机译:2-苯基乙醇(2-PE)是由于其玫瑰状的气味和抗菌性能而广泛用于工业的增值化合物,其可以使用废物作为原料生成生物制作。本研究介绍了使用分离的2-PE生产商Pichia Kudriavzevii和固态发酵(SSF)技术作为替代方法的2-PE生产的潜在底物作为2-PE生产的潜在底物的算子。评估的基材包括变化性状的废物,使得它们中的每一个向发酵提供不同的特征。因此,通过使用主成分分析(PCA),可以识别与影响2-PE生产的基板相关的最重要的特征。结果表明,L-苯丙氨酸生物转化比为生产2-PE的新合成更有效。此外,从评估的套装中,通过De Novo和L-苯丙氨酸生物转化分别使用红苹果焊料,达到1.7和25.2mg_(2pe)的最大2-PE生产。在这种情况下,体积的生产率和前体产率分别为每克L-苯丙氨酸的39.6mg_(2pe)L〜(-1)H〜(-1)和0.69g(2pe)。从PCA鉴定出基质的还原糖含量,床的充气孔隙率和L-苯丙氨酸可用性是影响微生物活性和2-PE生产的最关键的参数(与基材相关) 。这些结果表明,可以通过使用SSF的组合以协同方法使用废物的组合来达到所需的特征来促进通过SSF的2-PE生产的需要。

著录项

  • 来源
    《Waste Management》 |2021年第2期|403-411|共9页
  • 作者单位

    Composting Research Croup Department of Chemical Biological and Environmental Engineering. Escola d'Enginyeria Universitat Autbnoma de Barcelona Cerdanyola del Vailes 08193 Barcelona Spain;

    Composting Research Croup Department of Chemical Biological and Environmental Engineering. Escola d'Enginyeria Universitat Autbnoma de Barcelona Cerdanyola del Vailes 08193 Barcelona Spain;

    Composting Research Croup Department of Chemical Biological and Environmental Engineering. Escola d'Enginyeria Universitat Autbnoma de Barcelona Cerdanyola del Vailes 08193 Barcelona Spain;

    Composting Research Croup Department of Chemical Biological and Environmental Engineering. Escola d'Enginyeria Universitat Autbnoma de Barcelona Cerdanyola del Vailes 08193 Barcelona Spain;

    Composting Research Croup Department of Chemical Biological and Environmental Engineering. Escola d'Enginyeria Universitat Autbnoma de Barcelona Cerdanyola del Vailes 08193 Barcelona Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solid-state fermentation; Substrate screening; Waste valorization; Aroma compounds; Rose-like compounds; Pichia kudriavzevii;

    机译:固态发酵;衬底筛选;浪费价;芳香化合物;玫瑰般的化合物;Pichia Kudriavzevii.;

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