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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Specific effects of fiber size and fiber swelling on biomass substrate surface area and enzymatic digestibility
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Specific effects of fiber size and fiber swelling on biomass substrate surface area and enzymatic digestibility

机译:纤维尺寸和纤维溶胀对生物质基质表面积和酶消化率的特定影响

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摘要

To clarify the specific effect of biomass substrate surface area on its enzymatic digestibility, factors of fiber size reduction and swelling changes were investigated by using poplar substrates with controlled morphological and chemical properties after modified chemical pulping. Results showed that fiber size changes had insignificant influence on enzymatic hydrolysis, although the external surface area increased up to 41% with the reduction of fiber size. Swelling changes caused by increased biomass fiber porosities after PFI refining showed a significant influence on the efficiency of enzymatic hydrolysis. It is also found that chemical properties such as xylan and lignin content can influence the swelling effect. Xylan is confirmed to facilitate substrate hydrolysability by swelling, while lignin restricts swelling effect and thus minimizes the enzyme accessibility to substrates.
机译:为了阐明生物质基质表面积对其酶消化率的特定影响,在改性化学制浆后,使用具有受控形态和化学特性的杨树基质,研究了纤维尺寸减小和溶胀变化的因素。结果表明,纤维尺寸的变化对酶水解的影响不显着,尽管随着纤维尺寸的减小外表面积增加了41%。 PFI精制后,由增加的生物质纤维孔隙率引起的溶胀变化显示出对酶水解效率的显着影响。还发现诸如木聚糖和木质素含量的化学性质可影响溶胀效果。木聚糖被证实通过溶胀促进底物的水解性,而木质素限制了溶胀作用,因此使酶对底物的可及性最小化。

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