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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Application of cellulase and hemicellulase to pure xylan, pure cellulose, and switchgrass solids from leading pretreatments
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Application of cellulase and hemicellulase to pure xylan, pure cellulose, and switchgrass solids from leading pretreatments

机译:纤维素酶和半纤维素酶在领先的预处理中对纯木聚糖,纯纤维素和柳枝固体的应用

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摘要

Accellerase 1000 cellulase, Spezyme CP cellulase, β-glucosidase, Multifect xylanase, and beta-xylosidase were evaluated for hydrolysis of pure cellulose, pure xylan, and switchgrass solids from leading pretreatments of dilute sulfuric acid, sulfur dioxide, liquid hot water, lime, soaking in aqueous ammonia, and ammonia fiber expansion. Distinctive sugar release patterns were observed from Avicel, phosphoric acid swollen cellulose (PASC), xylan, and pretreated switchgrass solids, with accumulation of significant amounts of xylooligomers during xylan hydrolysis. The strong inhibition of cellulose hydrolysis by xylooligomers could be partially attributed to the negative impact of xylooligomers on cellulase adsorption. The digestibility of pretreated switchgrass varied with pretreatment but could not be consistently correlated to xylan, lignin, or acetyl removal. Initial hydrolysis rates did correlate well with cellulase adsorption capacities for all pretreatments except lime, but more investigation is needed to relate this behavior to physical and compositional properties of pretreated switchgrass.
机译:对Accellerase 1000纤维素酶,Spezyme CP纤维素酶,β-葡萄糖苷酶,Multifect木聚糖酶和β-木糖苷酶的水解进行了评估,以评估稀硫酸,二氧化硫,液态热水,石灰,浸泡在氨水中,氨纤维膨胀。从Avicel,磷酸溶胀的纤维素(PASC),木聚糖和预处理的柳枝solid固体中观察到了独特的糖释放模式,在木聚糖水解过程中大量木糖寡聚体积累。低聚木糖醇对纤维素水解的强烈抑制可以部分归因于低聚木糖醇对纤维素酶吸附的负面影响。预处理的柳枝的消化率随预处理而变化,但不能始终与木聚糖,木质素或乙酰基去除相关。最初的水解速率确实与除石灰外的所有预处理的纤维素酶吸附能力密切相关,但需要更多研究以将这种行为与预处理的柳枝physical的物理和组成特性相关联。

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