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Saccharification of paper products by celluase from Penicillium funiculosum and Trichoderma reesei

机译:青霉和里氏木霉的纤维素酶将纸制品糖化

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Used paper products contribute largely towards organic-based waste produced and dumped by the world population. Cellulose, a structural component of paper materials, can be hydrolysed into glucose by a multicomponent enzyme system called cellulase. Cellulase from Penicillium funiculosum and Trichoderma reesei were applied in the saccharification of paper products such as foolscap paper, filter paper, newspaper and office paper as well as microcrystalline of paper products such as foolscap paper, filter paper, newspaper and office paper as well as microcrystalline cellulose. Foolscap paper showed the strongest susceptibility towards enzymatic hydrolysis with both enzymes. With an enzyme concentration of 10.0 mg/mL for each cellulase system the strongest synergistic action was observed at a combination of 1:1 (m/m) during saccharification of all cellulose materials. The individual enzyme performance as well as their synergistic actions showed different rates of hydrolysis during degradation of the investigated cellulose substrates.
机译:废纸产品对世界人口生产和倾倒的有机废料有很大贡献。纤维素是纸材料的一种结构成分,可以通过称为纤维素酶的多组分酶系统水解为葡萄糖。霉菌青霉和里氏木霉的纤维素酶被用于糖化纸产品,如傻瓜纸,滤纸,报纸和办公用纸以及微晶纸产品如傻瓜纸,滤纸,报纸和办公纸以及微晶的糖化。纤维素。 Foolscap纸对两种酶都表现出最强的酶水解敏感性。对于每个纤维素酶系统,当酶浓度为10.0 mg / mL时,在所有纤维素材料的糖化过程中,以1:1(m / m)的组合观察到最强的协同作用。在研究的纤维素底物降解过程中,单个酶的性能及其协同作用显示出不同的水解速率。

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