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白腐真菌对橡胶木进行生物预处理用于酶解的评估

Evaluation of Biological Pretreatment of Rubberwood with White Rot Fungi for Enzymatic Hydrolysis.

作者信息

Nazarpour Forough, Abdullah Dzulkefly Kuang, Abdullah Norhafizah, Zamiri Reza

机构信息

Institute of Bioscience; University Putra Malaysia (UPM), 43400 Serdang Selangor, Malaysia.

Department of Chemistry, Faculty of Science, University Putra Malaysia (UPM), 43400 Serdang Selangor, Malaysia.

出版信息

Materials (Basel). 2013 May 15;6(5):2059-2073. doi: 10.3390/ma6052059.

Abstract

e effects of biological pretreatment on the rubberwood (), was evaluated after cultivation of white rot fungi , , and a mixed culture of and . The analysis of chemical compositions indicated that had greater selectivity for lignin degradation with the highest lignin and hemicellulose loss at 45.06% and 42.08%, respectively, and lowest cellulose loss (9.50%) after 90 days among the tested samples. X-ray analysis showed that pretreated samples had a higher crystallinity than untreated samples. The sample pretreated by presented the highest crystallinity of all the samples which might be caused by the selective degradation of amorphous components. Fourier transform infrared (FT-IR) spectroscopy demonstrated that the content of lignin and hemicellulose decreased during the biological pretreatment process. A study on hydrolysis of rubberwood treated with , , and mixed culture for 90 days resulted in an increased sugar yield of about 27.67%, 16.23%, and 14.20%, respectively, as compared with untreated rubberwood (2.88%). The results obtained demonstrate that rubberwood is a potential raw material for industrial applications and white rot fungus provides an effective method for improving the enzymatic hydrolysis of rubberwood.

摘要

在培养白腐真菌、以及和的混合培养物之后,评估了生物预处理对橡胶木()的影响。化学成分分析表明,在所测试的样品中,在90天后对木质素降解具有更大的选择性,木质素和半纤维素损失最高,分别为45.06%和42.08%,纤维素损失最低(9.50%)。X射线分析表明,预处理样品的结晶度高于未处理样品。经处理的样品在所有样品中呈现出最高的结晶度,这可能是由无定形成分的选择性降解引起的。傅里叶变换红外(FT-IR)光谱表明,在生物预处理过程中木质素和半纤维素的含量降低。对用、和混合培养物处理90天的橡胶木进行水解研究,结果表明,与未处理的橡胶木(2.88%)相比,糖产量分别提高了约27.67%、16.23%和14.20%。所得结果表明,橡胶木是工业应用的潜在原材料,白腐真菌为改善橡胶木的酶水解提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e7a/5452515/2ab7de7e85b5/materials-06-02059-g001.jpg

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