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利用分离出的真菌菌株W-4对木质纤维素废弃物进行高效短时间预处理以提高沼气产量。

Efficient short time pretreatment on lignocellulosic waste using an isolated fungus sp. W-4 for the enhancement of biogas production.

作者信息

Jin Xiaoli, Wei Suzhen

机构信息

Resources & Environment College, Tibet Agriculture & Animal Husbandry University, Tibet Linzhi 860000, China.

出版信息

Heliyon. 2023 Mar 13;9(3):e14573. doi: 10.1016/j.heliyon.2023.e14573. eCollection 2023 Mar.

Abstract

Biological pretreatment to the lignocellulosic waste prior to anaerobic digestion is a popular method to increase biogas production. However, the long time needed for the pretreatment is not suitable to the practical application. A fungus strain, which could produce many kinds of lignocellulosic enzymes including CMCase, FPase, xylanase and laccase, was isolated from the soil of Tibet in this study. The fungus was identified as sp. W-4 by morphological and molecular characterization. The optimum culture temperature was 30 °C and the optimum nitrogen source was peptone. Under the optimum fermentation condition, the activity of CMCase, FPase, xylanase and laccase could reach 2.73 U/mL, 0.41 U/mL, 0.29 U/mL, and 1.11 U/mL, respectively. The results of pretreatment of sp. W-4 on the mixtures of high land barley straw, cow manure and pig manure for enhancement of biogas production showed that a very short time pretreatment of 3 days could obtain the highest cumulative methane production of 111.51 mL/g-VS, which was 63.81% higher than that of the control group of 68.07 mL/g-VS. The finding indicated that sp. W-4 pretreatment could be a candidate for the improving of biogas production from lignocellulosic waste.

摘要

在厌氧消化之前对木质纤维素废物进行生物预处理是一种提高沼气产量的常用方法。然而,预处理所需的时间较长,不适合实际应用。本研究从西藏土壤中分离出一株能产生多种木质纤维素酶(包括羧甲基纤维素酶、滤纸酶、木聚糖酶和漆酶)的真菌菌株。通过形态学和分子特征鉴定,该真菌被鉴定为 sp. W-4。最适培养温度为30℃,最适氮源为蛋白胨。在最佳发酵条件下,羧甲基纤维素酶、滤纸酶、木聚糖酶和漆酶的活性分别可达2.73 U/mL、0.41 U/mL、0.29 U/mL和1.11 U/mL。sp. W-4对青稞秸秆、牛粪和猪粪混合物进行预处理以提高沼气产量的结果表明,3天的极短时间预处理可获得最高累积甲烷产量111.51 mL/g-VS,比对照组的68.07 mL/g-VS高出63.81%。该发现表明,sp. W-预处理可能是提高木质纤维素废物沼气产量的一个候选方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6ae/10025918/0eda04051a58/gr1.jpg

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