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节能型基质巴氏灭菌法用于香菇(Lentinula edodes)和生物乙醇的联产

Energy-efficient substrate pasteurisation for combined production of shiitake mushroom (Lentinula edodes) and bioethanol.

机构信息

Swedish University of Agricultural Sciences, Department of Forest Biomaterial and Technology, SE-901 83 Umeå, Sweden.

Umeå University, Department of Chemistry, SE-901 87 Umeå, Sweden.

出版信息

Bioresour Technol. 2019 Feb;274:65-72. doi: 10.1016/j.biortech.2018.11.071. Epub 2018 Nov 20.

Abstract

Hot-air (75-100 °C) pasteurisation (HAP) of birch-wood-based substrate was compared to conventional autoclaving (steam at 121 °C) with regard to shiitake growth and yield, chemical composition of heat-pretreated material and spent mushroom substrate (SMS), enzymatic digestibility of glucan in SMS, and theoretical bioethanol yield. Compared to autoclaving, HAP resulted in faster mycelial growth, earlier fructification, and higher or comparable fruit-body yield. The heat pretreatment methods did not differ regarding the fractions of carbohydrate and lignin in pretreated material and SMS, but HAP typically resulted in lower fractions of extractives. Shiitake cultivation, which reduced the mass fraction of lignin to less than half of the initial without having any major impact on the mass fraction of glucan, enhanced enzymatic hydrolysis of glucan about four-fold. The choice of heating method did not affect enzymatic digestibility. Thus, HAP could substitute autoclaving and facilitate combined shiitake mushroom and bioethanol production.

摘要

热空气(75-100°C)巴氏灭菌(HAP)与传统的高压灭菌(蒸汽 121°C)相比,在香菇生长和产量、热预处理材料和废弃蘑菇基质(SMS)的化学成分、SMS 中葡聚糖的酶可消化性以及理论生物乙醇产量方面存在差异。与高压灭菌相比,HAP 导致菌丝生长更快、更早结果实,并且果实产量更高或相当。热预处理方法在预处理材料和 SMS 中碳水化合物和木质素的分数方面没有差异,但 HAP 通常导致提取物分数较低。香菇栽培将木质素的质量分数降低到初始值的一半以下,而对葡聚糖的质量分数几乎没有影响,这增强了葡聚糖的酶水解约四倍。加热方法的选择不会影响酶的可消化性。因此,HAP 可以替代高压灭菌并促进香菇和生物乙醇的联合生产。

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