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利用低碳足迹的高压二氧化碳进行杨树枝废物的生物转化,以生产可持续的生物乙醇。

Using low carbon footprint high-pressure carbon dioxide in bioconversion of aspen branch waste for sustainable bioethanol production.

机构信息

Co-Innovation Center of Efficient Processing and Utilization of Forestry Resources, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.

Co-Innovation Center of Efficient Processing and Utilization of Forestry Resources, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China; Anhui Juke Graphene Technology Co., Ltd., Bozhou, Anhui 233600, China.

出版信息

Bioresour Technol. 2020 Oct;313:123675. doi: 10.1016/j.biortech.2020.123675. Epub 2020 Jun 13.

Abstract

An innovative approach was developed by incorporating high-pressure CO into the separate hydrolysis-fermentation of aspen leftover branches, aiming to enhance the bioethanol production efficiency. The high-pressure CO significantly increased the 72-h enzymatic hydrolysis yield of converting aspen into glucose from 53.8% to 82.9%. The hydrolysis process was performed with low enzyme loading (10 FPU g glucan) with the aim of reducing the cost of fuel bioethanol production. The ethanol yield from fermentation of the hydrolyzed glucose using yeast (Saccharomyces cerevisiae) was 8.7 g L, showing increment of 10% compared with the glucose control. Techno-economic analysis indicated that the energy consumption of fuel bioethanol production from aspen branch chips was reduced by 35% and the production cost was cut 44% to 0.615 USD L, when 68 atm CO was introduced into the process. These results furtherly emphasized the low carbon footprint of this sustainable energy production approach.

摘要

采用高压 CO2 对杨木剩余物进行单独的水解-发酵,开发了一种创新方法,旨在提高生物乙醇的生产效率。高压 CO2 使杨木转化为葡萄糖的 72 小时酶水解产率从 53.8%显著提高到 82.9%。水解过程采用低酶负荷(10 FPU g 葡聚糖),以降低燃料生物乙醇生产的成本。用酵母(酿酒酵母)发酵水解葡萄糖的乙醇得率为 8.7 g L,与葡萄糖对照相比提高了 10%。技术经济分析表明,当向该工艺中引入 68 atm CO2 时,杨木枝片生产燃料生物乙醇的能耗降低了 35%,生产成本降低了 44%,至 0.615 美元/L。这些结果进一步强调了这种可持续能源生产方法的低碳足迹。

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