Du Ran, Yan Jianbin, Feng Quanzhou, Li Peipei, Zhang Lei, Chang Sandra, Li Shizhong
Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing, China.
School of Life Sciences, Tsinghua University, Beijing, China.
PLoS One. 2014 Apr 15;9(4):e94480. doi: 10.1371/journal.pone.0094480. eCollection 2014.
The rising demand for bioethanol, the most common alternative to petroleum-derived fuel used worldwide, has encouraged a feedstock shift to non-food crops to reduce the competition for resources between food and energy production. Sweet sorghum has become one of the most promising non-food energy crops because of its high output and strong adaptive ability. However, the means by which sweet sorghum stalks can be cost-effectively utilized for ethanol fermentation in large-scale industrial production and commercialization remains unclear. In this study, we identified a novel Saccharomyces cerevisiae strain, TSH1, from the soil in which sweet sorghum stalks were stored. This strain exhibited excellent ethanol fermentative capacity and ability to withstand stressful solid-state fermentation conditions. Furthermore, we gradually scaled up from a 500-mL flask to a 127-m3 rotary-drum fermenter and eventually constructed a 550-m3 rotary-drum fermentation system to establish an efficient industrial fermentation platform based on TSH1. The batch fermentations were completed in less than 20 hours, with up to 96 tons of crushed sweet sorghum stalks in the 550-m3 fermenter reaching 88% of relative theoretical ethanol yield (RTEY). These results collectively demonstrate that ethanol solid-state fermentation technology can be a highly efficient and low-cost solution for utilizing sweet sorghum, providing a feasible and economical means of developing non-food bioethanol.
全球范围内,生物乙醇作为石油衍生燃料最常见的替代品,其需求不断增长,这促使原料转向非粮食作物,以减少粮食和能源生产之间对资源的竞争。甜高粱因其高产和强大的适应能力,已成为最具潜力的非粮食能源作物之一。然而,在大规模工业生产和商业化中,甜高粱秸秆如何能经济高效地用于乙醇发酵仍不清楚。在本研究中,我们从储存甜高粱秸秆的土壤中鉴定出一种新型酿酒酵母菌株TSH1。该菌株表现出优异的乙醇发酵能力和耐受压力固态发酵条件的能力。此外,我们从500毫升烧瓶逐步扩大到127立方米转鼓发酵罐,最终构建了一个550立方米的转鼓发酵系统,以建立基于TSH1的高效工业发酵平台。分批发酵在不到20小时内完成,550立方米发酵罐中多达96吨粉碎的甜高粱秸秆达到相对理论乙醇产率(RTEY)的88%。这些结果共同表明,乙醇固态发酵技术可以成为利用甜高粱的高效低成本解决方案,为开发非粮食生物乙醇提供了一种可行且经济的手段。