Utah State University, Department of Biological Engineering, 4105 Old Main Hill, Logan, UT 84322-4105, USA.
Bioresour Technol. 2012 May;111:491-5. doi: 10.1016/j.biortech.2012.02.002. Epub 2012 Feb 8.
Acetone, butanol, and ethanol (ABE) fermentation by Clostridium saccharoperbutylacetonicum N1-4 using wastewater algae biomass as a carbon source was demonstrated. Algae from the Logan City Wastewater Lagoon system grow naturally at high rates providing an abundant source of renewable algal biomass. Batch fermentations were performed with 10% algae as feedstock. Fermentation of acid/base pretreated algae produced 2.74 g/L of total ABE, as compared with 7.27 g/L from pretreated algae supplemented with 1% glucose. Additionally, 9.74 g/L of total ABE was produced when xylanase and cellulase enzymes were supplemented to the pretreated algae media. The 1% glucose supplement increased total ABE production approximately 160%, while supplementing with enzymes resulted in a 250% increase in total ABE production when compared to production from pretreated algae with no supplementation of extraneous sugar and enzymes. Additionally, supplementation of enzymes produced the highest total ABE production yield of 0.311 g/g and volumetric productivity of 0.102 g/Lh. The use of non-pretreated algae produced 0.73 g/L of total ABE. The ability to engineer novel methods to produce these high value products from an abundant and renewable feedstock such as algae could have significant implications in stimulating domestic energy economies.
利用废水藻类生物质作为碳源,对产丁醇梭菌(Clostridium saccharoperbutylacetonicum N1-4)进行丙酮丁醇乙醇(ABE)发酵。洛根市废水泻湖系统中的藻类自然生长速度快,提供了丰富的可再生藻类生物质来源。采用 10%的藻类作为原料进行分批发酵。与预处理藻类添加 1%葡萄糖相比,酸/碱预处理藻类发酵生产的总 ABE 为 2.74g/L。此外,当向预处理藻类培养基中添加木聚糖酶和纤维素酶时,可生产出 9.74g/L 的总 ABE。1%葡萄糖的添加使总 ABE 的产量增加了约 160%,而与没有添加额外糖和酶的预处理藻类相比,添加酶可使总 ABE 的产量增加 250%。此外,添加酶可产生最高的总 ABE 生产得率 0.311g/g 和体积生产率 0.102g/Lh。未预处理藻类可生产 0.73g/L 的总 ABE。利用丰富且可再生的藻类等新型方法来生产这些高价值产品,对于刺激国内能源经济可能具有重要意义。