Kam Yeji, Sung Mina, Cho Hoon, Kang Chang-Min, Kim Jungmin, Han Jong-In
Department of Civil and Environmental Engineering, KAIST, 291 Daehakno, Yuseong-gu, Daejeon, 34141, Republic of Korea.
Gyeongnam Department of Environmental Toxicology & Chemistry, Korea Institute of Toxicology, Jinju, 52834, Republic of Korea.
Appl Biochem Biotechnol. 2017 Dec;183(4):1478-1487. doi: 10.1007/s12010-017-2515-3. Epub 2017 May 27.
Starch-enriched brewery waste (SBW), an unexplored feedstock, was investigated as a nutritious low-cost source for the mixotrophic cultivation of Ettlia sp. YC001 for biodiesel production. Stirring, autoclaving, and sonication were assessed for the SBW, in conjunction with pH. Stirring at 55 °C was found to be the best, in terms of the effectiveness of starch hydrolysis and yeast disintegration as well as cost. The treated solutions were found to support the mixotrophic growth of microalgae: 20 g/L of glucose medium resulted in the highest biomass production of 9.26 g/L and one with 10 g/L of glucose showed the best lipid productivity of 244.2 mg/L/day. The unsaturated fatty acids increased in the resulting lipid and thus quality well suited for the transportation fuel. All these suggested that SBW, when treated properly, could indeed serve as a cheap feedstock for microalgae-based biodiesel production.
富含淀粉的啤酒厂废料(SBW)是一种未被探索的原料,被作为一种营养丰富的低成本来源,用于埃氏藻属YC001的混合营养培养以生产生物柴油。对SBW进行了搅拌、高压灭菌和超声处理,并结合pH值进行评估。就淀粉水解和酵母分解的效果以及成本而言,发现在55℃搅拌是最佳的。经处理的溶液被发现能够支持微藻的混合营养生长:20g/L的葡萄糖培养基产生了最高的生物量产量,为9.26g/L,而含10g/L葡萄糖的培养基显示出最佳的脂质生产率,为244.2mg/L/天。所得脂质中的不饱和脂肪酸增加,因此质量非常适合作为运输燃料。所有这些表明,SBW经过适当处理后,确实可以作为基于微藻的生物柴油生产的廉价原料。