Faculty of Forest Sciences and Ecology, Agriculture Academy Vytautas Magnus University, Donelaicio Str. 58, LT-44248 Kaunas, Lithuania.
Cells. 2022 Apr 3;11(7):1206. doi: 10.3390/cells11071206.
Microalgae biomass is a viable feedstock for a wide range of industries. Recently, there has also been interest in the ability of microalgae biomass applications for biofuel production. In the meantime, the cultivation of microalgae biomass requires high energy costs, and the application of microalgae for technical purposes is still problematic. A significant part of the cost of biomass arises from the nutrients used for cultivation. Chemical compounds included in the microalgae cultivation media can be replaced by suitable wastes containing nitrogen, phosphorus, and other elements. This could reduce the microalgae biomass cultivation price and allow cheaper biomass to be used for biofuel production. The aim of this work was to comprehensively investigate and optimize the growth process of microalgae using liquid waste (liquid waste after biogas production from sewage sludge and distillers' grain) as a source of nitrogen and phosphorus, and technical glycerol as a carbon source. It was found that higher levels of waste in the cultivation media were found to inhibit the accumulation of microalgal biomass, with the optimum level corresponding to a nitrogen concentration of 0.08 g/L. The influence of technical glycerol from biodiesel production on the yield of microalgal biomass was investigated, and it was found that the addition of 6% glycerol allows an increase in the concentration of microalgal biomass in the cultivation media, from 18.1 to 20.6%.
微藻生物质是许多行业的一种可行的原料。最近,人们也对微藻生物质应用于生物燃料生产的能力产生了兴趣。与此同时,微藻生物质的培养需要高能源成本,并且微藻在技术上的应用仍然存在问题。生物质成本的很大一部分来自于用于培养的营养物质。可以用含有氮、磷和其他元素的合适废物替代微藻培养介质中的化合物。这可以降低微藻生物质的培养价格,并允许使用更便宜的生物质来生产生物燃料。本工作的目的是全面研究和优化微藻的生长过程,使用液体废物(来自污水污泥和酒糟的沼气生产后的液体废物)作为氮和磷的来源,以及技术甘油作为碳源。结果发现,培养介质中较高水平的废物被发现会抑制微藻生物质的积累,最佳水平对应于 0.08 g/L 的氮浓度。还研究了来自生物柴油生产的技术甘油对微藻生物质产量的影响,发现添加 6%的甘油可以使培养介质中微藻生物质的浓度从 18.1 增加到 20.6%。