Data for "Bio-jet fuels from photosynthetic microorganisms: a focus on the downstream processes."
收藏资源简介:
In this dataset the supplementary materials of a review article related to the critical analysis of currently available technologies to convert microalgal biomass into biofuels suitable for the aviation sector, i.e. bio-jet fuels, are reported. Specifically the information above is reported in the following different tables: Table S1. Main strain used to produce bio-jet fuels and related cultivation outputs. Table S2. Fatty acids of microalgal strains used to produce biofuels. Table S3. Pros and cons of cell disruption and extraction lipid methods. Table S4. Extraction rates of lipids from microalgae after cell disruption and lipids extraction. Table S5. Chemical and physical properties for bio-diesel (BD) and upgraded biodiesel (HBD). Table S6. Chemical and physical properties for bio-oil from pyrolysis (BP). Table S7: Chemical and physical properties for bio-oil from hydro thermal liquefaction (BHT). Table S8. Chemical and physical properties for up-graded bio-oil from hydro thermal liquefaction (HBHT).
本数据集收录了一篇综述文章的补充材料,该综述针对当前可将微藻生物质转化为适用于航空领域的生物燃料(即生物喷气燃料)的各类现有技术开展批判性分析。 具体而言,上述相关信息通过以下不同表格呈现: 表S1:用于生产生物喷气燃料的主要微藻藻株及其相关培养产出指标 表S2:用于生产生物燃料的微藻藻株的脂肪酸组成 表S3:细胞破碎与脂质提取方法的优缺点 表S4:经细胞破碎及脂质提取步骤后微藻的脂质提取率 表S5:生物柴油(bio-diesel, BD)与提质生物柴油(upgraded biodiesel, HBD)的理化性质 表S6:热解生物油(pyrolysis bio-oil, BP)的理化性质 表S7:水热液化生物油(hydrothermal liquefaction bio-oil, BHT)的理化性质 表S8:水热液化提质生物油(hydrothermal liquefaction upgraded bio-oil, HBHT)的理化性质



