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Biodiesel production, through intensification and profitable distribution of fatty acid methyl esters by a microalgae-yeast co-culture, isolated from wastewater as a function of the nutrients' composition of the culture media

机译:生物柴油生产,通过微藻酵母共同培养,通过培养介质的营养成分的函数从废水中分离出来的脂肪酸甲酯的强化和盈利分布

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摘要

Due to expensive culture realizations and low lipid yields, microalgae-based biodiesel production still lacks economic viability at an industrial-scale. Optimization of lipids and fatty acid methyl esters (FAMEs) distribution is a necessary condition to get sustainable microalgae biodiesel production. Nutritional sources (nitrogen, phosphorous, carbon and iron) influence the lipid accumulation and biomass production yield. The aim of this study is to get high-quality biodiesel by a microalgae-yeast co-culture based on the selection of culture media micronutrients' distribution. A response surface-based combination of NaNO3, K2HPO4 and FeSO4*7H(2)O nutrients increases biomass and lipids accumulations. The obtained highest biomass and lipids contents are 1.68 gL(-1) and 27.77%, respectively. Under the selected optimized micronutrients' composition, high-saturated fatty acids are obtained if high ratio of N/P (6:1 and 11:1) and unsaturated fatty acid under N/P ratio of (9:1) are considered. These results suggest microalgae-yeast co-culturing under controlled N/P ratio in the culture medium produce desirable lipids distributions, yielding better biodiesel quality and equilibrium between biomass and lipids accumulation. The selected micronutrient combination (with the selected N/P ratio) leads to augment the lipids content which is transformed into biodiesel. Biodiesel quality (determined by cetane number, iodine value, cloud point, oxidation stability, viscosity), is evaluated considering microalgae lipids and FAMEs produced by transesterification process. Fourier transform infrared (FTIR) corroborates the lipids distribution, which can be used to produce high quality biodiesel. Gas chromatography (GC) verifies the production of desirable methyl esters (C16 and C18).
机译:由于昂贵的文化变现和低脂肪的产量,基于微藻生产生物柴油仍然缺乏在工业规模的经济可行性。脂质和脂肪酸甲基酯的优化(脂肪酸甲酯)的分布是必要条件得到可持续微藻生物柴油的生产。营养源(氮,磷,碳和铁)影响脂质积累和生物质产量。这项研究的目的是通过微藻 - 酵母共培养基础培养基微量营养素分布的选择,以获得高品质的生物柴油。的NaNO 3,K 2 HPO 4和硫酸亚铁* 7H(2)O营养素增加的生物量和脂质积累的A-基于表面反应的组合。将得到的最高生物量和脂质含量是1.68 GL(-1)和27.77%之间。 (1:1和11:1 6)不饱和脂肪酸的下(9:1)N / P比,被认为是在选定的优化微量营养素组合物中,如果N / P的高比例中获得的高的饱和脂肪酸。这些结果表明在受控的N / P比微藻酵母共培养在培养基中产生所需脂质分布,产生的生物量和脂质的积累之间的更好的生物柴油的质量和平衡。所选择的微量营养素组合(与所选择的N / P比)的引线,以增加其转化为生物柴油的脂质含量。生物柴油的质量(由十六烷值,碘值,浊点,氧化稳定性,粘度来确定),被评估考虑微藻脂质和脂肪酸甲酯通过酯基转移工艺生产的。傅立叶变换红外(FTIR)证实了脂质分布,这可用来生产高品质的生物柴油。气相色谱法(GC)验证生产期望甲酯(C16和C18)的。

著录项

  • 来源
    《Fuel》 |2020年第15期|118633.1-118633.10|共10页
  • 作者单位

    Inst Politecn Nacl Ctr Mexicano Prod Mas Limpia Av Acueducto S-N Ciudad De Mexico 07340 Mexico|Inst Politecn Nacl Lab Nacl Desarrollo & Aseguramiento Calidad Bioco Ciudad De Mexico 07340 Mexico;

    Inst Politecn Nacl Ctr Mexicano Prod Mas Limpia Av Acueducto S-N Ciudad De Mexico 07340 Mexico|Inst Politecn Nacl Lab Nacl Desarrollo & Aseguramiento Calidad Bioco Ciudad De Mexico 07340 Mexico;

    Inst Politecn Nacl Ctr Mexicano Prod Mas Limpia Av Acueducto S-N Ciudad De Mexico 07340 Mexico|Inst Politecn Nacl Lab Nacl Desarrollo & Aseguramiento Calidad Bioco Ciudad De Mexico 07340 Mexico;

    Campo Expt Zacatepec INIFAP Carretera Zacatepec Galeana S-N Km 0-5 Zacatepec 62780 Morelos Mexico;

    Inst Politecn Nacl Dept Bioproc Unidad Profes Interdisciplinaria Biotecnol Av Acueducto S-N Ciudad De Mexico 07340 Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodiesel; Microalgae-yeast co-culture; FAMEs; Fatty acids; Statistical optimization;

    机译:生物柴油;微藻 - 酵母共同培养;着名;脂肪酸;统计优化;
  • 入库时间 2022-08-19 00:56:18

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