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首页> 外文期刊>Biotechnology and Bioengineering >Microalgae for Oil: Strain Selection, Induction of Lipid Synthesis and Outdoor Mass Cultivation in a Low-Cost Photobioreactor
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Microalgae for Oil: Strain Selection, Induction of Lipid Synthesis and Outdoor Mass Cultivation in a Low-Cost Photobioreactor

机译:石油微藻:低成本光生物反应器中的菌株选择,脂质合成诱导和室外大规模培养

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Thirty microalgal strains were screened in the laboratory for their biomass productivity and lipid content. Four strains (two marine and two freshwater), selected because robust, highly productive and with a relatively high lipid content, were Cultivated under nitrogen deprivation in 0.6-L bubbled tubes. Only the two marine microalgae accumulated lipid under such conditions. One of them, the eustigmatophyte Nannochloropsis sp. F&M-M24, which attained 60% lipid content after nitrogen starvation, was grown in a 20-L Flat Alveolar Panel photobioreactor to study the influence of irradiance and nutrient (nitrogen or phosphorus) deprivation on fatty acid accumulation. Fatty acid content increased with high irradiances (up to 32.5% of dry biomass) and following both nitrogen and phosphorus deprivation (up to about 50%). To evaluate its lipid production potential under natural sunlight, the strain was grown outdoors in 110-L Green Wall Panel photobioreactors under nutrient sufficient and deficient conditions. Lipid productivity increased from 117 mg/L/day in nutrient sufficient media (with an average biomass productivity of 0.36 g/L/day and 32% lipid content) to 204 mg/L/day (with an average biomass productivity of 0.30 g/L/day and more than 60% final lipid content) in nitrogen deprived media. In a two-phase cultivation process (a nutrient Sufficient phase to produce the inoculum followed by a nitrogen deprived phase to boost lipid synthesis) the oil production potential could be projected to be more than 90 kg per hectare per day. This is the first report of an increase of both lipid content and areal lipid productivity attained through nutrient deprivation in an outdoor algal Culture. The experiments showed that this marine eustigmatophyte has the potential for an annual production of 20 tons of lipid per hectare in the Mediterranean climate and of more than 30 tons of lipid per hectare in sunny tropical areas. Biotechnol. Bioeng. 2009;102: 100-112. (C) 2008 Wiley Periodicals, Inc.
机译:在实验室中筛选了三十种微藻菌株的生物量生产力和脂质含量。选择了四个菌株(两个海洋菌株和两个淡水菌株),因为它们健壮,高产且具有相对较高的脂质含量,并在氮缺乏的情况下在0.6 L鼓泡管中培养。在这样的条件下,只有两个海洋微藻积累了脂质。其中之一是洋桔梗Nannochloropsis sp。将F&M-M24在氮饥饿后达到60%的脂质含量,在20升平板肺泡平板光生物反应器中生长,以研究辐照度和营养物质(氮或磷)的缺乏对脂肪酸积累的影​​响。随着高辐照度(高达干生物质的32.5%)以及氮和磷的缺乏(高达约50%),脂肪酸含量增加。为了评估其在自然阳光下的脂质生产潜力,该菌株在营养充足且缺乏的条件下在110 L Green Wall Panel光生物反应器中户外生长。在足够营养的培养基中,脂质生产率从117 mg / L /天(平均生物量生产率为0.36 g / L /天,脂质含量为32%)增加到204 mg / L /天(平均生物量生产率为0.30 g / L) L /天和超过60%的最终脂质含量)在氮缺乏的培养基中。在两阶段的培养过程中(养分充足的阶段可以生产接种物,随后是氮缺乏的阶段可以促进脂质合成),预计每公顷每天的采油潜力将超过90千克。这是关于在室外藻类培养物中通过营养剥夺而获得的脂质含量和面脂质生产率增加的首次报道。实验表明,这种海洋类植物在地中海气候下具有每公顷20吨脂质的年产量,在阳光充足的热带地区每公顷30吨脂质的年产量的潜力。生物技术。生恩2009; 102:100-112。 (C)2008 Wiley期刊公司

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