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首页> 外文期刊>Biochemical Engineering Journal >Recycling biodiesel-derived glycerol by the oleaginous yeast Rhodosporidium toruloides Y4 through the two-stage lipid production process
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Recycling biodiesel-derived glycerol by the oleaginous yeast Rhodosporidium toruloides Y4 through the two-stage lipid production process

机译:通过两级脂质生产方法将生物柴油罗二孢子酸rOUROIDERS的甘油酸铑衍生的甘油回收利用

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Direct utilization of crude glycerol, a major byproduct in biodiese! industry, becomes imperative, because its production has outpaced the demand recently. We demonstrated that the oleaginous yeast Rhodosporidium toruloides Y4 had a great capacity to convert glycerol into lipids with high yield using the two-stage production process. Significantly higher cell mass and lipid yield were observed when the media were made with synthetic crude glycerol than pure glycerol. The process achieved a lipid yield of 0.22 g g~(-1) glycerol, which was comparable with the lipid yield using glucose as the substrate. Lipid samples showed similar fatty acid compositional profiles to those of vegetable oils, suggesting that such microbial lipids were potential feedstock for biodiesel production. Our data provided an attractive route to integrate biodiesel production with microbial lipid technology for better resource efficiency and economical viability.
机译:直接利用粗甘油,生物纤烯的主要副产品! 行业,成为势在必行的,因为它的产量最近过时了。 我们证明,使用两阶段生产过程,烯胺酵母紫红色孢子率Y4具有高产率将甘油转化为脂质的脂质。 当用合成粗甘油制备比纯甘油制备培养基时,观察到显着更高的细胞质量和脂质产量。 该方法实现了0.22g g〜(-1)甘油的脂质产率,其与使用葡萄糖作为基材的脂质产率相当。 脂质样品向植物油的那些表达了类似的脂肪酸组成谱,表明这种微生物脂质是生物柴油生产的潜在原料。 我们的数据提供了一种有吸引力的途径,可与微生物脂质技术整合生物柴油生产,以更好地资源效率和经济的可行性。

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