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A cost efficient way to obtain lipid accumulation in the oleaginous yeast Rhodotorula glutinis using supplemental waste cooking oils (WCO)

机译:使用补充废物烹饪油(WCO)在含油酵母谷族谷谷谷氨酸中获得脂质积累的成本有效的方法

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摘要

The microbial oil from oleaginous Rhodotorula glutinis is considered to be a promising raw material for biodiesel production because it shares a fatty acid composition similar to that of vegetable oil. To enhance lipid accumulation and also reduce production costs, the use of supplemental waste cooking oils (WCO) in the medium as the carbon source was examined. The results indicated that supplemental WCO can enhance cell growth and increase the lipid content as compared to the control batch with crude glycerol only. The average lipid content in the batch with supplemental WCO was 46 +/- 5% as compared to 39 +/- 4% in the control batch with crude glycerol only. Due to a consideration of the immiscibility of WCO in the medium, the provision of higher mixing effects and greater shear force in the agitation tank can enhance the digestion of WCO. The estimated average cell growth rate were found to be 0156 and 0.125 g/L hr in the agitation tank and in the airlift bioreactor, respectively. The supplemental WCO in the agitation tank with crude glycerol was found conclusively to have the potential for being utilized as an efficient way to obtain lipid accumulation in oleaginous R. glutinis. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:来自Oleabilicous Rhodotorula Glutinis的微生物油被认为是生物柴油生产的有希望的原料,因为它分享了与植物油类似的脂肪酸组成。为了提高脂质积累并降低生产成本,检查了在培养基中使用补充废物烹饪油(WCO)作为碳源。结果表明,与具有粗甘油的对照批料相比,补充WCO可以增强细胞生长并增加脂质含量。批次的平均脂质含量为46 +/- 5%,而在对照批次中仅为39 +/- 4%,仅具有粗甘油的粗甘油。由于考虑了WCO在培养基中的不混溶性,在搅拌罐中提供更高的混合效果和更大的剪切力可以增强WCO的消化。在搅拌罐和空运生物反应器中,发现估计的平均细胞生长速率为0156和0.125g / L HR。最终发现具有粗甘油的搅拌罐中的补充WCO,以具有用于在烯脲R.Glutinis中获得脂质积累的有效方法的可能性。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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