有效利用废弃的植物残留物作为具有成本效益的微生物油生产原料。

María Gallego-García, Antonio D Moreno, Alberto González, María José Negro
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引用次数: 3

摘要

背景:生产温室蔬菜的园艺集约型系统是产生有机废物的主要产业之一。为了实现零浪费战略,这项工作旨在利用废弃的蔬菜(番茄、辣椒和西瓜)作为原料,利用产油酵母弯曲隐球菌生产微生物油。结果:残基粉碎、离心后得到的可溶性组分C/N比约为15,总碳水化合物(主要是葡萄糖、果糖和蔗糖)含量在30 g/L ~ 65 g/L之间。使用这些液体馏分作为底物,用浓缩葡萄糖溶液脉冲进料,导致细胞内总脂质积累约占总干细胞重量(DCW)的30% (w/w)。为了增加细胞内脂质含量,将初始C/N含量从15提高到30和50。在此条件下,脉冲饲喂策略的工艺性能提高了20-36%,使细胞内总脂质浓度达到35-40% DCW (w/w)。结论:这些结果表明,如果有适当的培养策略,废弃蔬菜有可能成为生产微生物油等生物基产品的基质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Efficient use of discarded vegetal residues as cost-effective feedstocks for microbial oil production.

Efficient use of discarded vegetal residues as cost-effective feedstocks for microbial oil production.

Efficient use of discarded vegetal residues as cost-effective feedstocks for microbial oil production.

Efficient use of discarded vegetal residues as cost-effective feedstocks for microbial oil production.

Background: Horticultural intensive type systems dedicated in producing greenhouse vegetables are one of the primary industries generating organic waste. Towards the implementation of a zero-waste strategy, this work aims to use discarded vegetables (tomato, pepper and watermelon) as feedstock for producing microbial oil using the oleaginous yeast Cryptococcus curvatus.

Results: The soluble fraction, resulting after crushing and centrifuging these residues, showed C/N ratios of about 15, with a total carbohydrate content (mainly glucose, fructose and sucrose) ranging from 30 g/L to 65 g/L. Using these liquid fractions as substrate under a pulse-feeding strategy with a concentrated glucose solution resulted in an intracellular total lipid accumulation of about 30% (w/w) of the total dry cell weight (DCW). To increase this intracellular lipid content, the initial C/N content was increased from 15 to 30 and 50. Under these conditions, the process performance of the pulse-feeding strategy increased by 20-36%, resulting in a total intracellular lipid concentration of 35-40% DCW (w/w).

Conclusion: These results demonstrate the potential of discarded vegetables as a substrate for producing bio-based products such as microbial oil when proper cultivation strategies are available.

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