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首页> 外文期刊>Waste and biomass valorization >Evaluation of Sludge Palm Oil as Feedstock and Development of Efficient Method for its Utilization to Produce Polyhydroxyalkanoate
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Evaluation of Sludge Palm Oil as Feedstock and Development of Efficient Method for its Utilization to Produce Polyhydroxyalkanoate

机译:污泥棕榈油作为原料的评价及开发生产聚羟基链烷酸酯的有效方法

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PurposeSludge palm oil (SPO), a difficult-to-be-used solid byproduct of the palm oil milling industry, was evaluated as potential carbon source for poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) [P(3HB-co-3HHx)] production using recombinant Cupriavidus necator Re2058/pCB113.MethodsThe biosynthesis of polyhydroxyalkanoate (PHA) was conducted using single stage shake flask growth to study different parameters affecting the bacterial growth. Fed-batch fermentations were conducted using SPO to increase the PHA productivity and to reach high density culture which is deemed necessary for large scale production.ResultsInitial shake flask studies showed that SPO can be utilized by the bacteria for growth and PHA accumulation. However, the yield of SPO conversion into cell biomass and PHA was low due to the difficulty in using the solid oil in liquid medium. With the aid of surfactant and mixing strategy, SPO which consisted mainly of free fatty acids was successfully emulsified in the mineral medium and was used for cell growth and PHA accumulation whereby 10g/L of SPO supplied as emulsion solution produced 9.7g/L of CDW containing 74wt% P(3HB-co-22mol% 3HHx). The high yield of biomass obtained indicates that SPO is an excellent feedstock for this strain. Fed-batch fermentation was conducted to increase the yield and productivity whereby a biomass productivity of 1.9g/L/h and PHA productivity of 1.1g/L/h were achieved.ConclusionThese results suggest that SPO, an inexpensive waste material, can be used to produce PHA in large scale for commercialization purpose with reduced production cost.[GRAPHICS].
机译:目的污泥棕榈油(SPO)是棕榈油制粉工业难以使用的固体副产品,被评估为聚(3-羟基丁酸酯-co-3-羟基己酸酯)[P(3HB-co- 3HHx)]使用重组铜杯霉菌Re2058 / pCB113进行生产。方法使用单级摇瓶生长进行聚羟基链烷酸酯(PHA)的生物合成,研究影响细菌生长的不同参数。使用SPO进行分批补料发酵,以提高PHA的生产率并达到高密度培养,这被认为是大规模生产所必需的。结果最初的摇瓶研究表明细菌可以利用SPO来生长和积累PHA。然而,由于难以在液体培养基中使用固体油,所以SPO转化为细胞生物质和PHA的产率较低。借助表面活性剂和混合策略,主要由游离脂肪酸组成的SPO在矿物培养基中成功乳化,并用于细胞生长和PHA积累,从而以乳液溶液形式提供的10g / L SPO产生了9.7g / L CDW。含有74wt%的P(3HB-co-22mol%3HHx)。获得的高生物质产率表明,SPO是该菌株的极佳原料。进行分批补料发酵可以提高产量和生产率,从而实现1.9g / L / h的生物量生产率和1.1g / L / h的PHA生产率。结论这些结果表明可以使用廉价的废料SPO。以降低生产成本的方式大规模生产用于商业化用途的PHA。[GRAPHICS]。

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