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首页> 外文期刊>Catalysts >High Cell Density Conversion of Hydrolysed Waste Cooking Oil Fatty Acids Into Medium Chain Length Polyhydroxyalkanoate Using Pseudomonas putida KT2440
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High Cell Density Conversion of Hydrolysed Waste Cooking Oil Fatty Acids Into Medium Chain Length Polyhydroxyalkanoate Using Pseudomonas putida KT2440

机译:用Pseudomonaspsida Kt2440将水解废物烹饪油脂脂肪酸的高细胞密度转化为中链长度聚羟基烷酸酯

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摘要

Waste cooking oil (WCO) is a major pollutant, primarily managed through incineration. The high cell density bioprocess developed here allows for better use of this valuable resource since it allows the conversion of WCO into biodegradable polymer polyhydroxyalkanoate (PHA). WCO was chemically hydrolysed to give rise to a mixture of fatty acids identical to the fatty acid composition of waste cooking oil. A feed strategy was developed to delay the stationary phase, and therefore achieve higher final biomass and biopolymer (PHA) productivity. In fed batch (pulse feeding) experiments Pseudomonas putida KT2440 achieved a PHA titre of 58 g/l (36.4% of CDW as PHA), a PHA volumetric productivity of 1.93 g/l/h, a cell density of 159.4 g/l, and a biomass yield of 0.76 g/g with hydrolysed waste cooking oil fatty acids (HWCOFA) as the sole substrate. This is up to 33-fold higher PHA productivity compared to previous reports using saponified palm oil. The polymer (PHA) was sticky and amorphous, most likely due to the long chain monomers acting as internal plasticisers. High cell density cultivation is essential for the majority of industrial processes, and this bioprocess represents an excellent basis for the industrial conversion of WCO into PHA.
机译:垃圾烹饪油(WCO)是一种主要的污染物,主要通过焚烧管理。这里开发的高细胞密度生物过程允许更好地利用这种有价值的资源,因为它允许WCO转化为可生物降解的聚合物聚羟基烷烷(PHA)。 WCO化学水解溶解,产生与废物烹饪油的脂肪酸组成相同的脂肪酸的混合物。开发了一种饲料策略以延迟固定相,因此实现更高的最终生物量和生物聚合物(PHA)生产率。在FED批次(脉冲喂食)实验中,PSeudomonas普赖达KT2440达到了58克/升的PHA滴度(36.4%的CDW作为PHA),PHA容量生产率为1.93克/升/小时,电池密度为159.4克/升,和0.76g / g的生物质产率为0.76g / g,用水溶剂废料烹饪油脂脂肪酸(HWCOFA)作为唯一的基材。与使用皂化的棕榈油的先前报道相比,这比PHA生产力高达33倍。聚合物(PHA)是粘性和无定形的,很可能是由于长链单体作用作为内部增塑剂。高细胞密度栽培对于大多数工业过程至关重要,这种生物处理是WCO产业转化为PHA的优秀基础。

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