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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Production of wax esters via microbial oil synthesis from food industry waste and by-product streams
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Production of wax esters via microbial oil synthesis from food industry waste and by-product streams

机译:通过食品工业废物和副产物流的微生物油合成生产蜡酯

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The production of wax esters using microbial oils was demonstrated in this study. Microbial oils produced from food waste and by-product streams by three oleaginous yeasts were converted into wax esters via enzymatic catalysis. Palm oil was initially used to evaluate the influence of temperature and enzyme activity on wax ester synthesis catalysed by Novozyme 435 and Lipozyme lipases using cetyl, oleyl and behenyl alcohols. The highest conversion yields (up to 79.6%) were achieved using 4 U/g of Novozyme 435 at 70 degrees C. Transesterification of microbial oils to behenyl and cetyl esters was achieved at conversion yields up to 87.3% and 69.1%, respectively. Novozyme 435 was efficiently reused for six and three cycles during palm esters and microbial esters synthesis, respectively. The physicochemical properties of microbial oil derived behenyl esters were comparable to natural waxes. Wax esters from microbial oils have potential applications in cosmetics, chemical and food industries.
机译:本研究证明了使用微生物油的蜡酯的生产。通过酶促催化转化从食物废物和副产物流产生的微生物油,通过酶促催化转化为蜡酯。棕榈油最初用于评估使用甲丁基,油炸酚和山甘油醇的蜡酯合成对蜡酯合成的温度和酶活性的影响。在70℃下使用4 U / G的Novozyme 435实现最高的转化率(高达79.6%)。在转化率高至87.3%和69.1%的转化率下,实现了微生物油和十六烷基的酯交换。在棕榈酯和微生物酯合成中,诺酶435在棕榈酯和微生物酯合成中有效地重复使用六个和三个循环。微生物油衍生山烷基酯的物理化学性质与天然蜡相当。来自微生物油的蜡酯在化妆品,化学和食品工业中具有潜在的应用。

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