首页> 外文期刊>Journal of Agricultural and Food Chemistry >Use of Biodiesel-Derived Crude Glycerol for Producing Eicosapentaenoic Acid(EPA)by the Fungus Pythium irregulare
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Use of Biodiesel-Derived Crude Glycerol for Producing Eicosapentaenoic Acid(EPA)by the Fungus Pythium irregulare

机译:利用生物柴油制得的粗甘油通过真菌不规则腐霉产生二十碳五烯酸(EPA)

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Crude glycerol is a major byproduct for the biodiesel industry.Producing value-added products through microbial fermentation on crude glycerol provides opportunities to utilize a large quantity of this byproduct.The objective of this study is to explore the potential of using crude glycerol for producing eicosapentaenoic acid(EPA,20:5 n-3)by the fungus Pythium irregulare.When P.irregulare was grown in medium containing 30 g/L crude glycerol and 10 g/L yeast extract,EPA yield and productivity reached 90 mg/L and 14.9 mg/L-day,respectively.Adding pure vegetable oils(flaxseed oil and soybean oil)to the culture greatly enhanced the biomass and the EPA production.This enhancement was due to the oil absorption by the fungal cells and elongation of shorter chain fatty acids(e.g.,linoleic acid and α-linolenic acid)into longer chain fatty acid(e.g.,EPA).The major impurities contained in crude glycerol,soap and methanol,were inhibitory to fungal growth.Soap can be precipitated from the liquid medium through pH adjustment,whereas methanol can be evaporated from the medium during autoclaving.The glycerol-derived fungal biomass contained about 15% lipid,36% protein,and 40% carbohydrate,with 9% ash.In addition to EPA,the fungal biomass was also rich in the essential amino acids lysine,arginine,and leucine,relative to many common feedstuffs.Elemental analysis by inductively coupled plasma showed that aluminum,calcium,copper,iron,magnesium,manganese,phosphorus,potassium,silicon,sodium,sulfur,and zinc were present in the biomass,whereas no heavy metals(such as mercury and lead)were detected.The results show that it is feasible to use crude glycerol for producing fungal biomass that can serve as EPA-fortified food or feed.
机译:粗甘油是生物柴油行业的主要副产品,通过在粗甘油上进行微生物发酵生产增值产品提供了利用大量这种副产物的机会。本研究的目的是探索使用粗甘油生产二十碳五烯酸的潜力真菌不规则腐霉菌产生的酸(EPA,20:5 n-3)。当在含有30 g / L粗甘油和10 g / L酵母提取物的培养基中生长不规则假单胞菌时,EPA产量和生产率达到90 mg / L和分别为14.9 mg / L天。向培养物中添加纯植物油(亚麻籽油和大豆油)大大提高了生物量和EPA的产量,这是由于真菌细胞吸收了油并缩短了短链脂肪的延伸酸(例如亚油酸和α-亚麻酸)转变成长链脂肪酸(例如EPA)。粗甘油,肥皂和甲醇中的主要杂质均抑制了真菌的生长。肥皂可以从液体中沉淀出来通过调节pH来调节钠含量,而高压灭菌过程中可以从培养基中蒸发出甲醇。甘油衍生的真菌生物质包含约15%的脂质,36%的蛋白质和40%的碳水化合物,9%的灰分。除EPA外,真菌生物质相对于许多常见的饲料,它还富含必需氨基酸赖氨酸,精氨酸和亮氨酸。电感耦合等离子体的元素分析表明,铝,钙,铜,铁,镁,锰,磷,钾,硅,钠,硫结果表明,使用粗甘油生产可作为EPA强化食品或饲料的真菌生物质是可行的。生物质中存在锌,而未检测到重金属(例如汞和铅)。

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