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Microbial oil production from acidified glycerol pretreated sugarcane bagasse by Mortierella isabellina

机译:伊莎贝拉菌(Mortierella isabellina)从酸化的甘油预处理的甘蔗渣中生产微生物油

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An integrated microbial oil production process consisting of acidified glycerol pretreatment of sugarcane bagasse, enzymatic hydrolysis, microbial oil production by Mortierella isabellina NRRL 1757 and oil recovery by hydrothermal liquefaction (HTL) of fungal biomass in fermentation broth was assessed in this study. Following pretreatment, the effect of residual pretreatment hydrolysate (containing glycerol) on enzymatic hydrolysis was firstly studied. The residual pretreatment hydrolysate (corresponding to 2.0–7.5% glycerol) improved glucan enzymatic digestibilities by 10–11% compared to the enzymatic hydrolysis in water (no buffer). Although residual pretreatment hydrolysate at 2.0–5.0% glycerol slightly inhibited the consumption of glucose in enzymatic hydrolysate by M. isabellina NRRL 1757, it did not affect microbial oil production due to the consumption of similar amounts of total carbon sources including glycerol. When the cultivation was scaled-up to a 1 L bioreactor, glucose was consumed more rapidly but glycerol assimilation was inhibited. Finally, HTL of fungal biomass in fermentation broth without any catalyst at 340 °C for 60 min efficiently recovered microbial oils from fungal biomass and achieved a bio-oil yield of 78.7% with fatty acids being the dominant oil components (~89%). HTL also led to the hydrogenation of less saturated fatty acids (C18:2 and C18:3) to more saturated forms (C18:0 and C18:1).
机译:在这项研究中,评估了一个综合的微生物油生产工艺,该工艺包括酸化甘油对甘蔗渣的预处理,酶促水解,伊莎贝拉莫尔氏菌NRRL 1757生产微生物油以及通过发酵液中真菌生物质的水热液化(HTL)进行采油。预处理后,首先研究残留的预处理水解产物(含甘油)对酶促水解的影响。与水中的酶促水解(无缓冲液)相比,残留的预处理水解产物(相当于2.0-7.5%的甘油)可将葡聚糖的酶解消化率提高10-11%。尽管残留的2.0-5.0%甘油预处理水解产物会稍微抑制伊萨贝拉菌NRRL 1757消耗的酶水解产物中的葡萄糖,但由于消耗了包括甘油在内的总碳源,因此它不会影响微生物的产油。当将培养规模扩大到1 L生物反应器时,葡萄糖消耗更快,但甘油同化被抑制。最后,在没有任何催化剂的情况下,发酵液中的真菌生物质在340°C下进行60分钟的HTL有效地从真菌生物质中回收了微生物油,并获得了78.7%的生物油产率,其中脂肪酸是主要的油成分(约89%)。 HTL还导致饱和度较低的脂肪酸(C18:2和C18:3)氢化为饱和度较高的形式(C18:0和C18:1)。

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