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首页> 外文期刊>International journal of green energy >Probiotic lipase derived from Lactobacillus plantarum and Lactobacillus brevis for biodiesel production from waste cooking olive oil: an alternative feedstock
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Probiotic lipase derived from Lactobacillus plantarum and Lactobacillus brevis for biodiesel production from waste cooking olive oil: an alternative feedstock

机译:源自植物乳杆菌和短乳杆菌的益生菌脂肪酶,用于从烹饪废橄榄油中生产生物柴油:替代原料

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摘要

Lipases from various origins such as fungi and bacteria have been largely explored for various applications including biofuel production. Keeping the environmental and health concerns into consideration, we employed lipases derived from probiotic sources like L. plantarum and L. brevis for biodiesel production from the gold standard fresh and used olive oil. These lipases have been used to optimize various parameters such as molar ratio of methanol to oil, enzyme loading, reaction temperature, and stirring rate that determine the biodiesel yield. The lipases have been explored in their native and immobilized forms in order to obtain maximum biodiesel conversion. Among the two sources of enzymes, lipase derived from L. plantarum is found to be more efficient in biodiesel production. With the optimal reaction conditions, the maximum biodiesel production using immobilized lipase from L. plantarum with fresh and used olive oil is found to be 81% and 67%, respectively. The biodiesel thus obtained has also been studied for its suitability to be used as a fuel in diesel engine that could meet the viscosity and density limits set by ASTM D 6751.
机译:已经广泛探索了来自各种来源的脂肪酶,例如真菌和细菌,用于包括生物燃料生产在内的各种应用。考虑到环境和健康问题,我们采用了源自益生菌来源(如植物乳杆菌和短乳杆菌)的脂肪酶,以黄金为标准的新鲜和用过的橄榄油生产生物柴油。这些脂肪酶已被用于优化各种参数,例如决定生物柴油收率的甲醇与油的摩尔比,酶负载,反应温度和搅拌速率。为了获得最大的生物柴油转化率,已经对脂肪酶进行了天然和固定化形式的研究。在两种酶的来源中,发现源自植物乳杆菌的脂肪酶在生物柴油生产中更有效。在最佳反应条件下,使用植物乳杆菌固定化脂肪酶与新鲜和用过的橄榄油制成的最大生物柴油产量分别为81%和67%。还研究了由此获得的生物柴油是否适合用作柴油发动机的燃料,该柴油可以满足ASTM D 6751设定的粘度和密度极限。

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