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Lipase Production in Solid-State FermentationMonitoring Biomass Growth of Aspergillus nigerUsing Digital Image Processing

机译:脂肪酶生产中的固态发酵语言论生物量生物量曲霉数码图像处理

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The aim of this study was to monitor the biomass growth of Aspergillus niger insolid-state fermentation (SSF) for lipase production using digital image processingtechnique. The strain A. niger 11T53A14 was cultivated in SSF using wheat bran assupport, which was enriched with 0.91% (m/v) of ammonium sulfate. The addition ofseveral vegetable oils (castor, soybean, olive, corn, and palm oils) was investigated toenhance lipase production. The maximum lipase activity was obtained using 2% (mlm)castor oil. In these conditions, the growth was evaluated each 24 h for 5 days by theglycosamine content analysis and digital image processing. Lipase activity was alsodetermined. The results indicated that the digital image process technique can be used tomonitor biomass growth in a SSF process and to correlate biomass growth and enzymeactivity. In addition, the immobilized esterification lipase activity was determined for thebutyl oleate synthesis, with and without 50% v/v hexane, resulting in 650 and 120 U/g,respectively. The enzyme was also used for transesterification of soybean oil and ethanolwith maximum yield of 2.4%, after 30 min of reaction.
机译:本研究的目的是监测使用数字图像处理技术的脂肪酶生产的曲霉尼格斯尼日尔尼格斯患者的生物量生长。使用小麦麸皮口在SSF中培养菌株A.尼日尔11T53A14,其富含0.91%(m / v)硫酸铵。植物油(蓖麻,大豆,橄榄,玉米和棕榈油)加入了植物油(Castor,大豆,橄榄,玉米)。使用2%(MLM)蓖麻油获得最大脂肪酶活性。在这些条件下,通过甘氨酸含量分析和数字图像处理每24小时评估每24小时的生长。脂肪酶活性是alsodetermining。结果表明,数字图像过程技术可以在SSF过程中使用可测量的生物质生长,并与生物量生长和酶活性相关。此外,确定固定化的酯化脂肪酶活性,用于丁二酰松酯合成,用50%V / V己烷,分别导致650和120u / g。在30分钟后,酶也用于叔豆油和乙醇的最大收益率为2.4%。

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