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Biosurfactant production and growth kinetics of bacteria in a designer marine medium: Improved physiochemical properties

机译:特定海洋介质中细菌的生物表面活性剂产生和生长动力学:改善的理化特性

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摘要

A combinatorial screening strategy was adopted for the development of a suitable medium for enhanced biosurfactant production by a marine strain. As a result, a modified marine medium (MMM) was developed, which contained urea and strontium chloride besides other salts important for the growth of marine bacteria. This medium supported growth, evident from a higher maximum growth rate of 0.42 h~(-1) and an enhanced biosurfactant production of 2.58 g/L. The critical micelle concentration (CMC) was determined for the biosurfactants obtained from all tested media combinations. The biosurfactant produced with this medium was stable at high temperature (100°C), a wide range of pH (5-11) and salt concentration of 5-35%. The emulsifying activity and stability of the biosurfactant obtained using MMM was better than the biosurfactant obtained using conventional media. This biosurfactant with improved physiochemical properties is suitable for a wide range of applications in industry and for marine environmental cleaning.
机译:采用了组合筛选策略来开发合适的培养基,以增强海洋菌株生产生物表面活性剂的能力。结果,开发了一种改良的海洋培养基(MMM),其中除了尿素和氯化锶外,还含有其他对海洋细菌生长重要的盐。这种培养基支持生长,这可以从较高的最大生长速率0.42 h〜(-1)和增强的生物表面活性剂产量2.58 g / L看出。确定了从所有测试培养基组合中获得的生物表面活性剂的临界胶束浓度(CMC)。用这种培养基生产的生物表面活性剂在高温(100°C),广泛的pH(5-11)和5%至35%的盐浓度下均稳定。使用MMM获得的生物表面活性剂的乳化活性和稳定性优于使用常规介质获得的生物表面活性剂。这种具有改善的理化性质的生物表面活性剂适用于工业和海洋环境清洁的广泛应用。

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