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Optimization of cultural conditions for lipid accumulation by Aspergillus wentii Ras101 and its transesterification to biodiesel: application of response surface methodology

机译:发酵曲霉Ras101脂质积累的培养条件的优化及其对生物柴油的酯交换反应:响应面法的应用

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摘要

The present study is aimed to maximize biodiesel production by using the fungal strain Aspergillus wentii Ras101 as a feedstock. Response surface methodology was used to relate the interaction between some nutritional and environmental factors affecting the lipid productivity by A. wentii Ras101. By applying LINGO optimization program, the maximum lipid production of 40% dry biomass of this fungal isolate has been attained in a fermentation medium composed of 50 g/l glucose, 1 g/l nitrates, 1.5 g/l phosphorous, and 0.5 g/l NaCl. This medium was adjusted at pH of 6, and incubated at 28 °C for 7 days. The values of correlation errors between the experimental and estimated values are less than 1%; this proves that the proposed correlation could be used effectively for estimating the fungal lipid production. Consequently, the effects of time and temperature on the amount of biodiesel produced in the extraction and transesterification one-step process have been investigated. The maximum biodiesel production of 28% dry biomass (80% lipid) has been achieved in the transesterification process at 70 °C for 30 min. Additionally, it is found that the combination of glucose, nitrogen and phosphorous contents has a positive influence on lipid production in the fungal biomass. The density, kinematic viscosity, water content and calorific value of the produced biodiesel were 800 kg/m3, 2.8 mm2/s, 66 ppm and 10122 kcal/kg, respectively that matched well with biodiesel and fossil standard specifications.
机译:本研究旨在通过使用真菌菌株aspergillus wonii Ras101作为原料来最大化生物柴油的生产。响应面方法被用来关联一些营养和环境因素之间的相互作用,从而影响拟南芥Ras101的脂质生产率。通过使用LINGO优化程序,可以在由50 g / l葡萄糖,1 g / l硝酸盐,1.5 g / l磷和0.5 g / l组成的发酵培养基中获得这种真菌分离物40%干燥生物质的最大脂质产量。氯化钠将该培养基的pH调节为6,并在28°C孵育7天。实验值和估计值之间的相关误差值小于1%;这证明所提出的相关性可以有效地用于估计真菌脂质的产生。因此,已经研究了时间和温度对萃取和酯交换一步法生产的生物柴油量的影响。在70°C 30分钟的酯交换过程中,已达到28%干燥生物质(80%脂质)的最大生物柴油产量。另外,发现葡萄糖,氮和磷含量的组合对真菌生物质中的脂质产生具有积极影响。生产的生物柴油的密度,运动粘度,水含量和热值分别为800 kg / m 3 ,2.8 mm 2 / s,66 ppm和10122 kcal / kg,分别符合生物柴油和化石标准规格。

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