首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fed-batch cultivation of Arthrospira (Spirulina) platensis: Potassium nitrate and ammonium chloride as simultaneous nitrogen sources
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Fed-batch cultivation of Arthrospira (Spirulina) platensis: Potassium nitrate and ammonium chloride as simultaneous nitrogen sources

机译:钝顶螺旋藻的分批补料栽培:硝酸钾和氯化铵作为同时的氮源

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摘要

Arthrospira platensis was cultivated in minitanks at 13 klux, using a mixture of KNO3 and NH4Cl as nitrogen source. Fed-batch daily supply of NH4Cl at exponentially-increasing feeding rate allowed preventing ammonia toxicity and nitrogen deficiency, providing high maximum cell concentration (X-m) and high-quality biomass (21.85 mg chlorophyll g cells(-1); 20.5% lipids; 49.8% proteins). A central composite design combined to response surface methodology was utilized to determine the relationships between responses (X-m, cell productivity and nitrogen-to-cell conversion factor) and independent variables (KNO3 and NH4Cl concentrations). Under optimum conditions (15.5 mM KNO3; 14.1 mM NH4Cl), X-m was 4327 mg L-1, a value almost coincident with that obtained with only 25.4 mM KNO3, but more than twice that obtained with 21.5 mM NH4Cl. A 30%-reduction of culture medium cost can be estimated when compared to KNO3-batch runs, thus behaving as a cheap alternative for the commercial production of this cyanobacterium.
机译:使用KNO3和NH4Cl的混合物作为氮源,在13 lux的小型水箱中种植Arthrospira platensis。 NH4Cl的分批补料日供给量呈指数增加,可以防止氨中毒和氮缺乏,提供高的最大细胞浓度(Xm)和高质量的生物质(21.85 mg叶绿素g细胞(-1); 20.5%脂质; 49.8) %蛋白质)。利用与响应面方法相结合的中央复合设计来确定响应(X-m,细胞生产力和氮-细胞转化因子)与自变量(KNO3和NH4Cl浓度)之间的关系。在最佳条件下(15.5 mM KNO3; 14.1 mM NH4Cl),X-m为4327 mg L-1,该值几乎与仅使用25.4 mM KNO3所获得的值相符,但是使用21.5 mM NH4Cl所获得的值的两倍以上。与KNO3分批运行相比,可以估计将培养基成本降低30%,因此可以作为这种蓝藻商业生产的廉价替代品。

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