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首页> 外文期刊>Biotechnology Progress >Chlorella vulgaris as a lipid source: Cultivation on air and seawater-simulating medium in a helicoidal photobioreactor
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Chlorella vulgaris as a lipid source: Cultivation on air and seawater-simulating medium in a helicoidal photobioreactor

机译:小球藻作为脂质来源:在螺旋光生物反应器中的空气和海水模拟培养基上培养

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The freshwater microalga Chlorella vulgaris was cultured batchwise on the seawater-simulating Schlosser medium either in a 1.1-L-working volume helicoidal photobioreactor (HeP) or Erlenmeyer flask (EF) as control and continuously supplying air as CO2 source. In these systems, maximum biomass concentration reached 1.65 +/- 0.17 gL(-1) and 1.25 +/- 0.06 gL(-1), and maximum cell productivity 197.6 +/- 20.4 mgL(-1)day(-1) and 160.8 +/- 12.2 mgL(-1)day(-1), respectively. Compared to the Bold's Basal medium, commonly employed to cultivate this microorganism on a bench-scale, the Schlosser medium ensured significant increases in all the growth parameters, namely maximum cell concentration (268% in EF and 126% in HeP), maximum biomass productivity (554% in EF and 72% in HeP), average specific growth rate (67% in EF and 42% in HeP), and maximum specific growth rate (233% in EF and 22% in HeP). The lipid fraction of biomass collected at the end of runs was analyzed in terms of both lipid content and fatty acid profile. It was found that the seawater-simulating medium, despite of a 56-63% reduction of the overall biomass lipid content compared to the Bold's Basal one, led in HeP to significant increases in both the glycerides-to-total lipid ratio and polyunsaturated fatty acid content compared to the other conditions taken as an average. These results as a whole suggest that the HeP configuration could be a successful alternative to the present means to cultivate C. vulgaris as a lipid source. (c) 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:279-284, 2016
机译:将淡水微藻小球藻在模拟海水的Schlosser培养基上分批培养,该培养基在1.1升工作容积的螺旋光生物反应器(HeP)或锥形瓶(EF)中作为对照,并持续供应空气作为CO2源。在这些系统中,最大生物量浓度达到1.65 +/- 0.17 gL(-1)和1.25 +/- 0.06 gL(-1),最大细胞生产率为197.6 +/- 20.4 mgL(-1)day(-1)和分别为160.8 +/- 12.2 mgL(-1)day(-1)。与通常用于实验室规模培养的Bold's基础培养基相比,Schlosser培养基可确保所有生长参数的显着增加,即最大细胞浓度(EF中为268%,HeP中为126%),最大生物量生产率(EF为554%,HeP为72%),平均比增长率(EF为67%,HeP为42%)和最大比增长率(EF为233%,HeP为22%)。在运行结束时收集的生物质中的脂质部分根据脂质含量和脂肪酸谱进行了分析。已发现,尽管与Bold's Basal相比总的生物质脂质含量降低了56-63%,但模拟海水的介质导致HeP导致甘油酯/总脂质比率和多不饱和脂肪含量显着增加酸含量与其他条件相比取平均值。总体而言,这些结果表明,HeP构型可以替代目前培养寻常棒状梭菌作为脂质来源的方法。 (c)2016美国化学工程师学会生物技术学会。 Prog。,32:279-284,2016

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