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A novel approach using low-cost Citrus limetta waste for mixotrophic cultivation of oleaginous microalgae to augment automotive quality biodiesel production

机译:一种新的方法,使用低成本柑橘Limetta废物用于混纺营养栽培的植物微藻,以增加汽车优质生物柴油生产

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The present study reports the use of Citrus limetta (CL) residue for cultivating Chlorella sp. mixotrophically to augment production of biodiesel. The cultivation of Chlorella sp. using CL as media was carried out by employing a fed-batch technique in open tray (open tray+CL) and in software (BioXpert V2)-attached automated photobioreactor (PBR+CL) systems. Data showed the limit of nitrogen substituent and satisfactory organic source of carbon (OSC) in CL, causing >2-fold higher lipid content in cells, cultivated in both the systems than in control. For the cells grown in both the systems, 3-fold enhancement in lipid productivity was observed than in control. The total fatty acid methyl ester (FAME) concentrations from lipids extracted from cells grew in PBR+CL and in open tray+CL techniques were calculated as 50.59% and 38.31%, respectively. The PBR+CL system showed improved outcomes for lipid content, lipid and biomass productivity, FAME characteristics and physical property parameters of biodiesel than those obtained from the open tray+CL system. The physical property parameters of biodiesel produced from algal cells grown in PBR+CL were comparable to existing fuel standards. The results have shown lower cold filter plugging point (-6.57 degrees C), higher cetane number (58.04) and average oxidative stability (3.60 h). Collectively, this investigation unveils the novel deployment of CL as a cost-effective feedstock for commercialisation of biodiesel production.
机译:本研究报告使用柑橘Limetta(Cl)残留物用于培养小球藻SP。混合营养地增加生物柴油的生产。小球藻SP的培养。使用CL作为介质是通过在开放托盘(开放式托盘+ CL)和软件(Bioxpert V2)中的送入批次技术(Bioxpert V2) - Attached自动光生物反应器(PBR + CL)系统中进行。数据显示CL中氮取代基和令人满意的有机源(OSC)的极限,在细胞中引起> 2倍的脂质含量,在系统中培养而不是对照。对于在系统中生长的细胞,观察到脂质生产率的3倍增强比对照。总脂肪酸甲基酯(FAME)从细胞中提取的脂质的浓度增长在PBR + CL和在打开托盘+ CL技术被计算为分别50.59%和38.31%。 PBR + CL系统显示出用于脂质含量,脂质和生物质生产率的改善的结果,生物柴油的成名和生物质的物质参数比从开放纸盘+ CL系统获得的那些。从PBR + CL生长的藻类细胞产生的生物柴油的物理性能参数与现有的燃料标准相当。结果显示出较低的冷过滤器堵塞点(-6.57℃),较高的十六烷值(58.04)和平均氧化稳定性(3.60h)。统称,这项调查推出了CL的新型部署,作为生物柴油生产商业化的经济高效原料。

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