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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Salinity stress induced lipid synthesis to harness biodiesel during dual mode cultivation of mixotrophic microalgae
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Salinity stress induced lipid synthesis to harness biodiesel during dual mode cultivation of mixotrophic microalgae

机译:盐分胁迫诱导混合营养微藻双模式培养过程中脂质合成利用生物柴油

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摘要

Influence of salinity as a stress factor to harness biodiesel was assessed during dual mode cultivation of microalgae by integrating biomass growth phase (BGP) and salinity induced lipid induction phase (LIP). BGP was evaluated in mixotrophic mode employing nutrients (NPK) and carbon (glucose) source while LIP was operated under stress environment with varying salt concentrations (0, 0.5, 1 and 2 g NaCl/l). Salinity stress triggered both biomass growth and lipid synthesis in microalgae significantly. BGP showed higher increments in biomass growth (2.55 g/l) while LIP showed higher lipid productivity (1 g NaCl/l; totaleutral lipid, 23.4/9.2%) than BGP (totaleutral lipid, 15.2/6%). Lower concentrations of salinity showed positive influence on the process while higher concentrations showed marked inhibition. Salinity stress also facilitated in maintaining saturated fatty acid methyl esters in higher amounts which associates with the improved fuel properties. Efficient wastewater treatment was observed during BGP operation indicating the assimilation of carbonutrients by microalgae.
机译:通过整合生物量生长阶段(BGP)和盐度诱导的脂质诱导阶段(LIP),在微藻类的双模式培养过程中评估了盐度作为利用生物柴油的压力因子的影响。使用营养素(NPK)和碳(葡萄糖)源以混合营养模式评估BGP,而LIP在盐浓度(0、0.5、1和2 g NaCl / l)变化的压力环境下运行。盐胁迫显着触发了微藻中的生物量增长和脂质合成。 BGP显示出更高的生物量增长增量(2.55 g / l),而LIP显示出更高的脂质生产率(1 g NaCl / l;总/中性脂质,23.4 / 9.2%)比BGP(总/中性脂质,15.2 / 6%)。较低的盐度显示出对过程的积极影响,而较高的盐分显示出明显的抑制作用。盐度应力还有助于维持较高含量的饱和脂肪酸甲酯,这与改善的燃料性能有关。在BGP操作过程中观察到有效的废水处理,表明微藻类吸收了碳/养分。

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