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首页> 外文期刊>Advances in Bioscience and Biotechnology >Potential of &i&Dictyosphaerium&/i& sp. LC172264 Concomitant Remediation of Cassava Wastewater and Accumulation of Lipids for Biodiesel Production
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Potential of &i&Dictyosphaerium&/i& sp. LC172264 Concomitant Remediation of Cassava Wastewater and Accumulation of Lipids for Biodiesel Production

机译:& l; dictyosphaerium& / i& SP。 LC172264伴随着木薯废水的修复和生物柴油生产脂质的积累

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As a way of making algal feedstock feasible for biofuel production, simulta neous utilization of microalga Dictyosphaerium sp. LC172264 for cassava wastewater remediation and accumulation of lipids for biodiesel production was investigated. The algal biomass, lipid contents and composition were measured from the autotrophic, heterotrophic and mixotrophic cultured algal cells. Physicochemical parameters of the cassava wastewater and bioremediation potentials were measured. Biodiesel properties were deduced and compared with the standards. The results showed that mixotrophic culture was the best for both biomass accumulation (1.022 g/L) and lipid contents (24.53%). Irrespective of the culture condition, the predominant fatty acids were similar and included 11-Octadecenoic acid (vaccenic acid (C_(19)H_(36)O_(2)), oleic acid (C_(18)H_(34)O_(2)) and 14-methyl pentadecanoic acid (isopalmitic acid (C_(17)H_(34)O_(2)). The percentage reduction of total dissolved solids was 79.32% and 89.78% for heterotrophy and mixotrophy respectively. Biochemical oxygen demand was 72.95% and 89.35%, chemical oxygen demand was 72.19% and 84.03% whereas cyanide contents reduced from the initial value of 450 mg/L to 93.105 (79.31%) and 85.365 mg/L (81.03%) respectively. Dictyosphaerium sp. showed good growth and lipid production under mixotrophic condition and produced good quality biodiesel under the three cultivation modes. Even though both mixotrophic and heterotrophic conditions had good promise of cassava wastewater remediation by Dictyosphaerium sp., mixotrophy showed superiority.
机译:作为制备生物燃料生产可行的藻类原料的一种方式,同时尼古斯的微藻 Dictyosphaerium sp。研究了用于木薯废水的LC172264,研究了生物柴油生产的脂质的整治。藻类生物质,脂质含量和组合物由自养,异养,混合营养培养的藻类细胞测量。测量了木薯废水和生物修复潜力的物理化学参数。推导生物柴油属性并与标准进行比较。结果表明,混纺培养是生物质积累(1.022g / L)和脂质含量(24.53%)的最佳培养物。无论文化条件如何,主要脂肪酸都是相似的,包括11-十二烷烯酸(瓦米酸(C_(19)H_(36)O_(2)),油酸(C_(18)H_(34)O_(2 )))和14-甲基戊二烷酸(异戊酸(C_(17)H_(34)O_(2))。分别为过脱良和混纺药的总溶解固体的百分比为79.32%和89.78%。生物化学需氧量为72.95 %和89.35%,化学需氧量为72.19%和84.03%,而氰化物含量从初始值450mg / L至93.105(79.31%)和85.365mg / L(81.03%)的初始值。 Dictyyosphaerium sp。在混合营养条件下表现出良好的生长和脂质产量,并在三种栽培模式下产生良好的质量生物柴油。尽管混合营养和异养的条件都具有Cassava废水的良好承诺,但是通过 Dictyosphaerium sp。,混合养殖显示出优越性。

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