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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Potential of acid-tolerant microalgae, Desmodesmus sp. MAS1 and Heterochlorella sp. MAS3, in heavy metal removal and biodiesel production at acidic pH
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Potential of acid-tolerant microalgae, Desmodesmus sp. MAS1 and Heterochlorella sp. MAS3, in heavy metal removal and biodiesel production at acidic pH

机译:耐酸性微藻的潜力,desmodesmus sp。 Mas1和Heterochlelella sp。 MAS3,在酸性pH下的重金属去除和生物柴油生产中

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摘要

Metals in traces are vital for microalgae but their occurrence at high concentrations in habitats is a serious ecological concern. We investigated the potential of two acid-tolerant microalgae, Desmodesmus sp. MAS1 and Heterochlorella sp. MAS3, isolated from neutral environments, for simultaneous removal of heavy metals such as copper (Cu), iron (Fe), manganese (Mn) and zinc (Zn), and production of biodiesel when grown at pH 3.5. Excepting Cu, the selected metals at concentrations of 10-20 mg L-1 supported good growth of both the strains. Cellular analysis for metal removal revealed the predominance of intracellular mechanism in both the strains resulting in 40-80 and 40-60% removal of Fe and Mn, respectively. In-situ transesterification of biomass indicated enhanced biodiesel yield with increasing concentrations of metals suggesting that both these acid-tolerant microalgae may be the suitable candidates for simultaneous remediation, and sustainable biomass and biodiesel production in environments like metal-rich acid mine drainages.
机译:痕迹中的金属对微藻至关重要,但它们在栖息地的高浓度下发生是一种严重的生态关注。我们研究了两种耐酸性微藻的潜力,desmodesmus sp。 Mas1和Heterochlelella sp。 MAS3与中性环境中分离,同时除去铜(Cu),铁(Fe),锰(Mn)和锌(Zn)等重金属,以及在pH 3.5时生长的生物柴油的生产。除Cu之外,浓度为10-20mg L-1的选定金属支持菌株的良好生长。金属去除的细胞分析表明,在菌株中的细胞内机制分别显示出40-80和40-60%的菌株的偏移分别除去Fe和Mn。生物量的原位酯交换表明,增强的生物柴油产率随着较高的金属浓度,表明这些耐酸性微藻可以是用于同时修复的合适的候选者,以及金属富含酸性矿井排水等环境中的可持续生物量和生物柴油生产。

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