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Prospective of biodiesel production utilizing microalgae as the cell factories: A comprehensive discussion

机译:利用微藻作为细胞工厂生产生物柴油的前景:全面讨论

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Microalgae are sunlight-driven miniature factories that convert atmospheric CO2?to polar and neutral lipids which after esterification can be utilized as an alternative source of petroleum. Further, other metabolic products such as bioethanol and biohydrogen produced by algal cells are also being considered for the same purpose. Microaglae are more efficient than the conventional oleaginous plants in capturing solar energy as they have simpler cellular organization and high capacity to produce lipids even under nutritionally challenged and high salt concentrations. Commercially, microalgae are cultivated either in open pond systems or in closed photobioreactors. The photobioreactor systems including tubular bioreactors, plate reactors and bubble column reactors have their own advantages as they provide sterile conditions for growing algal biomass. Besides, other culture conditions such as light intensity, CO2?concentration, nutritional balance, etc, in closed reactors remain controlled. On the other hand, though the open ponds provide a cost-effective option to utilize natural light facility for algal cells, the tough maintenance of optimal and stable growth conditions makes it difficult to manage the economy of the process. Further, these systems are much more susceptible to contamination with unwanted microalgae and fungi, bacteria and protozoa that feed on algae. Recently, some work has been done to improve lipid production from algal biomass by implementing?in silico?and?in vitro?biochemical, genetic and metabolic engineering approaches. This article represents a comprehensive discussion about the potential of microalgae for the production of valuable lipid compounds that can be further used for biodiesel production.
机译:微藻类是由阳光驱动的微型工厂,可以将大气中的CO2转化为极性和中性脂质,酯化后可以用作石油的替代来源。此外,出于相同的目的,也考虑了其他代谢产物,例如藻类细胞产生的生物乙醇和生物氢。微藻胶在捕获太阳能方面比常规的油质植物更有效,因为它们具有更简单的细胞组织和即使在营养挑战和高盐浓度下也具有产生脂质的高能力。商业上,微藻是在开放池塘系统或封闭的光生物反应器中培养的。包括管式生物反应器,平板反应器和鼓泡塔反应器在内的光生物反应器系统具有其自身的优势,因为它们为藻类生物质的生长提供了无菌条件。此外,密闭反应器中的其他培养条件,如光照强度,CO2浓度,营养平衡等,仍受到控制。另一方面,尽管开放式池塘为利用藻类细胞的自然采光设施提供了一种经济高效的选择,但由于难以维持最佳且稳定的生长条件,因此难以管理流程的经济性。此外,这些系统更容易受到不需要的微藻和以藻类为食的真菌,细菌和原生动物的污染。最近,已经通过实施“计算机化”和“体外”生化,遗传和代谢工程方法来改善藻类生物质的脂质生产。本文代表对微藻生产有价值的脂质化合物的潜力的全面讨论,该化合物可进一步用于生物柴油生产。

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