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A Holistic Approach to Managing Microalgae for Biofuel Applications

机译:一种管理微藻生物燃料应用的整体方法

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摘要

Microalgae contribute up to 60% of the oxygen content in the Earth’s atmosphere by absorbing carbon dioxide and releasing oxygen during photosynthesis. Microalgae are abundantly available in the natural environment, thanks to their ability to survive and grow rapidly under harsh and inhospitable conditions. Microalgal cultivation is environmentally friendly because the microalgal biomass can be utilized for the productions of biofuels, food and feed supplements, pharmaceuticals, nutraceuticals, and cosmetics. The cultivation of microalgal also can complement approaches like carbon dioxide sequestration and bioremediation of wastewaters, thereby addressing the serious environmental concerns. This review focuses on the factors affecting microalgal cultures, techniques adapted to obtain high-density microalgal cultures in photobioreactors, and the conversion of microalgal biomass into biofuels. The applications of microalgae in carbon dioxide sequestration and phycoremediation of wastewater are also discussed.
机译:微藻通过吸收二氧化碳并在光合作用过程中释放氧气,贡献了地球大气中氧气含量的60%。由于微藻能够在恶劣和荒凉的条件下生存和快速生长,因此在自然环境中可以大量利用微藻。微藻栽培对环境友好,因为微藻生物质可用于生产生物燃料,食品和饲料补充剂,药品,保健食品和化妆品。微藻的培养还可以补充二氧化碳的固持和废水的生物修复等方法,从而解决了严重的环境问题。这篇综述着重于影响微藻培养物的因素,适用于在光生物反应器中获得高密度微藻培养物的技术以及将微藻生物质转化为生物燃料的技术。还讨论了微藻类在废水中二氧化碳的螯合和光气化处理中的应用。

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