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Bioprospecting for hyper-lipid producing microalgal strains for sustainable biofuel production

机译:用于高脂生产的微藻菌株的生物勘探,以实现可持续的生物燃料生产

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摘要

Global petroleum reserves are shrinking at a fast pace, increasing the demand for alternate fuels. Microalgae have the ability to grow rapidly, and synthesize and accumulate large amounts (approximately 20-50% of dry weight) of neutral lipid stored in cytosolic lipid bodies. A successful and economically viable algae based biofuel industry mainly depends on the selection of appropriate algal strains. The main focus of bioprospecting for microalgae is to identify unique high lipid producing microalgae from different habitats. Indigenous species of microalgae with high lipid yields are especially valuable in the biofuel industry. Isolation, purification and identification of natural microalgal assemblages using conventional techniques is generally time consuming. However, the recent use of micromanipulation as a rapid isolating tool allows for a higher screening throughput. The appropriate media and growth conditions are also important for successful microalgal proliferation. Environmental parameters recorded at the sampling site are necessary to optimize in vitro growth. Identification of species generally requires a combination of morphological and genetic characterization. The selected microalgal strains are grown in upscale systems such as raceway ponds or photobireactors for biomass and lipid production. This paper reviews the recent methodologies adopted for site selection, sampling, strain selection and identification, optimization of cultural conditions for superior lipid yield for biofuel production. Energy generation routes of microalgal lipids and biomass are discussed in detail.
机译:全球石油储备正在迅速收缩,从而增加了对替代燃料的需求。微藻具有快速生长的能力,并且能够合成和积累大量(大约占干重的20%至50%的干性)存储在胞质脂质体内的中性脂质。成功且经济上可行的藻类生物燃料产业主要取决于选择合适的藻种。微藻生物勘探的主要重点是确定来自不同生境的独特的高产脂微藻。具有高脂质产量的微藻土种在生物燃料工业中特别有价值。使用常规技术分离,纯化和鉴定天然微藻组合物通常很耗时。但是,最近将显微操作用作快速隔离工具可实现更高的筛选通量。合适的培养基和生长条件对于成功的微藻增殖也很重要。采样点记录的环境参数是优化体外生长所必需的。物种鉴定通常需要结合形态学和遗传学特征。选定的微藻菌株在高档系统中生长,例如跑道池或光生物反应器,用于生产生物质和脂质。本文回顾了最近用于选址,取样,菌株选择和鉴定,优化培养条件以生产生物燃料的高脂产量的方法学。详细讨论了微藻类脂质和生物质的能量产生途径。

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