磁场在生物燃料生产中提高微藻生物量产量的应用

L. O. Santos, P. G. Silva, Sharlene Silva Costa, T. B. Machado
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引用次数: 1

摘要

使用不可再生能源的燃料目前被认为是不可持续的,因为供应已耗尽,而且会对环境造成影响。气候变化引起了人们的关注,并引发了有利于清洁和可再生能源研究的环境政策。因此,生产第三代生物燃料是生物燃料工业的一条有前途的道路。为了生产这种类型的生物燃料,微藻应该得到重视,因为这种原料含有重要的生物分子,如碳水化合物和脂质。在光照强度、温度、pH值、微量和宏量营养素浓度等生态条件下,已经开发出改善微藻培养的技术方法。因此,磁场应用于微藻培养已成为一种可行的替代方案,以获得高产的生物量浓度和碳水化合物和脂质积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic Field Application to Increase Yield of Microalgal Biomass in Biofuel Production
Use of fuels from non-renewable sources has currently been considered unsustainable due to the exhaustion of supplies and environmental impacts caused by them. Climate change has concerned and triggered environmental policies that favor research on clean and renewable energy sources. Thus, production of third generation biofuels is a promising path in the biofuel industry. To yield this type of biofuels, microalgae should be highlighted because this raw material contains important biomolecules, such as carbohydrates and lipids. Technological approaches have been developed to improve microalgal cultivation under ecological conditions, such as light intensity, temperature, pH and concentrations of micro and macronutrients. Thus, magnetic field application to microalgal cultivation has become a viable alternative to obtain high yields of biomass concentration and accumulation of carbohydrates and lipids.
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