Interdisciplinary Centre for Water Research (ICWaR), Indian Institute of Sciences, Bangalore, India.
Department of Botany, Lovely Professional University, Phagwara, Punjab, India.
Microb Cell Fact. 2021 Mar 2;20(1):55. doi: 10.1186/s12934-021-01547-w.
The accelerating energy demands of the increasing global population and industrialization has become a matter of great concern all over the globe. In the present scenario, the world is witnessing a considerably huge energy crisis owing to the limited availability of conventional energy resources and rapid depletion of non-renewable fossil fuels. Therefore, there is a dire need to explore the alternative renewable fuels that can fulfil the energy requirements of the growing population and overcome the intimidating environmental issues like greenhouse gas emissions, global warming, air pollution etc. The use of microorganisms such as bacteria has captured significant interest in the recent era for the conversion of the chemical energy reserved in organic compounds into electrical energy. The versatility of the microorganisms to generate renewable energy fuels from multifarious biological and biomass substrates can abate these ominous concerns to a great extent. For instance, most of the microorganisms can easily transform the carbohydrates into alcohol. Establishing the microbial fuel technology as an alternative source for the generation of renewable energy sources can be a state of art technology owing to its reliability, high efficiency, cleanliness and production of minimally toxic or inclusively non-toxic byproducts. This review paper aims to highlight the key points and techniques used for the employment of bacteria to generate, biofuels and bioenergy, and their foremost benefits.
不断增长的全球人口和工业化对能源的需求加速增长,这已成为全球关注的焦点。在当前的情况下,由于常规能源的有限可用性和不可再生化石燃料的迅速枯竭,世界正面临着巨大的能源危机。因此,迫切需要探索替代可再生燃料,以满足不断增长的人口的能源需求,并克服温室气体排放、全球变暖、空气污染等令人担忧的环境问题。在最近的时代,利用细菌等微生物将有机化合物中储存的化学能转化为电能,引起了人们的极大兴趣。微生物从多种生物和生物质基质中产生可再生能源燃料的多功能性在很大程度上减轻了这些可怕的担忧。例如,大多数微生物可以很容易地将碳水化合物转化为酒精。由于其可靠性、高效率、清洁性和产生最小毒性或非毒性副产物,将微生物燃料电池技术确立为可再生能源的替代来源可能是一项具有创新性的技术。本文旨在重点介绍利用细菌产生生物燃料和生物能源的关键技术和要点,以及它们的主要优势。