Saratale Rijuta Ganesh, Kuppam Chandrasekar, Mudhoo Ackmez, Saratale Ganesh Dattatraya, Periyasamy Sivagurunathan, Zhen Guangyin, Koók László, Bakonyi Péter, Nemestóthy Nándor, Kumar Gopalakrishnan
Research Institute of Biotechnology and Medical Converged Science, Dongguk University-Seoul, Ilsandong-gu, Goyang-si, Gyeonggi-do, 10326, Republic of Korea.
School of Applied Biosciences, Kyungpook National University, Daegu, 702-701, Republic of Korea.
Chemosphere. 2017 Jun;177:35-43. doi: 10.1016/j.chemosphere.2017.02.132. Epub 2017 Feb 27.
Excess consumption of energy by humans is compounded by environmental pollution, the greenhouse effect and climate change impacts. Current developments in the use of algae for bioenergy production offer several advantages. Algal biomass is hence considered a new bio-material which holds the promise to fulfil the rising demand for energy. Microalgae are used in effluents treatment, bioenergy production, high value added products synthesis and CO capture. This review summarizes the potential applications of algae in bioelectrochemically mediated oxidation reactions in fully biotic microbial fuel cells for power generation and removal of unwanted nutrients. In addition, this review highlights the recent developments directed towards developing different types of microalgae MFCs. The different process factors affecting the performance of microalgae MFC system and some technological bottlenecks are also addressed.
人类能源消耗过量,再加上环境污染、温室效应和气候变化的影响,情况愈发严重。目前利用藻类生产生物能源的进展具有诸多优势。因此,藻类生物质被视为一种新型生物材料,有望满足不断增长的能源需求。微藻可用于废水处理、生物能源生产、高附加值产品合成以及二氧化碳捕获。本综述总结了藻类在全生物微生物燃料电池中生物电化学介导氧化反应用于发电和去除有害养分方面的潜在应用。此外,本综述还重点介绍了开发不同类型微藻微生物燃料电池的最新进展。还讨论了影响微藻微生物燃料电池系统性能的不同工艺因素以及一些技术瓶颈。