Martínez Elia Judith, Raghavan Vijaya, González-Andrés Fernando, Gómez Xiomar
Chemical and Environmental Bioprocess Engineering Department, Natural Resources Institute (IRENA), University of León, Av. de Portugal 41, León 24071, Spain.
Department of Bioresource Engineering, McGill University, 21111 Lakeshore Road, Ste-Anne-De-Bellevue, QC H9X-3V9, Canada.
Int J Mol Sci. 2015 Apr 24;16(5):9385-405. doi: 10.3390/ijms16059385.
Concerns about greenhouse gas emissions have increased research efforts into alternatives in bio-based processes. With regard to transport fuel, bioethanol and biodiesel are still the main biofuels used. It is expected that future production of these biofuels will be based on processes using either non-food competing biomasses, or characterised by low CO₂ emissions. Many microorganisms, such as microalgae, yeast, bacteria and fungi, have the ability to accumulate oils under special culture conditions. Microbial oils might become one of the potential feed-stocks for biodiesel production in the near future. The use of these oils is currently under extensive research in order to reduce production costs associated with the fermentation process, which is a crucial factor to increase economic feasibility. An important way to reduce processing costs is the use of wastes as carbon sources. The aim of the present review is to describe the main aspects related to the use of different oleaginous microorganisms for lipid production and their performance when using bio-wastes. The possibilities for combining hydrogen (H₂) and lipid production are also explored in an attempt for improving the economic feasibility of the process.
对温室气体排放的担忧促使人们加大了对生物基工艺替代方案的研究力度。就运输燃料而言,生物乙醇和生物柴油仍是主要使用的生物燃料。预计这些生物燃料未来的生产将基于使用非粮食竞争生物质的工艺,或具有低二氧化碳排放的特点。许多微生物,如微藻、酵母、细菌和真菌,在特殊培养条件下有积累油脂的能力。微生物油可能在不久的将来成为生物柴油生产的潜在原料之一。目前正在对这些油的使用进行广泛研究,以降低与发酵过程相关的生产成本,这是提高经济可行性的关键因素。降低加工成本的一个重要方法是使用废物作为碳源。本综述的目的是描述与使用不同产油微生物进行脂质生产相关的主要方面,以及它们在使用生物废物时的性能。还探讨了将氢气(H₂)生产与脂质生产相结合以提高该工艺经济可行性的可能性。