Sustainable Chemistry (Resource Efficiency), Institute of Sustainable and Environmental Chemistry, Leuphana University of Lüneburg, Universitätsallee 1, C13.203, 21335 Lüneburg, Germany; Institute for Food and Environmental Research e. V., Papendorfer Weg 3, 14806 Bad Belzig, Germany.
German Institute of Food Technologies - DIL e.V., Prof.-von-Klitzing-Str. 7, 49610 Quakenbrück, Germany.
Bioresour Technol. 2021 Sep;335:125227. doi: 10.1016/j.biortech.2021.125227. Epub 2021 May 5.
Microalgae cultivation for food purposes could have high environmental impacts. The study performed life cycle assessment (LCA) of hypothetical model combining phototrophic and heterotrophic cultivations, exchanging produced gases (carbon dioxide from heterotrophic and oxygen from autotrophic) as a potential strategy to reduce the environmental impact of microalgae cultivation. The LCA indicated that the production of Galdieria sulphuraria in a combined cultivation system has environmental benefits compared with the separate phototrophic cultivation and an almost twice lower carbon footprint than phototrophic cultivation. The benefits are based on the lower volume of culture broth and consequently reduced energy demand as well as less demanding wastewater treatment of the heterotrophic cultivation. Such combination of cultivation activities could be recommended to the producers dealing with phototrophic cultivation as a sustainable strategy for the environmental impact reduction.
以食品为目的的微藻培养可能会产生很高的环境影响。本研究通过生命周期评估(LCA)对假设的光养和异养组合培养模型进行了评估,作为减少微藻培养环境影响的潜在策略,交换产生的气体(异养的二氧化碳和自养的氧气)。LCA 表明,与单独的光养培养相比,在联合培养系统中生产 Galdieria sulphuraria 具有环境效益,其碳足迹比光养培养低近两倍。这种效益基于较低的培养液体积,从而降低了能源需求,以及异养培养对废水处理的要求较低。对于从事光养培养的生产者来说,这种培养活动的组合可以作为一种减少环境影响的可持续策略。