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Photobioreactor Cultivation Strategies for Microalgae and Cyanobacteria

机译:微藻和蓝藻的光生物反应器培养策略

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摘要

The current burden on fossil-derived chemicals and fuels combined with the rapidly increasing global population has led to a crucial need to develop renewable and sustainable sources of chemicals and biofuels. Photoautotrophic microorganisms, including cyanobacteria and microalgae, have garnered a great deal of attention for their capability to produce these chemicals from carbon dioxide, mineralized water, and solar energy. While there have been substantial amounts of research directed at scaling-up production from these microorganisms, several factors have proven difficult to overcome, including high costs associated with cultivation, photobioreactor construction, and artificial lighting. Decreasing these costs will substantially increase the economic feasibility of these production processes. Thus, the purpose of this review is to describe various photobioreactor designs, and then provide an overview on lighting systems, mixing, gas transfer, and the hydrodynamics of bubbles. These factors must be considered when the goal of a production process is economic feasibility. Targets for improving microalgae and cyanobacteria cultivation media, including water reduction strategies will also be described. As fossil fuel reserves continue to be depleted and the world population continues to increase, it is imperative that renewable chemical and biofuel production processes be developed toward becoming economically feasible. Thus, it is essential that future research is directed toward improving these processes. (C) 2018 American Institute of Chemical Engineers
机译:目前对化石衍生的化学品和燃料的负担与迅速增加的全球人口相结合,导致开发可再生和可持续的化学品和生物燃料来源的重要性。 Photoautotrophic微生物,包括蓝藻和微藻,对其产生这些化学品,从二氧化碳,矿化水和太阳能产生这些化学品的能力,获得了大量的关注。虽然有大量的研究从这些微生物缩放产生的缩放生产,但有几个因素难以克服,包括与栽培,光生物反应器结构和人工照明相关的高成本。降低这些成本将大大提高这些生产过程的经济可行性。因此,本综述的目的是描述各种光生物反应器设计,然后在照明系统,混合,气体转移和气泡的流体动力学上提供概要。当生产过程的目标是经济可行性时,必须考虑这些因素。还将描述改善微藻和蓝藻培养基的靶标,包括降水策略。随着化石燃料储备继续被耗尽,世界人口继续增加,必须发展可再生化学和生物燃料生产流程在经济上可行。因此,必须将未来的研究旨在改善这些过程。 (c)2018美国化学工程研究所

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