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静态供应不同模拟烟道气用于稀释牛粪消化物中本地微藻的培养。

Static supply of different simulated flue gases for native microalgae cultivation in diluted cow manure digestate.

机构信息

Faculty of Engineering, Hokkaido University, N13, W18, Kita-ku, Sapporo 060-8628, Japan.

Faculty of Engineering, Hokkaido University, N13, W18, Kita-ku, Sapporo 060-8628, Japan.

出版信息

J Environ Manage. 2023 Jun 1;335:117557. doi: 10.1016/j.jenvman.2023.117557. Epub 2023 Feb 25.

Abstract

The application of microalgae to sequester CO from flue gases can be an interesting process since it can contribute to mitigate CO emission into the atmosphere. One obstacle of such application is the high CO concentration in the flue gases, which can lead to low pH in the cultivation medium and hence process failure. This study aims to investigate static CO gas supply for microalgae cultivation as a potential alternative that might allow applying different flue gases with different compositions and higher CO concentrations. Two sets of experiments were performed. First, the effect of increasing the amount of supplied carbon was tested. In the second experiment, the applicability of such system for different flue gases regarding their oxygen and carbon content was tested. In all experiments, 50 times diluted cow manure digestate was used as a culture medium. By increasing CO concentration up to 10% in the supplied air, microalgae growth productivity of 48.7 mg/L/d was achieved. A further improvement of microalgae growth was shown with increasing the gas/culture volume ratio. Microalgae productivity rate increased form 48.7 mg/L/d to 73.5 mg/L/d when the volume of gas increased from 47% to 81% of total volume. Applying CO in air (O content around 20%) or in N (O content less than 2%) didn't show any difference regarding inorganic carbon dissolution, pH, ammonium nitrogen removal, CO fixation or biomass productivity. Generally, it can be concluded that static gas supply for microalgae cultivation can allow the application of different flue gases from different industries with low or high O content and with CO concentration as high as 20%. According to our results, a microalgae cultivation system with continuous static gas supply was proposed.

摘要

利用微藻从烟道气中吸收 CO 是一个很有趣的过程,因为它有助于减少 CO 向大气中的排放。这种应用的一个障碍是烟道气中 CO 浓度高,这可能导致培养介质的 pH 值降低,从而导致过程失败。本研究旨在探讨静态 CO 气体供应用于微藻培养的潜在可能性,这种方法可能允许应用不同组成和更高 CO 浓度的烟道气。进行了两组实验。首先,测试了增加供应碳量的效果。在第二个实验中,测试了该系统对不同烟道气的适用性,这些烟道气的氧和碳含量不同。在所有实验中,均使用 50 倍稀释的牛粪消化物作为培养基。通过将供应空气中的 CO 浓度提高到 10%,实现了 48.7mg/L/d 的微藻生长生产力。通过增加气体/培养物体积比,可以进一步提高微藻的生长。当气体体积从总体积的 47%增加到 81%时,微藻生产力从 48.7mg/L/d 增加到 73.5mg/L/d。在空气中(O 含量约为 20%)或在 N(O 含量小于 2%)中应用 CO 对于无机碳溶解、pH 值、铵氮去除、CO 固定或生物质生产力没有任何影响。一般来说,可以得出结论,静态气体供应用于微藻培养可以允许应用不同行业的烟道气,这些烟道气的 O 含量低或高,CO 浓度高达 20%。根据我们的结果,提出了一种具有连续静态气体供应的微藻培养系统。

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