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首页> 外文期刊>Journal of Applied Phycology >Potential microalgal strains for converting flue gas CO2 into biomass
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Potential microalgal strains for converting flue gas CO2 into biomass

机译:用于将烟道气二氧化碳转化为生物质的潜在微藻菌株

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摘要

A screening method using 15% CO2 (v/v) as screening stress and a spotting plate method was developed to isolate microalgae with the potential to convert flue gas CO2 to biomass. A total of six microalgal strains, belonging to the genera Chlorella, Heynigia, Desmodesmus, and Scenedesmus, were isolated from ponds near metallurgical/cement/power plants. The growth of these isolated strains was dramatically promoted at 5 to 15% CO2 when they were cultivated in bubble column photobioreactors aerating with 0.03%, 5%, 10%, and 15% CO2. The growth of Heynigia riparia SX01 in particular showed substantial improvement with the increase of CO2 concentrations from 5 to 15%. Furthermore, the maximum biomass, overall biomass productivity, maximum biomass productivity, and maximum CO2 fixation rate of these microalgal strains greatly increased at 5 to 15% CO2 as well. Chlorella sorokiniana GS03 showed the highest values in maximum biomass productivity (0.36 g L-1 day(-1)) and maximum CO2 fixation rate (0.66 g L-1 day(-1)) at 5% CO2. Heynigia riparia SX01 exhibited the highest values of maximum biomass (3.28 g L-1), overall biomass productivity (0.27 g L-1 day(-1)), maximum biomass productivity (0.39 g L-1 day(-1)), and maximum CO2 fixation rate (0.71 g L-1 day(-1)) at 15% CO2. This study provides not only an efficient screening method obtaining microalgae with wide CO2 tolerance but also microalgal strains utilizing high levels of CO2 up to 15% to produce biomass, which contributes to further exploration in converting real flue gas CO2 into biomass feedstock.
机译:建立了以15%CO2(v/v)为筛选应力和斑点板法分离具有将烟气CO2转化为生物量潜力的微藻的筛选方法。从冶金厂/水泥厂/发电厂附近的池塘中分离出六株微藻菌株,它们分别属于小球藻属、海尼氏藻属、丝足藻属和栅藻属。当这些分离菌株在鼓泡式光生物反应器中培养时,在5-15%的CO2浓度下,它们的生长得到了显著的促进,鼓泡式光生物反应器中的CO2浓度分别为0.03%、5%、10%和15%。特别是,随着CO2浓度从5%增加到15%,海草SX01的生长表现出显著的改善。此外,这些微藻菌株的最大生物量、总生物量生产力、最大生物量生产力和最大CO2固定率在CO2浓度为5%至15%时也显著增加。sorokiniana小球藻GS03在5%CO2浓度下的最大生物产量(0.36 g L-1天(-1))和最大CO2固定率(0.66 g L-1天(-1))最高。Heynigia riparia SX01的最大生物量(3.28 g L-1)、总生物量生产力(0.27 g L-1天(-1))、最大生物量生产力(0.39 g L-1天(-1))和最大CO2固定率(0.71 g L-1天(-1))在15%CO2浓度下最高。本研究不仅提供了一种有效的筛选方法,获得了具有广泛耐CO2能力的微藻,而且还提供了利用高浓度CO2生产生物质的微藻菌株,这有助于进一步探索将实际烟气CO2转化为生物质原料的途径。

著录项

  • 来源
    《Journal of Applied Phycology 》 |2021年第1期| 共9页
  • 作者单位

    Chinese Acad Sci South China Sea Inst Oceanol Key Lab Trop Marine Bioresources &

    Ecol Guangzhou 510301 Peoples R China;

    Chinese Acad Sci South China Sea Inst Oceanol Key Lab Trop Marine Bioresources &

    Ecol Guangzhou 510301 Peoples R China;

    Chinese Acad Sci South China Sea Inst Oceanol Key Lab Trop Marine Bioresources &

    Ecol Guangzhou 510301 Peoples R China;

    Minist Educ China Key Lab Biomet Changsha 410083 Peoples R China;

    Chinese Acad Sci South China Sea Inst Oceanol Key Lab Trop Marine Bioresources &

    Ecol Guangzhou 510301 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学 ;
  • 关键词

    Screening; Microalgae; Flue gas CO2; Biomass; CO2 fixation rate;

    机译:筛选;微藻;烟气CO2;生物质;二氧化碳固定率;

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