首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Ability of an alkali-tolerant mutant strain of the microalga Chlorella sp AT1 to capture carbon dioxide for increasing carbon dioxide utilization efficiency
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Ability of an alkali-tolerant mutant strain of the microalga Chlorella sp AT1 to capture carbon dioxide for increasing carbon dioxide utilization efficiency

机译:微藻菌耐碱性突变体菌株的能力捕获二氧化碳的二氧化碳以增加二氧化碳利用效率

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摘要

An alkali-tolerant Chlorella sp. AT1 mutant strain was screened by NTG mutagenesis. The strain grew well in pH 6-11 media, and the optimal pH for growth was 10. The CO2 utilization efficiencies of Chlorella sp. AT1 cultured with intermittent 10% CO2 aeration for 10, 20 and 30 min at 3-h intervals were approximately 80, 42 and 30%, respectively. In alkaline medium (pH = 11) with intermittent 10% CO2 aeration for 30 min at 3-, 6- and 12-h intervals, the medium pH gradually changed to 10, and the biomass productivities of Chlorella sp. AT1 were 0.987, 0.848 and 0.710 g L-1 d(-1), respectively. When Chlorella sp. AT1 was aerated with 10% CO2 intermittently for 30 min at 3-h intervals in semi-continuous cultivation for 21 days, the biomass concentration and biomass productivity were 4.35 g L-1 and 0.726 g L-1 d(-1), respectively. Our results show that CO2 utilization efficiency can be markedly increased by intermittent CO2 aeration and alkaline media as a CO2-capturing strategy for alkali-tolerant microalga cultivation.
机译:耐碱性小球藻SP。在NTG诱变中筛选AT1突变菌株。菌株在pH 6-11培养基中增长良好,并且增长的最佳pH值为10. Collarla SP的CO2利用效率。用间歇10%CO 2培养10,20和30分钟以3-H间隔培养的AT1分别为约80,42和30%。在碱性介质(pH = 11)以3-,6-和12-H间隔间歇性10%CO 2曝气,培养基逐渐变为10,并将生物量培养物逐渐变为半球菌。 AT1分别为0.987,0.848和0.710g L-1 D(-1)。当小球藻SP时。在半连续培养的3-H间隔间隔为30%的培养,在半连续培养时间歇地在10%CO 2曝气,生物质浓度和生物质生产率分别为4.35g L-1和0.726g L-1d(-1) 。我们的结果表明,由于间歇的CO2曝气和碱性介质可以显着增加CO2利用效率作为碱性耐碱性微藻培养的CO2捕获策略。

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