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Physiological and Biochemical Responses of Chlorella vulgaris to Real Cement Flue Gas Under Controlled Conditions

机译:受控条件下小球藻对水泥烟气的生理生化响应

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Photosynthetic microalgal growth is a promising tool for mitigation of gaseous effluent from the cement production, which is highly implicated in global warming and climate change. We investigated the effects of actual cement industry flue gas on the physiology of Chlorella vulgaris under laboratory-controlled conditions. We evaluated the growth, photosynthetic performance, intracellular metal content, total proteins, and carbohydrates of C. vulgaris under three gas input rates: 9, 36, and 54 L d(-1); compressed air (54 L d(-1)) was used as control. The results showed no correlation between the flue gas input rates on total proteins and carbohydrates in the algal biomass, and no effects on growth rates. However, rapid light curves indicated that the light use efficiency (alpha) and the maximum relative electron transport rate (rETR (max) ) were stimulated when applying 9 and 36 L d(-1). Metal analysis revealed an accumulation of Cr, Zn, and Ni in the algal biomass exposed to flue gas (54 L d(-1)) compared to the control. Thermogravimetry and differential thermal analysis showed that 70% of the cement kiln dust were composed by uncalcined limestone, which may have stimulated photosynthesis, as indicated by the rapid light curve parameters. In general, C. vulgaris can be considered a robust organism for cement flue gas bioremediation.
机译:光合微藻生长是减轻水泥生产中的气态排放物的有前途的工具,这与全球变暖和气候变化高度相关。我们研究了在实验室控制条件下实际水泥行业烟气对小球藻生理的影响。我们评估了三种气体输入速率下C. vulgaris的生长,光合性能,细胞内金属含量,总蛋白质和碳水化合物:9、36和54 L d(-1);压缩空气(54 L d(-1))用作对照。结果表明,烟气输入速率与藻类生物质中总蛋白质和碳水化合物之间没有相关性,并且对生长速率没有影响。但是,快速的光曲线表明,当施加9和36 L d(-1)时,光利用效率(α)和最大相对电子传输速率(rETR(max))受到刺激。金属分析表明,与对照相比,暴露于烟气(54 L d(-1))的藻类生物质中Cr,Zn和Ni的积累。热重分析和差热分析表明,水泥窑粉尘中有70%由未煅烧的石灰石组成,其可能通过快速光曲线参数指示了光合作用。通常,寻常型梭状芽胞杆菌可被认为是水泥烟气生物修复的强壮生物。

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