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首页> 外文期刊>Journal of Applied Phycology >Effect of cement industry flue gas simulation on the physiology and photosynthetic performance of Chlorella sorokiniana
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Effect of cement industry flue gas simulation on the physiology and photosynthetic performance of Chlorella sorokiniana

机译:水泥工业烟气模拟对小黄菌氏菌的生理学和光合性能的影响

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摘要

Cement plants account for significant emissions of CO2 and other pollutants into the atmosphere. As a means for its mitigation, we tested the effect of a cement industry-based flue gas simulation (FGS - 18% CO2, 9% O-2, 300 ppm NO2, 140 ppm SO2) on the green alga, Chlorella sorokiniana. Culture pH, cell density, cell viability and productivity, specific growth rates, photosynthetic performance, and biochemical composition were monitored. The treatments consisted of different FGS volumes (0.1, 0.3, 0.8, 1.5, 6, and 48 L day(-1) ) that were applied in a series of laboratory-scale semi-continuous batch cultures under controlled conditions. Controls were exposed to 18% CO2 enriched air. Cell density showed that C. sorokiniana was able to grow in all treatments, but compared to the controls, low pH (similar to 5.0) caused by 48 L FGS day(-1) led to 27% decrease in specific growth rate. Increasing FGS exposure decreased maximum and operational quantum yields obtained by pulse amplitude modulated fluorometry, while photochemical quenching remained constant (similar to 0.93). The a and rETR(max), parameters calculated from rapid light curves decreased with increasing FGS exposure. Total proteins and carbohydrates (per cell basis) increased after 6 and 48 L FGS day(-1), which can be advantageous for biotechnological applications, but cell productivity (cells L-1 day(-1)) decreased. Despite the effects in physiology, C. sorokiniana could withstand a pH range of 6.0-5.0 imposed by 48 L FGS day(-1). Overall, C. somkiniana can be considered a robust species in flue gas bioremediation.
机译:水泥厂占二氧化碳和其他污染物的重要排放到大气中。作为其缓解的手段,我们测试了水泥行业的烟气模拟(FGS - 18%CO2,9%O-2,300 ppm No2,140 ppm SO2)的效果。监测培养pH,细胞密度,细胞活力和生产率,特异性生长速率,光合性能和生化组合物。该治疗由不同的FGS体积(0.1,0.3,0.8,1.5,6和48 L日(-1))组成,其在受控条件下的一系列实验室标度半连续分批培养中应用。将对照暴露于18%的CO 2富集空气。细胞密度显示C.Sorokiniana能够在所有治疗中生长,但与对照相比,由48LFGS日(-1)引起的低pH(类似于5.0)导致特定生长速率的27%降低。增加FGS曝光降低了通过脉冲幅度调制荧光测定法获得的最大和操作量子产量,而光化学淬火仍然恒定(类似于0.93)。 a和retr(max),从快速光曲线计算的参数随着fgs曝光而降低。在6和48LFGS日(-1)后,总蛋白质和碳水化合物(每个细胞基础)增加,这对于生物技术应用是有利的,但细胞生产率(细胞L-1天(-1))降低。尽管生理学效果,C.Sorokiniana可以承受48 L FGS日(-1)施加的6.0-5.0的pH范围。总体而言,C. Somkiniana可以被认为是烟气生物修复中的鲁棒品种。

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