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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Influence of light intensity on microalgal growth, nutrients removal and capture of carbon in the wastewater under intermittent supply of CO2
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Influence of light intensity on microalgal growth, nutrients removal and capture of carbon in the wastewater under intermittent supply of CO2

机译:在二氧化碳间歇供应下,光强度对微藻生长,营养物去除和碳碳的影响

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BACKGROUND The role of light intensity in microalgal cultivation supplied with CO2 is still required to be fully investigated. This study researched the growth of Chlorella vulgaris (C. vulgaris), nutrient removal and carbon capture in the wastewater for various light intensities under the intermittent injection of CO2. RESULTS The biomass for 80 mu mol m(-2) s(-1) reached maximum value within 6 days. The chlorophyll content of C. vulgaris exhibited an ascending trend when increasing the light intensity from 20 to 60 mu mol m(-2) s(-1). Cultural pH for 80 mu mol m(-2) s(-1) showed the largest level of increase in the first 4 days, then began to decline. The light intensity of 80 mu mol m(-2) s(-1) had the quickest TN and TP reduction trend in the wastewater. The difference in consumed N versus P ratio was caused by the different specific growth rates and demands for nutrients at each growth stage of C. vulgaris. The degradation of tryptophan-like substances and the increase of other substances were likely due to the release of extracellular polymeric substance of C. vulgaris. CONCLUSION The light intensity of 80 mu mol m(-2) s(-1) resulted in the highest biomass, the quickest TN and TP reduction trend in the wastewater. Light intensity exhibited no significant influence on removal of organic carbon, but affected the transformation of organic compounds in the wastewater under intermittent supply of 10% CO2. (c) 2018 Society of Chemical Industry
机译:背景技术仍然需要完全研究CO 2提供的微藻培养中的光强度的作用。本研究研究了在间歇注射二氧化碳中的各种光强度的废水中小球藻(C.Ventgaris),营养去除和碳捕获的生长。结果80μmmolm(-2)s(-1)的生物质在6天内达到最大值。当增加20至60μmMolm(-1)的光强度时,C.寻常叶片的叶绿素含量表现出上升趋势。对于80μmmolm(-2)s(-1)的文化pH显示出前4天的最大增加水平,然后开始下降。 80μmm(-2)s(-1)的光强度具有废水中最快的Tn和Tp减少趋势。消耗的N与P比率的差异是由C.Ventgaris的每个生长阶段的不同特异性生长率和需求引起的。由于C.Ventgaris细胞外聚合物物质的释放,可能导致色氨酸样物质的降解和其他物质的增加可能。结论80μmm(-2)S(-1)的光强度导致最高生物质,最快的TN和废水中的TP减少趋势。光强度对除去有机碳没有显着影响,而且影响废水中有机化合物的转化在间歇供应10%CO 2下。 (c)2018化学工业协会

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