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Monitoring and quantification of the complex bioaccumulation process of mercury ion in algae by a novel aggregation-induced emission fluorogen

机译:一种通过新型聚集诱导的排放氟化荧光的藻类中汞离子复杂生物积累过程的监测和定量

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In this study, a novel methodology was developed using a specified aggregation-induced emission fluorogen (AIEgen) to monitor and quantify the complex bioaccumulation process in a microcosm aquatic ecosystem. Mercury ion (Hg ~(2+) ) was used as the pollutant and Euglena gracilis as a representative algal species in water, to develop this new methodology for understanding the processes of bioaccumulation and biorelease of a heavy metal in algae. AIEgen can easily detect Hg ~(2+) in the environment by the “turn-on” feature, and a relationship was built among photoluminescence (PL) intensity, AIEgen concentration, and Hg ~(2+) concentration. The AIEgen was effectively used for quantifying Hg ~(2+) concentration in the bioaccumulation process by reading the PL intensity of the solution. Bioaccumulation, bioaccumulation efficiency, and the ratio of Hg ~(2+) in Euglena gracilis cells and the environment were carefully characterized by this novel method and the results were further validated with the existing well-established analytical method. The quantitative detection of Hg ~(2+) absorption and release from the algae by the AIEgen demonstrates a novel, green, and sustainable approach to understand the dynamics of Hg ~(2+) between aquatic organisms and the environment.
机译:在该研究中,使用指定的聚集诱导的发射荧光(AIEGEN)开发了一种新的方法,以监测和量化微观药物水生生态系统中的复杂生物积累过程。汞离子(Hg〜))用作污染物和euglena Gracilis作为水中的代表性藻类物种,以制定这种新方法,以了解藻类中重金属的生物累积和生物酶的过程。 Aiegen可以通过“开启”特征在环境中容易地检测Hg〜(2+),并且在光致发光(PL)强度,Aiegen浓度和Hg〜(2+)浓度中构建了一种关系。通过读取溶液的PL强度,通过读取PL强度,有效地用于量化生物累积过程中的Hg〜(2+)浓度。通过这种新方法仔细描述了Euglena Gracilis细胞中的生物累积,生物累积效率和Hg〜(2+)的比例,并通过现有的良好建立的分析方法进一步验证了结果。 AIEGEN的Hg〜(2+)Hg〜(2+)吸收和释放的定量检测证明了一种新颖,绿色和可持续的方法,以了解水生生物和环境之间Hg〜(2+)的动态。

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