In this study, the distribution, transfer and fate of both polychlorinated biphenyls (PCBs) and cyanotoxins via phytoplankton routes were systematically investigated in two Chinese lakes. Results indicated that PCB adsorption/bioaccumulation dynamics has significantly positive correlations with the biomass of green alga and diatoms. Total lipid content of phytoplankton is the major factor that influences PCB adsorption/bioaccumulation. Cyanobacterial blooms with relatively lower lipid content could also absorb high amount of PCBs due to their high cell density in the water columns, and this process was proposed as major route for the transfer of PCBs in Chinese eutrophic freshwater. According to these findings, a novel route on fates of PCBs via phytoplankton and a green bioadsorption concept were proposed and confirmed. In the practice of mechanical collections of bloom biomass from Lake Taihu, cyanotoxin/cyanobacteria and PCBs were found to be removed simultaneously very efficiently followed this theory.

译文

:在这项研究中,系统地研究了两个中国湖泊中浮游植物路线中多氯联苯(PCBs)和氰毒素的分布,转移和结局。结果表明,PCB吸附/生物富集动力学与绿藻和硅藻的生物量具有显着正相关。浮游植物的总脂质含量是影响PCB吸附/生物累积的主要因素。蓝藻水华中脂质含量相对较低的蓝藻由于其在水柱中的高细胞密度也可以吸收大量的多氯联苯,这一过程被认为是中国富营养化淡水中多氯联苯转移的主要途径。根据这些发现,提出并证实了一种通过浮游植物减少多氯联苯命运的新途径和绿色生物吸附概念。在机械收集太湖大花生物量的实践中,遵循该理论,发现氰毒素/蓝细菌和多氯联苯可以非常有效地同时去除。

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