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Removal of triazine herbicides from freshwater systems using photosynthetic microorganisms

机译:使用光合微生物从淡水系统中去除三嗪类除草剂

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摘要

The uptake of the triazine herbicides, atrazine and terbutryn, was determined for two freshwater photosynthetic microorganisms, the green microalga Chlorella vulgaris and the cyanobacterium Synechococcus elongatus. An extremely rapid uptake of both pesticides was recorded, although uptake rate was lower for the cyanobacterium, mainly for atrazine. Other parameters related to the herbicide bioconcentration capacity of these microorganisms were also studied. Growth rate, biomass, and cell viability in cultures containing herbicide were clearly affected by herbicide uptake. Herbicide toxicity and microalgae sensitivity were used to determine the effectiveness of the bioconcentration process and the stability of herbicide removal. C. vulgaris showed higher bioconcentration capability for these two triazine herbicides than S. elongatus, especially with regard to terbutryn. This study supports the usefulness of such microorganisms, as a bioremediation technique in freshwater systems polluted with triazine herbicides.
机译:确定了两种淡水光合微生物,绿色微藻小球藻和伸长蓝藻细菌对三嗪类除草剂阿特拉津和特布丁的吸收。记录了两种农药的极快吸收,尽管对蓝藻细菌(主要是阿特拉津)的吸收率较低。还研究了与这些微生物的除草剂生物浓缩能力有关的其他参数。含有除草剂的培养物中的生长速率,生物量和细胞生存力明显受到除草剂吸收的影响。除草剂毒性和微藻敏感性用于确定生物浓缩过程的有效性和除草剂去除的稳定性。 C. vulgaris对这两种三嗪类除草剂的生物富集能力要比S. elongatus高,尤其是在特丁龙方面。这项研究支持了这种微生物的用途,作为一种在被三嗪除草剂污染的淡水系统中的生物修复技术。

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