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Microfiber Content in Freshwater Mussels from Rural Tributaries of the Saint John River, Canada

机译:来自加拿大圣约翰河农村支流的淡水贻贝中的超细纤维含量

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Microfibers are now ubiquitous in the environment largely due to the widespread use of natural and synthetic textiles. Many enter aquatic systems through wastewater treatment plant (WWTP) effluent, surface water runoff, and atmospheric deposition, where they persist and may be ingested by filter-feeding organisms. In addition to causing physical damage (e.g., digestive and respiratory obstructions), microfibers are often carriers of chemical pollutants that may also harm biota. This exploratory study aimed to determine whether freshwater mussel (Margaritifera margaritifera L.) microfiber content varied between two rural tributaries of the Saint John River, whether microfiber content was related to WWTP discharge points or potential diffuse microfiber sources, and whether mussel size was associated with microfiber content. Mussels were collected both upstream and downstream of five WWTP discharge points and at 11 other points along two rivers within rural watersheds of maritime Canada. Microfiber content differed significantly between the two rivers; however, no trends were observed in microfiber content in relation to WWTP discharge points on either river. Smaller mussels contained significantly more microfibers than larger mussels, despite differences in mussel size ranges between tributaries. These results reveal a potential pathway for microfibers to enter aquatic food webs and highlight important implications for the use of freshwater mussels as bioindicators of microfiber contamination.
机译:由于天然和合成纺织品广泛使用,微纤维在环境中普遍存在环境中。许多通过废水处理厂(WWTP)流出物,表面水径流和大气沉积进入水生系统,在那里它们持续存在,并且可以通过过滤喂养的生物来摄取。除了引起物理损伤(例如,消化和呼吸障碍物),微纤维通常是化学污染物的载体,也可能伤害生物群。该探索性研究旨在确定淡水贻贝(Margaritifera Margaritifera L.)微纤维含量在圣约翰河的两个农村支流之间变化,超细纤维含量是否与WWTP排放点或潜在的漫射微纤维来源有关,以及贻贝尺寸是否与之相关超细纤维含量。贻贝在五件WWTP排放点的上游和下游收集,以及沿着海滨农村水域内的两条河流的其他11个点。两条河之间微纤维含量显着不同;然而,在多河上的WWTP排放点的微纤维内容中没有观察到趋势。尽管支流之间的贻贝尺寸范围差异,较小的贻贝比较大的贻贝含有比较大的贻贝更多。这些结果揭示了微纤维进入水生食品网的潜在途径,并突出了对使用淡水贻贝作为微纤维污染的生物inderators的重要意义。

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