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首页> 外文期刊>Journal of Hazardous Materials >Production and migration of methylmercury in water-level-fluctuating zone of the Three Gorges Reservoir, China: Dual roles of flooding-tolerant perennial herb
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Production and migration of methylmercury in water-level-fluctuating zone of the Three Gorges Reservoir, China: Dual roles of flooding-tolerant perennial herb

机译:三峡水库水位波动区甲基汞的生产和迁移:多年生耐水草的双重作用

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摘要

Water-level-fluctuating zone (WLFZ) is a prevalent water-land ecotone favorable for mercury (Hg) methylation. The succession of flooding tolerance plants in WLFZ gradually changes the landscape, and also brings a new question worth understanding whether these plants would enhance methylmercury (MeHg) production in WLFZ and increase risks to the aquatic environment. Given bermudagrass (Cynodon dactylon (L). Pers) as the dominant perennial herb with high flooding-tolerance in WLFZ of the Three Gorges Reservoir (TGR), we conducted a comprehensive study to investigate its roles in the production and migration of MeHg in WLFZ by field observations and stable isotope tracer experiments. Results showed that both elevated MeHg levels and Hg methylation rates appeared in soil/sediment in bermudagrass growing area, implying that the growth of bermudagrass could significantly enhance MeHg production. However, MeHg migration from sediment to water was restricted during the flooding period of the TGR, as obviously higher partitioning coefficients of MeHg between the sediment and porewater (p < 0.05) and lower MeHg release fluxes were observed in vegetated area, indicating that the presence of bermudagrass instead probably decreased the water MeHg level. Whereas, it is noteworthy that elevated MeHg in soil/sediment induced by the bermudagrass could pose potential risks to the benthos and further to the TGR food chain.
机译:水位波动区(WLFZ)是有利于汞(Hg)甲基化的普遍的水陆过渡带。 WLFZ地区耐水植物的演替逐渐改变了景观,也带来了一个新的问题,值得探讨,这些植物是否会增强WLFZ地区的甲基汞(MeHg)生产并增加对水生环境的风险。在三峡水库(TGR)的WLFZ中以百慕大香茅(Cynodon dactylon(L)。Pers)为主要的多年生高耐水多年生草本植物,我们进行了一项全面研究,以研究其在WLFZ中MeHg的生产和迁移中的作用。通过现场观察和稳定的同位素示踪实验。结果表明,百慕大草生长区的土壤/沉积物中均出现了较高的MeHg水平和Hg甲基化率,这表明百慕大草的生长可以显着提高MeHg的产量。然而,在TGR的洪泛期,从沉积物到水的MeHg迁移受到限制,因为在植被区观察到沉积物与孔隙水之间的MeHg分配系数明显较高(p <0.05),而MeHg释放通量较低,表明存在相反,百慕大草可能降低了水中的MeHg水平。值得一提的是,由百慕大草引起的土壤/沉积物中甲基汞的升高可能对底栖动物和TGR食物链构成潜在风险。

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