首页> 外文期刊>Science of the total environment >Role of organic matter and microbial communities in mercury retention and methylation in sediments near run-of-river hydroelectric dams
【24h】

Role of organic matter and microbial communities in mercury retention and methylation in sediments near run-of-river hydroelectric dams

机译:河流水电坝附近沉积物中有机质和微生物群落的作用及沉积物中的甲基化

获取原文
获取原文并翻译 | 示例
           

摘要

Run-of-river power plants (RoRs) are expected to triple in number over the next decades in Canada. These structures are not anticipated to considerably promote the mobilization and transport of mercury (Hg) and its subsequent microbial transformation to methylmercury (MeHg), a neurotoxin able to biomagnify in food webs up to humans. To test whether construction of RoRs had an effect on Hg transport and transformation, we studied Hg and MeHg concentrations, organic matter contents and methylating microbial community abundance and composition in the sediments of a section of the St. Maurice River (Quebec, Canada). This river section has been affected by the construction of two RoR dams and its watershed has been disturbed by a forest fire, logging, and the construction of wetlands. Higher total Hg (THg) and MeHg concentrations were observed in the surface sediments of the flooded sites upstream of the RoRs. These peaks in THg and MeHg were correlated with organic matter proportions in the sediments (r~2 = 0.87 and 0.82, respectively). In contrast, the proportion of MeHg, a proxy for methylation potential, was best explained by the carbon to nitrogen ratio suggesting the importance of terrigenous organic matter as labile substrate for Hg methylation in this system. Metagenomic analysis of Hg-methylating communities based on the hgcA functional gene marker indicated an abundance of methanogens, sulfate reducers and fermenters, suggesting that these metabolic guilds may be primary Hg meth-ylators in these surface sediments. We propose that RoR pondages act as traps for sediments, organic matter and Hg, and that this retention can be amplified by other disturbances of the watershed such as forest fire and logging. RoR flooded sites can be conducive to Hg methylation in sediments and may act as gateways for bioaccumulation and biomagnification of MeHg along food webs, particularly in disturbed watersheds.
机译:运行的河电厂(RORS)预计将在三联在加拿大未来几十年数。不预期这些结构大幅提升动员和汞的运输(汞)和其随后的微生物转化为甲基汞,能在食品生物放大腹板高达人类神经毒素。为了测试RORS的建设是否对汞迁移转化的影响,我们研究了汞和甲基汞含量,有机质含量,并在圣莫里斯河(魁北克,加拿大)的部分沉积物甲基化微生物群落丰度和组成。这一河段已经受两个回报率水坝的建设和流域已经由森林火灾,采伐和湿地的建设受到干扰。在浸水位点的表面沉积物中观察到更高的总汞(THG)和甲基汞浓度RORS的上游。在总汞和甲基汞这些峰与沉积物中有机物比例进行相关(r〜2分别= 0.87和0.82,)。与此相反,甲基汞,甲基化潜在的代理,的比例最好由碳氮比暗示的陆源有机物作为用于在该系统中汞的甲基化不稳定衬底的重要性进行说明。基于所述HGCA功能性基因标记汞甲基化社区的宏基因组分析表明产甲烷菌,硫酸盐还原和发酵罐的丰度,这表明这些代谢公会可以是伯汞柱甲基-ylators在这些表面沉积物。我们建议,回报率pondages充当陷阱沉积物,有机物和Hg,而这种保留可以通过流域这样的其它干扰的森林火灾和伐木被放大。 RoR的漫溢区可以有利于沉积物中汞的甲基化和可充当网关沿着食物链甲基汞的生物蓄积性和生物放大作用,特别是在受到干扰的分水岭。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|145686.1-145686.12|共12页
  • 作者单位

    Departement de sciences biobgiques Universite de Montreal Montreal H2V 2S9 QC Canada Biobgy Department Concordia University Montreal H4B 1R6 QC Canada GRIL Groupe de Recherche Interuniversitaire en Limnologie Departement de sciences biobgiques Universite de Montreal Campus MIL Montreal H3C 3J7 QC Canada;

    Departement de sciences biobgiques Universite de Montreal Montreal H2V 2S9 QC Canada GRIL Groupe de Recherche Interuniversitaire en Limnologie Departement de sciences biobgiques Universite de Montreal Campus MIL Montreal H3C 3J7 QC Canada;

    Departement de sciences biobgiques Universite de Montreal Montreal H2V 2S9 QC Canada Biobgy Department Concordia University Montreal H4B 1R6 QC Canada;

    Departement de sciences biobgiques Universite de Montreal Montreal H2V 2S9 QC Canada GRIL Groupe de Recherche Interuniversitaire en Limnologie Departement de sciences biobgiques Universite de Montreal Campus MIL Montreal H3C 3J7 QC Canada;

    Hydro-Quebec Production Environment Department Montreal QC Canada;

    Biobgy Department Concordia University Montreal H4B 1R6 QC Canada GRIL Groupe de Recherche Interuniversitaire en Limnologie Departement de sciences biobgiques Universite de Montreal Campus MIL Montreal H3C 3J7 QC Canada;

    Departement de sciences biobgiques Universite de Montreal Montreal H2V 2S9 QC Canada GRIL Groupe de Recherche Interuniversitaire en Limnologie Departement de sciences biobgiques Universite de Montreal Campus MIL Montreal H3C 3J7 QC Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号