Literature DB >> 15884350

Decrease in net mercury methylation rates following iron amendment to anoxic wetland sediment slurries.

Anna S Mehrotra1, David L Sedlak.   

Abstract

The rate of mercury methylation in anoxic wetland sediments is affected by the concentration of bioavailable complexes between Hg and sulfide. Previous research with pure bacterial cultures has shown that addition of ferrous iron reduces the net rate of mercury methylation by decreasing the concentration of dissolved sulfide. To assess the possibility of using this approach to decrease net mercury methylation in restored and constructed wetlands, laboratory experiments were conducted by adding Hg(II) and Fe(II) to sediments collected from six sites in five estuarine wetlands. Addition of 30 mM (0.07 mmol g(-1) or 3.9 mg g(-1)) Fe(II) decreased net mercury methylation relative to that of unamended controls by a factor of 2.1-6.6. In all cases, the observed decrease in net mercury methylation was accompanied by a decrease in the concentrations of sulfide and filterable mercury in the water overlying the sediments. When iron was added to one of the sediment samples at doses that were small relative to the concentration of sulfide present, net mercury methylation either increased slightly or was unaffected. Comparison of the results to speciation model predictions suggests that dissolved reduced sulfur-containing species play a role in the formation of uncharged, bioavailable Hg complexes. Although further research is needed to determine the long-term effect of iron amendment, these results suggest that iron addition decreases mercury methylation in authentic wetland sediments.

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Year:  2005        PMID: 15884350     DOI: 10.1021/es049096d

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  11 in total

1.  Mercury methylation from unexpected sources: molybdate-inhibited freshwater sediments and an iron-reducing bacterium.

Authors:  Emily J Fleming; E Erin Mack; Peter G Green; Douglas C Nelson
Journal:  Appl Environ Microbiol       Date:  2006-01       Impact factor: 4.792

2.  The impact of acid mine drainage on the methylmercury cycling at the sediment-water interface in Aha Reservoir, Guizhou, China.

Authors:  Tianrong He; Yuzhen Zhu; Deliang Yin; Guangjun Luo; Yanlin An; HaiYu Yan; Xiaoli Qian
Journal:  Environ Sci Pollut Res Int       Date:  2014-12-09       Impact factor: 4.223

3.  Identification and prioritization of management practices to reduce methylmercury exports from wetlands and irrigated agricultural lands.

Authors:  Stephen A McCord; Wesley A Heim
Journal:  Environ Manage       Date:  2015-01-08       Impact factor: 3.266

4.  Biogeochemical controls on mercury methylation in the Allequash Creek wetland.

Authors:  Joel E Creswell; Martin M Shafer; Christopher L Babiarz; Sue-Zanne Tan; Abbey L Musinsky; Trevor H Schott; Eric E Roden; David E Armstrong
Journal:  Environ Sci Pollut Res Int       Date:  2017-05-13       Impact factor: 4.223

5.  Mercury methylation by dissimilatory iron-reducing bacteria.

Authors:  E J Kerin; C C Gilmour; E Roden; M T Suzuki; J D Coates; R P Mason
Journal:  Appl Environ Microbiol       Date:  2006-10-20       Impact factor: 4.792

6.  Mercury horizontal spatial distribution in paddy field and accumulation of mercury in rice as well as their influencing factors in a typical mining area of Tongren City, Guizhou, China.

Authors:  Jingjing Du; Fang Liu; Ling Zhao; Chong Liu; Zhaocong Fu; Ying Teng
Journal:  J Environ Health Sci Eng       Date:  2021-07-17

7.  Applications of organic and inorganic amendments induce changes in the mobility of mercury and macro- and micronutrients of soils.

Authors:  Mercedes García-Sánchez; Adéla Sípková; Jiřina Száková; Lukáš Kaplan; Pavla Ochecová; Pavel Tlustoš
Journal:  ScientificWorldJournal       Date:  2014-10-23

8.  Mackinawite (FeS) reduces mercury(II) under sulfidic conditions.

Authors:  Sharon E Bone; John R Bargar; Garrison Sposito
Journal:  Environ Sci Technol       Date:  2014-09-02       Impact factor: 9.028

9.  Global prevalence and distribution of genes and microorganisms involved in mercury methylation.

Authors:  Mircea Podar; Cynthia C Gilmour; Craig C Brandt; Allyson Soren; Steven D Brown; Bryan R Crable; Anthony V Palumbo; Anil C Somenahally; Dwayne A Elias
Journal:  Sci Adv       Date:  2015-10-09       Impact factor: 14.136

10.  Challenges and opportunities for managing aquatic mercury pollution in altered landscapes.

Authors:  Heileen Hsu-Kim; Chris S Eckley; Dario Achá; Xinbin Feng; Cynthia C Gilmour; Sofi Jonsson; Carl P J Mitchell
Journal:  Ambio       Date:  2018-03       Impact factor: 5.129

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