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首页> 外文期刊>Environmental Science & Technology >Towards Universal Wavelength-Specific Photodegradation Rate Constants for Methyl Mercury in Humic Waters, Exemplified by a Boreal Lake-Wetland Gradient
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Towards Universal Wavelength-Specific Photodegradation Rate Constants for Methyl Mercury in Humic Waters, Exemplified by a Boreal Lake-Wetland Gradient

机译:朝着在腐殖质水中甲基汞的通用波长特定的光降解速率常数的变化,以北湖湿地梯度为例

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摘要

We report experimentally determined first-order rate constants of MeHg photolysis in three waters along a Boreal lake-wetland gradient covering a range of pH (3.8-6.6), concentrations of total organic carbon (TOC 17.S-81 mg L~(-1)), total Fe (0.8-2.1 mg L~(-1)), specific UV_(254 nm) absorption (3.3-4.2 L mg~(-1) m~(-1)) and TOC/TON ratios (24-67 g g~(-1)). Rate constants determined as a function of incident sunlight (measured as cumulative photon flux of photosynthetically active radiation, PAR) decreased in the order dystrophic lake > dystrophic lake/wetland > riparian wetland. After correction for light attenuation by dissolved natural organic matter (DOM), wavelength-specific (PAR: 400-700 nm, UVA: 320-400 nm and UVB: 280-320 nm) first-order photodegradation rate constants (k_(pd)) determined at the three sites were indistinguishable, with average values (±SE) of 0.0023 ± 0.0002, 0.10 ± 0.024 and 7.2 ± 1.3 m~2 E~(-1) for k_(pdPAR), k_(pdUVA), and k_(pdUVB), respectively. The relative ratio of k_(pdPAR), k_(pdUVA), and k_(pdUVB) was 1:43:3100. Experiments conducted at varying MeHg/TOC ratios confirm previous suggestions that complex formation with organic thiol groups enhances the rate of MeHg photodegradation, as compared to when O and N functional groups are involved in the speciation of MeHg. We suggest that if the photon fluxes of PAR, UVA, and UVB radiation are separately determined and the wavelength-specific light attenuation is corrected for, the first-order rate constants k_(pdPAR), k_(pdUVA), and k_(pdUVB) will be universal to waters in which DOM (possibly in concert with Fe) controls the formation of ROS, and the chemical speciation of MeHg is controlled by the complexation with DOM associated thiols.
机译:我们报告了实验确定的MeHg在三个水沿Boreal湖-湿地梯度覆盖pH范围(3.8-6.6),总有机碳浓度(TOC 17.S-81 mg L〜(- 1)),总铁(0.8-2.1 mg L〜(-1)),比UV_(254 nm)吸收(3.3-4.2 L mg〜(-1)m〜(-1))和TOC / TON比( 24-67 gg〜(-1))。速率常数作为入射阳光的函数(以光合有效辐射的累积光子通量,PAR来衡量),以营养不良湖>营养不良湖/湿地>河岸湿地的顺序降低。在通过溶解的天然有机物(DOM)校正光衰减后,特定波长(PAR:400-700 nm,UVA:320-400 nm和UVB:280-320 nm)一阶光降解速率常数(k_(pd) )在三个位点确定是无法区分的,k_(pdPAR),k_(pdUVA)和k_的平均值(±SE)为0.0023±0.0002、0.10±0.024和7.2±1.3 m〜2 E〜(-1)。 (pdUVB)。 k_(pdPAR),k_(pdUVA)和k_(pdUVB)的相对比为1:43:3100。在不同的MeHg / TOC比下进行的实验证实了先前的建议,即与O和N官能团参与MeHg的形成相比,与有机硫醇基团形成络合物可提高MeHg的光降解速率。我们建议,如果分别确定PAR,UVA和UVB辐射的光子通量并针对特定波长的光衰减进行校正,则一阶速率常数k_(pdPAR),k_(pdUVA)和k_(pdUVB)对于DOM(可能与Fe协同作用)控制ROS形成且MeHg的化学形态受与DOM相关的硫醇的络合作用控制的水而言,将是普遍的。

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  • 来源
    《Environmental Science & Technology 》 |2013年第12期| 6279-6287| 共9页
  • 作者单位

    Environmental Chemistry Department, IDAEA-CSIC, E-08034 Barcelona, Spain;

    Department of Forest Ecology and Management, Swedish University of Agricultural Sciences, SE-901 83 Umea, Sweden;

    Chemistry Department, Umea University, SE-901 87 Umea, Sweden;

    Environmental Chemistry Department, IDAEA-CSIC, E-08034 Barcelona, Spain;

    Environmental Chemistry Department, IDAEA-CSIC, E-08034 Barcelona, Spain;

    Chemistry Department, Umea University, SE-901 87 Umea, Sweden;

    Climate Change Research, Finnish Meteorological Institute, Helsinki, Finland;

    Department of Forest Ecology and Management, Swedish University of Agricultural Sciences, SE-901 83 Umea, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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