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Thallium Sorption onto Manganese Oxides

机译:hall在锰氧化物上的吸附

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摘要

The sorption of thallium (Tl) onto manganese (Mn) oxides critically influences its environmental fate and geochemical cycling and is also of interest in water treatment. Combined quantitative and mechanistic understanding of Tl sorption onto Mn oxides, however, is limited. We investigated the uptake of dissolved Tl(I) by environmentally relevant phyllo- and tectomanganates and used X-ray absorption spectroscopy to determine the oxidation state and local coordination of sorbed Tl. We show that extremely strong sorption of Tl onto vacancy-containing layered delta-MnO2 at low dissolved Tl(I) concentrations (log K-d >= 7.4 for <= 10(-8) M Tl(I); K-d in (L/kg)) is due to oxidative uptake of Tl and that less specific nonoxidative Tl uptake only becomes dominant at very high Tl(I) concentrations (>10(-6) M). Partial reduction of delta-MnO2 induces phase changes that result in inhibited oxidative Tl uptake and lower Tl sorption affinity (log K-d 6.2-6.4 at 10(-8) M Tl(I)) and capacity. Triclinic birnessite, which features no vacancy sites, and todorokite, a 3 x 3 tectomanganate, bind Tl with lower sorption affinity than delta-MnO2, mainly as hydrated Tl+ in interlayers (triclinic birnessite; log K-d 5.5 at 10(-8) M Tl(I)) or tunnels (todorokite). In cryptomelane, a 2 x 2 tectomanganate, dehydrated Tl+ replaces structural K+. The new quantitative and mechanistic insights from this study contribute to an improved understanding of the uptake of Tl by key Mn oxides and its relevance in natural and engineered systems.
机译:T(Tl)在锰(Mn)氧化物上的吸附会严重影响其环境命运和地球化学循环,并且在水处理中也很受关注。然而,对Tl在Mn氧化物上的吸附的定量和机理的综合理解是有限的。我们调查了与环境有关的叶绿素和tectoman锰酸盐对溶解的Tl(I)的吸收,并使用X射线吸收光谱法确定了吸附的Tl的氧化态和局部配位。我们表明,在低溶解的Tl(I)浓度下,Tl对含空位的层状MnO2的吸附非常强(对于<= 10(-8)M Tl(I),log Kd> = 7.4; Kd in(L / kg ))是由于T1的氧化摄取所致,而特异性较低的非氧化T1摄取仅在非常高的Tl(I)浓度(> 10(-6)M)下占主导地位。 δ-MnO2的部分还原引起相变,其导致抑制的氧化T1吸收和较低的T1吸附亲和力(在10(-8)M Tl(I)处的log K-d 6.2-6.4)和容量。三斜水钠锰矿(没有空位)和3k 3锰锰矿的辉锰矿结合Tl的吸附亲和力比δ-MnO2低,主要是夹层中的水合Tl +(三斜水钠锰矿;在10(-8)M Tl下记录Kd 5.5 (I))或隧道(Todorokite)。在隐锰烷中,脱水的Tl + 2 x 2钛锰酸锰代替结构K +。这项研究提供了新的定量和机理方面的见解,有助于人们更好地理解主要锰氧化物对Tl的吸收及其在天然和工程系统中的相关性。

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  • 来源
    《Environmental Science & Technology》 |2019年第22期|13168-13178|共11页
  • 作者单位

    Swiss Fed Inst Aquat Sci & Technol Eawag Ueberlandstr 133 CH-8600 Dubendorf Switzerland|Swiss Fed Inst Technol Inst Biogeochem & Pollutant Dynam CH-8092 Zurich Switzerland;

    Univ Lausanne Fac Geosci & Environm Inst Earth Surface Dynam CH-1015 Lausanne Switzerland;

    Swiss Fed Inst Aquat Sci & Technol Eawag Ueberlandstr 133 CH-8600 Dubendorf Switzerland;

  • 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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