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Reactivity, Selectivity, and Long-Term Performance of Sulfidized Nanoscale Zerovalent Iron with Different Properties

机译:具有不同性质的硫化纳米级零铁的反应性,选择性和长期性能

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摘要

Sulfidized nanoscale zerovalent iron (SNZVI) has desirable properties for in situ groundwater remediation. However, there is limited understanding of how the sulfidation type and particle properties affect the reactivity and selectivity of SNZVI toward groundwater contaminants, or how reactivity changes as the particles age. Here, SNZVI synthesized by either a one-step (SNZVI-1) or two-step (SNZVI-2) process were characterized, and the reactivity of both fresh and aged (Id to 60 d) nanoparticles was assessed. The measured S/Fe ratio was 5.4 +/- 0.5 mol % for SNZVI-1 and 0.8 +/- 0.1 mol % for SNZVI-2. XPS analysis indicates S2-, S-2(2-), and S-n(2-) species on the surface of both SNZVI-1 and SNZVI-2, while S-2(2-) is the dominant species inside of the SNZVI nanoparticles. SNZVI-1 particles were hydrophobic (contact angle = 103 +/- 3 degrees), while the other materials were hydrophilic (contact angles were 18 +/- 2 degrees and 36 +/- 3 degrees for NZVI and SNZVI-2, respectively). SNZVI-1, with greater S content and hydrophobicity, was less reactive with water than either NZVI or SNZVI-2 over a 60 d period, resulting in less H-2 evolution. It also had the highest reactivity with TCE and the lowest reactivity with nitrate, consistent with its higher hydrophobicity. In contrast, both NZVI and SNZVI-2 were reactive with both TCE and nitrate. Both types of SNZVI remained more reactive after aging in water over 60 d than NZVI. These data suggest that the properties of the SNZVI made from a one-step synthesis procedure may provide better reactivity, selectivity, and longevity than that made from a two-step process.
机译:硫化纳米级Zerovalent Iron(SnZVI)具有理想地下水修复的理想性质。然而,有限地了解硫化型和颗粒性质如何影响SnZVI对地下水污染物的反应性和选择性,或者反应性如何随着颗粒年龄的变化。这里,通过单步(SNZVI-1)或两步(SNZVI-2)工艺合成的SNZVI,并评估新鲜和老化(ID至60d)纳米颗粒的反应性。对于SnZVI-2的SNZVI-1和0.8 +/- 0.1mol%,测量的S / Fe比为5.4 +/- 0.5mol%。 XPS分析表明SNZVI-1和SNZVI-2的表面上的S2-,S-2(2-)和SN(2-)种,而S-2(2-)是SNZVI内部的主导物种纳米粒子。 SnZVI-1颗粒是疏水性的(接触角= 103 +/- 3度),而另一种材料是亲水的(接触角为18 +/- 2度,NZVI和SNZVI-2的36 +/- 3度) 。 SNZVI-1具有较高的S含量和疏水性,与60d期间的水中的水与水相比,与NZVI或SNZVI-2相比,导致较少的H-2进化。它还具有最高的反应性与TCE和硝酸盐的最低反应性,与其较高的疏水性一致。相比之下,NZVI和SnZVI-2都与TCE和硝酸盐反应。在60 d超过NZVI后,两种类型的SNZVI在水中衰老后仍然更反应。这些数据表明,由一步合成程序制成的SNZVI的性质可以提供比由两步过程所制作的更好的反应性,选择性和寿命。

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  • 来源
    《Environmental Science & Technology》 |2019年第10期|5936-5945|共10页
  • 作者单位

    Carnegie Mellon Univ Dept Civil & Environm Engn Pittsburgh PA 15213 USA|Carnegie Mellon Univ Ctr Environm Implicat NanoTechnol Pittsburgh PA 15213 USA;

    Univ Pittsburgh Dept Civil & Environm Engn Pittsburgh PA 15261 USA;

    Carnegie Mellon Univ Dept Civil & Environm Engn Pittsburgh PA 15213 USA;

    Carnegie Mellon Univ Dept Civil & Environm Engn Pittsburgh PA 15213 USA;

    Carnegie Mellon Univ Dept Civil & Environm Engn Pittsburgh PA 15213 USA;

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

    Carnegie Mellon Univ Dept Civil & Environm Engn Pittsburgh PA 15213 USA|Carnegie Mellon Univ Ctr Environm Implicat NanoTechnol Pittsburgh PA 15213 USA;

  • 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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