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Nano zero-valent iron aging interacts with the soil microbial community: a microcosm study

机译:纳米零价铁老化与土壤微生物群落相互作用:微观研究

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摘要

Nano zero-valent iron (nZVI) is a promising material for remediating metal(loid)-contaminated soils, but its aging in the soil ecosystem (unlike intensively studied aqueous systems) and interaction with soil microbial communities have not been resolved. In this study, three types of nZVI particles (bare nZVI, nZVI coated with carboxymethyl cellulose (CMC), or polyacrylic acid (PAA)) were incubated in soils with different microbial community compositions (realized by -radiation), and their aging was investigated using complementary microspectroscopic analyses. In addition, the soil microbial community in association with nZVI aging was assessed by employing DNA sequencing by using Illumina MiSeq. The results revealed a drastic morphological change of nZVI, which was transformed mainly into magnetite with a rough morphology. CMC coating decreased nZVI aging, whereas PAA coating accelerated it and facilitated magnetite, goethite and lepidocrocite formation. The -radiation induced soil microbial community change possibly slowed down nZVI oxidation (especially for bare nZVI). Iron-reducing/oxidizing bacteria (Bacillus, Shewanella, and Sediminibacterium) and fungal strains with a capacity for siderophore production may participate in nZVI aging. In return, nZVI presence and aging altered soil microbial communities. This study revealed the transformation of nZVI particles into Fe (oxy)hydroxides during aging in the soil ecosystem and their bilateral interactions with the soil microbial community, thus contributing to the assessment of nZVI use in soil remediation.
机译:纳米零价铁(NZVI)是一种用于修复金属(泡泡)的土壤的有希望的材料,但它在土壤生态系统中的衰老(与深入研究的水性系统不同)并没有解决与土壤微生物社区的相互作用。在该研究中,在具有不同微生物群落组合物的土壤中孵育三种类型的NZVI颗粒(裸NZVI,涂有羧甲基纤维素(CMC)的NZVI)或聚丙烯酸(PAA))(通过 - 分配实现),并研究了它们的衰老使用互补的微型光谱分析。此外,通过使用Illumina miseq使用DNA测序来评估与NZVI老化结合的土壤微生物群落。结果表明,NZVI的激烈形态变化,主要转化为具有粗糙的形态的磁铁矿。 CMC涂层减少了NZVI老化,而PAA涂层加速了它,促进磁铁矿,霉菌和鳞片形成。 - 分析诱导的土壤微生物群落变化可能减缓了NZVI氧化(特别是对于裸NZVI)。减少铁/氧化细菌(芽孢杆菌,肺乳氏菌和盐酸杆菌)和具有阳光生产能力的真菌菌株可能参与NZVI老化。作为回报,NZVI的存在和老化改变了土壤微生物社区。该研究显示,在土壤生态系统中老化的老化中NZVI颗粒转化为Fe(氧)氢氧化物及其与土壤微生物群落的双侧相互作用,从而有助于评估土壤修复的NZVI。

著录项

  • 来源
    《Environmental Science: Nano》 |2019年第4期|共18页
  • 作者单位

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

    Czech Acad Sci Inst Microbiol Videnska 1083 Prague 14220 4 Czech Republic;

    Czech Acad Sci Inst Microbiol Videnska 1083 Prague 14220 4 Czech Republic;

    Czech Acad Sci Inst Microbiol Videnska 1083 Prague 14220 4 Czech Republic;

    Czech Acad Sci Inst Phys Slovance 2 Prague 18221 8 Czech Republic;

    Czech Acad Sci Inst Geol Rozvojova 269 Prague 16500 Czech Republic;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

    Jiangxi Acad Sci Inst Biol Resources Jiangxi Engn &

    Technol Res Ctr Ecol Remediat Heav Nanchang 330096 Jiangxi Peoples R China;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Environm Geosci Kamycka 129 Prague 16500 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
  • 关键词

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