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Biochar supported sulfide-modified nanoscale zero-valent iron for the reduction of nitrobenzene

机译:Biochar负载的硫化物修饰的纳米零价铁用于还原硝基苯

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Sulfide-modified nanoscale zerovalent iron (S-nZVI) was effectively utilized for the reduction of various contaminants, despite its applicability being limited due to agglomeration, oxidation and electron loss. In this study, biochar (BC)-supported S-nZVI was prepared to enhance the reactivity of S-nZVI for nitrobenzene (NB) reduction. Scanning electron microscopy images showed that the S-nZVI particles were well-dispersed on the BC surface as well as in the channels. NB removal and aniline formation could be significantly enhanced by using S-nZVI@BC, as compared to S-nZVI and blank BC. NB removal by S-nZVI@BC followed the pseudo second-order kinetics model and Langmuir isotherm model, suggesting hybrid chemical reaction-sorption was involved. Furthermore, a possible reaction mechanism for enhanced NB removal by S-nZVI@BC was proposed, including chemical adsorption of NB onto S-nZVI@BC, direct reduction by S-nZVI and enhanced electron transfer. The high reducibility of S-nZVI@BC as well as its excellent antioxidation ability and reusability demonstrated its promising prospects in remediation applications.
机译:硫化物改性的纳米级零价铁(S-nZVI)被有效地用于减少各种污染物,尽管由于结块,氧化和电子损失而限制了其适用性。在这项研究中,制备了生物炭(BC)-支持的S-nZVI,以增强S-nZVI对硝基苯(NB)还原的反应性。扫描电子显微镜图像显示,S-nZVI颗粒很好地分散在BC表面以及通道中。与S-nZVI和空白BC相比,使用S-nZVI @ BC可以显着提高NB的去除和苯胺的形成。通过S-nZVI @ BC去除NB遵循伪二级动力学模型和Langmuir等温模型,表明涉及杂化化学反应吸附。此外,提出了一种可能的反应机理,以提高S-nZVI @ BC去除NB的能力,包括将NB化学吸附到S-nZVI @ BC上,通过S-nZVI直接还原和增强电子转移。 S-nZVI @ BC的高还原性以及出色的抗氧化能力和可重复使用性证明了其在修复应用中的广阔前景。

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