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从天然稻壳硅料到环境应用的纳米结构介孔材料的环保合成。

Eco-friendly synthesis of nanostructured mesoporous materials from natural source rice husk silica for environmental applications.

机构信息

CITeQ - CONICET - UTN, Maestro López y Cruz Roja Argentina, Ciudad Universitaria, 5016, Córdoba, Argentina.

出版信息

Environ Sci Pollut Res Int. 2021 May;28(19):23707-23719. doi: 10.1007/s11356-020-11043-0. Epub 2020 Oct 9.

DOI:10.1007/s11356-020-11043-0
PMID:33034854
Abstract

Nanostructured mesoporous materials of MCM-41 type were synthesized using a natural, non-toxic, and cheap source of silica from rice husk. Then, this pure silica was modified with several Fe loadings by a wet impregnation method. The chemical and physic properties of MCM-41 solids obtained were similar to those of MCM-41 synthesized from commercial silica by conventional method. Thus, all catalysts exhibited good structural regularity preserving the mesoporosity after the metal incorporation. The performance of the Fe/MCM-RHA composites as photo-Fenton heterogeneous catalysts was evaluated for photocatalytic degradation of different endocrine-disrupting chemicals (EDCs), such as herbicides (atrazine), and compounds derived from the plastic industry (bisphenol A) and the pharmaceutical industry (acetaminophen). The major photo-catalytic efficiency obtained (Fe/MCM-RHA(2.5)) is consistent with the highest presence of iron species, which are finely dispersed and stabilized on the silica structure, the isolated Fe ions being the accessible and active sites for the reaction. Finally, a cheaper solid arising from the valorization of residual biomass and with excellent photocatalytic performance for the degradation of EDCs (above 99%, 75%, and 60% for BPA, ATZ, and ACE respectively, in a reaction time of 240 min) was obtained.

摘要

采用天然、无毒且廉价的稻壳硅源合成了介孔材料 MCM-41 型纳米结构。然后,采用湿浸渍法用几种铁负载量对这种纯硅进行改性。通过常规方法从商业硅合成的 MCM-41 得到的 MCM-41 固体的化学和物理性质与纯硅相似。因此,所有催化剂在金属掺入后都表现出良好的结构规整性,保持了介孔性。作为光芬顿非均相催化剂,Fe/MCM-RHA 复合材料用于光催化降解不同的内分泌干扰化学品(EDCs),如除草剂(莠去津)和来自塑料工业(双酚 A)和制药工业(对乙酰氨基酚)的化合物。所获得的主要光催化效率(Fe/MCM-RHA(2.5))与铁物种的最高存在一致,铁物种在硅结构上得到很好的分散和稳定,孤立的 Fe 离子是反应的可及和活性位点。最后,得到了一种源自剩余生物质的增值且具有出色光催化性能的廉价固体,可用于 EDCs 的降解(在 240 分钟的反应时间内,BPA、ATZ 和 ACE 的降解率分别超过 99%、75%和 60%)。

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