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利用 FeO-海泡石催化过硫酸盐降解莠去津:反应活性、机制和稳定性。

Atrazine degradation using FeO-sepiolite catalyzed persulfate: Reactivity, mechanism and stability.

机构信息

Southwest Jiaotong University, Chengdu, 610031, China; Yunnan Institute of Environmental Science, Kunming, 650034, China.

Southwest Jiaotong University, Chengdu, 610031, China.

出版信息

J Hazard Mater. 2019 Sep 5;377:62-69. doi: 10.1016/j.jhazmat.2019.05.029. Epub 2019 May 15.

DOI:10.1016/j.jhazmat.2019.05.029
PMID:31151041
Abstract

In this study, with sepiolite as a support, a novel magnetic FeO-sepiolite composite was fabricated by coprecipitation method. The characterization results reveal that the sepiolite support could anchor FeO nanoparticles with good dispersion. The composite was used as a catalyst to activate persulfate (PS) for atrazine (ATZ) degradation. 71.6% of ATZ and 20.9% of solution TOC could be removed after 60 min with 92 mmol/L of PS ([ATZ] = 10 mmol/L). Due to the good adsorption capacity of FeO-sepiolite composite toward ATZ, the degradation was considered to be facilitated by an adsorption process, since the adsorbed ATZ can be more easily transported to the active sites and be degraded in situ. Operation factors, including PS dose and solution pH, were investigated and found to be influential for the ATZ removal. The FeO-sepiolite composite maintained its catalytic activity and structural stability with negligible Fe leaching during the recycling batch experiments. The intermediate products were further identified and the possible transformation pathway was then proposed based on the results. The findings of this research promote the application of FeO-sepiolite composite as efficient and recyclable heterogeneous catalyst for organic degradation, and provide insights into the development of alternative catalysts with good adsorptive properties.

摘要

在这项研究中,我们以海泡石为载体,通过共沉淀法制备了一种新型的磁性 FeO-海泡石复合材料。表征结果表明,海泡石载体能够将 FeO 纳米颗粒固定在其表面,实现良好的分散。该复合材料被用作催化剂,用于激活过硫酸盐(PS)降解莠去津(ATZ)。在 PS([ATZ]=10mmol/L)浓度为 92mmol/L 时,经过 60min 反应后,ATZ 的去除率可达 71.6%,溶液总有机碳(TOC)的去除率为 20.9%。由于 FeO-海泡石复合材料对 ATZ 具有良好的吸附能力,因此降解过程被认为是通过吸附过程进行的,因为吸附的 ATZ 更容易被运输到活性位点并在原位降解。操作因素,包括 PS 剂量和溶液 pH 值,对 ATZ 的去除有影响。在循环批实验中,FeO-海泡石复合材料保持了其催化活性和结构稳定性,几乎没有 Fe 浸出。进一步鉴定了中间产物,并根据结果提出了可能的转化途径。这项研究的结果促进了 FeO-海泡石复合材料作为高效、可回收的非均相催化剂在有机降解中的应用,并为开发具有良好吸附性能的替代催化剂提供了思路。

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