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氧化铜@碳纤维作为一种高效过一硫酸盐催化剂,用于减轻超滤过程中的有机物污染。

CuO@carbon nanofiber as an efficient peroxymonosulfate catalyst for mitigation of organic matter fouling in the ultrafiltration process.

机构信息

School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan 250101, PR China; Resources and Environment Innovation Institute, Shandong Jianzhu University, Jinan 250101, PR China.

School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan 250101, PR China.

出版信息

J Colloid Interface Sci. 2022 Nov 15;626:1028-1039. doi: 10.1016/j.jcis.2022.07.002. Epub 2022 Jul 6.

Abstract

Persulfate oxidation has been increasingly integrated with membrane separation for water purification, whereas the oxidizing ability of persulfate is relatively limited, and appropriate activation methods are urgently required. In this work, a novel catalyst of carbon nanofiber (CNF) supported CuO (CuO@CNF) was synthesized for peroxymonosulfate (PMS) activation. The micro-morphology showed that CuO nanoparticles were well dispersed on the CNF support, which solved the agglomeration problem of nanoparticles and improved the catalytic ability. Furtherly, PMS oxidation activated by CuO@CNF was proposed as a pre-processing means for improving ultrafiltration (UF) water purification efficiency and mitigating membrane fouling. The prepared CuO@CNF was more efficient than individual CNF and CuO in activating PMS for the reduction of various typical natural organic matter, improving permeation flux, and mitigating membrane fouling. The fouling control efficiencies were also verified by characterizing the membrane surface functional groups. The CuO@CNF catalyst could signally promote the oxidative capacity by generating a series of reactive oxygen species, thus enhancing the removal of organics with varying species and molecular weight ranges in surface water. With respect to the fouling condition, the specific permeation flux after filtration was improved from 0.25 to 0.61, with the removal rate of reversible fouling resistance reached 89.6%. The fouling mechanism was apparently altered, with both standard and complete blocking dominated throughout the filtration process. The findings are beneficial for the development of new strategies to improve membrane-based water purification efficiency.

摘要

过硫酸盐氧化已越来越多地与膜分离技术结合用于水净化,但过硫酸盐的氧化能力相对有限,因此迫切需要适当的激活方法。在这项工作中,合成了一种新型的碳纤维(CNF)负载氧化铜(CuO@CNF)催化剂用于过一硫酸盐(PMS)的活化。微观形貌表明,CuO 纳米颗粒很好地分散在 CNF 载体上,解决了纳米颗粒的团聚问题,提高了催化能力。进一步提出了用 CuO@CNF 激活过硫酸盐(PMS)作为预处理手段,以提高超滤(UF)水净化效率并减轻膜污染。与单独的 CNF 和 CuO 相比,制备的 CuO@CNF 在活化 PMS 以减少各种典型天然有机物、提高渗透通量和减轻膜污染方面更有效。还通过对膜表面官能团进行表征验证了污垢控制效率。CuO@CNF 催化剂可以通过产生一系列活性氧物质显著提高氧化能力,从而增强去除地表水不同种类和分子量范围的有机物。对于污染情况,过滤后的特定渗透通量从 0.25 提高到 0.61,可逆污染阻力的去除率达到 89.6%。污染机制明显改变,过滤过程中主要是标准堵塞和完全堵塞。这些发现有利于开发提高基于膜的水净化效率的新策略。

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