Q1 2026

In-situ carbon decoration of MgFe-layered double oxide for enhanced activation of peroxymonosulfate towards organic pollutant degradation

Qian Zhong · Jin Liu · Yuke Ouyang · Yaoyu Li · Lidong Kou · Zezhi Zhang · Yizhen Zhu · Chen Li
10.25259/ajc_1444_2025 385 المشاهدات 0 الاقتباسات
0
الاقتباسات
385
المشاهدات
الملخص


Peroxymonosulfate (PMS)-based advanced oxidation processes (AOPs) are the current trends for remediation of refractory organic pollutants. In this study, a carbon-decorated MgFe-layered double oxide (C/MgFe-LDO) was constructed by using Congo Red dye as a carbon precursor to modify the surface of MgFe-layered double hydroxides (MgFe-LDH), followed by calcination. The phase composition, microstructure, and chemical state of the catalyst was characterized in detail. Compared with pure MgFe-layered double oxide (MgFe-LDO), the optimal C/MgFe-LDO exhibited significantly enhanced PMS activation performances, achieving nearly full degradation of Acid Red 1 (AR1) in 60 min and a total organic carbon (TOC) removal efficiency of 83.0%. Additionally, the C/MgFe-LDO synthesized at 600°C demonstrated a PMS utilization efficiency of 90.2% in the solution, which was 11.8% higher than that of the undecorated MgFe-LDO. The enhanced catalytic performance was attributed to the larger specific surface area, higher electrical conductivity, and synergistic effects between carbon and the Fe
2+
/Fe
3+
redox cycle of the catalyst. The catalyst also showed good stability, recyclability, and applicability to complex water matrices as well as continuous-flow systems. This work provides a new approach towards green and efficient PMS-activating catalysts through structural engineering.

الاستشهاد بهذا المقال (APA)
Qian, Z., Jin, L., Yuke, O., Yaoyu, L., Lidong, K., Zezhi, Z., Yizhen, Z., Chen, L. (2026). In-situ carbon decoration of MgFe-layered double oxide for enhanced activation of peroxymonosulfate towards organic pollutant degradation. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_1444_2025
أبحاث ذات صلة
67
استشهاد
815
54
استشهاد
1,354
42
استشهاد
963
38
استشهاد
1,077
29
استشهاد
2,105
الوصول
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نُشر في
الرقم الدولي ISSN 1878-5352
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Natural Sciences
الناشر King Saud University / Elsevier
الدولة 🇸🇦 Saudi Arabia
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المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Jul 2026