Wei, Kajia et al. published their research in Environmental Science & Technology in 2019 |CAS: 321-28-8

The Article related to nickel carbon aluminum framework catalytic ozonation wastewater treatment, Placeholder for records without volume info and other aspects.HPLC of Formula: 321-28-8

On June 18, 2019, Wei, Kajia; Cao, Xiaoxin; Gu, Wancong; Liang, Peng; Huang, Xia; Zhang, Xiaoyuan published an article.HPLC of Formula: 321-28-8 The title of the article was Ni-Induced C-Al2O3-Framework (NiCAF) Supported Core-Multishell Catalysts for Efficient Catalytic Ozonation: A Structure-to-Performance Study. And the article contained the following:

During catalytic ozonation, Al2O3-supported catalysts usually have stable structures but relatively low surface activity, while carbon-supported catalysts are opposite. To encourage their synergisms, we designed a Ni-induced C-Al2O2-framework (NiCAF) and reinforced it with a Cu-Co bimetal to create an efficient catalyst (CuCo/NiCAF) with a core-multishell structure. The partial graphitization of carbon adjacent to Ni crystals formed a strong out-shell on the catalyst surface. The rate constant for total organic carbon removal of CuCo/NiCAF (0.172 ± 0.018 min-1) was 67% and 310% higher than that of Al2O3-supported catalysts and Al2O3 alone, resp. The metals on CuCo/NiCAF contributed to surface-mediated reactions during catalytic ozonation, while the embedded carbon enhanced reactions within the solid-liquid boundary layer and in the bulk solution Moreover, carbon embedment provided a 76% increase in ·OH-production efficiency and an 86% increase in organic-adsorption capacity compared to Al2O3-supported catalysts. During the long-term treatment of coal-gasification wastewater (∼5 m3 day-1), the pilot-scale demonstration of CuCo/NiCAF-catalyzed ozonation revealed a 120% increase in ozone-utilization efficiency (ΔCOD/ΔO3 = 2.12) compared to that of pure ozonation (0.96). These findings highlight catalysts supported on NiCAF as a facile and efficient approach to achieve both high catalytic activity and excellent structural stability, demonstrating that they are highly viable for practical applications. The experimental process involved the reaction of 1-Fluoro-2-methoxybenzene(cas: 321-28-8).HPLC of Formula: 321-28-8

The Article related to nickel carbon aluminum framework catalytic ozonation wastewater treatment, Placeholder for records without volume info and other aspects.HPLC of Formula: 321-28-8

Referemce:
Ether – Wikipedia,
Ether | (C2H5)2O – PubChem