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MnCeOx/diatomite catalyst for persulfate activation to degrade organic pollutants

本站小编 Free考研/2020-04-17

文献详情
MnCeOx/diatomite catalyst for persulfate activation to degrade organic pollutants
文献类型:期刊
期刊名称:Journal of environmental sciences (China)影响因子和分区
年:2020
卷:89
页码:206-217
ISSN:1001-0742
关键词:Dyes and pharmaceutical pollutants,Hydroxyl functional group,MnCeO(x)/diatomite,Persulfate
摘要:Persulfate (PS)-based oxidation technologies are attracting increasing attentions in water treatment due to their high efficiency and stability. In this study, a novel diatomite supported MnCeOx composite (MnCeOx/diatomite) was prepared and characterized for activation of PS to degrade organic pollutants. Results indicated that diatomite not only dispersed MnCeOx and increased the specific surface area of catalyst, but also improved the low-valence metal site (Mn2+ and Ce3+) and reactive oxygen ...More
Persulfate (PS)-based oxidation technologies are attracting increasing attentions in water treatment due to their high efficiency and stability. In this study, a novel diatomite supported MnCeOx composite (MnCeOx/diatomite) was prepared and characterized for activation of PS to degrade organic pollutants. Results indicated that diatomite not only dispersed MnCeOx and increased the specific surface area of catalyst, but also improved the low-valence metal site (Mn2+ and Ce3+) and reactive oxygen species site (-OH) of MnCeOx, thus enhancing the activities of MnCeOx. MnCeOx/diatomite/PS showed high efficiency for multiple dyes and pharmaceutical pollutants. Constant rate (k) of MnCeOx/diatomite (kMnCeOx/diatomite) was three times higher than the sum of constant rate of MnCeOx (kMnCeOx) and constant rate of diatomite (kdiatomite). In addition, MnCeOx/diatomite showed wide pH application (5-9). Cl- and NO32- had no effect while SO42- and humid acid had slightly negative effects on MnCeOx/diatomite/PS system. Moreover, MnCeOx/diatomite showed good reusability and stability. Mechanism analyses indicated that electron transfer of Mn and Ce attributed to the activation of PS and oxygen to produce free radicals. SO4-, OH and O2- on the surface of catalyst were the main active free radicals to attack pollutants.Copyright ? 2019. Published by Elsevier B.V. ...Hide

DOI:10.1016/j.jes.2019.09.020
百度学术:MnCeOx/diatomite catalyst for persulfate activation to degrade organic pollutants
语言:外文
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Effects of light-dark cycles on photosynthetic bacteria wastewater treatment and valuable substances production.Zhi Ran, Yang Anqi, Zhang Guangming, et al. .Bioresource technology. 2019, 274, 496-501.
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