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PMS催化氧化解聚α-O-4模型化合物的研究
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作者 孙敬泽 王嘉楠 +1 位作者 马桥 宋峰 《现代化工》 CAS CSCD 北大核心 2024年第4期116-121,共6页
木质素是重要的天然可再生芳香族化合物,是潜在的化石燃料替代者,是新型能源和芳香原料的来源。首先制备了催化剂g-C_(3)N_(4)和NC-800,并利用XRD、XPS、SEM、N_(2)-TPD等表征方法对其进行表征。以过一氧硫酸盐(PMS)为氧化剂,在g-C_(3)N... 木质素是重要的天然可再生芳香族化合物,是潜在的化石燃料替代者,是新型能源和芳香原料的来源。首先制备了催化剂g-C_(3)N_(4)和NC-800,并利用XRD、XPS、SEM、N_(2)-TPD等表征方法对其进行表征。以过一氧硫酸盐(PMS)为氧化剂,在g-C_(3)N_(4)和NC-800的催化下解聚α-O-4型木质素模型化合物4-苄氧基苯酚。研究了催化剂在不同温度、时间下对4-苄氧基苯酚的解聚历程,结果表明,催化剂的比表面积越大、石墨N质量分数越高,模型化合物的解聚速率越高。提出了PMS氧化解聚α-O-4型木质素模型化合物的反应机理:活性氧自由基攻击模型化合物形成各种自由基,自由基进一步氧化形成单体产物。 展开更多
关键词 过一氧硫酸盐 4-苄基苯酚 化解聚 碳氮催化剂
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Heterogeneous catalytic activation of peroxymonosulfate for efficient degradation of organic pollutants by magnetic Cu^0/Fe_3O_4 submicron composites 被引量:10
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作者 聂刚 黄佳 +3 位作者 胡冶州 丁耀彬 韩小彦 唐和清 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第2期227-239,共13页
Magnetic Cu^0/Fe3O4 submicron composites were prepared using a hydrothermal method and used as heterogeneous catalysts for the activation of peroxymonosulfate(PMS) and the degradation of organic pollutants.The as-pr... Magnetic Cu^0/Fe3O4 submicron composites were prepared using a hydrothermal method and used as heterogeneous catalysts for the activation of peroxymonosulfate(PMS) and the degradation of organic pollutants.The as-prepared magnetic Cu^0/Fe3O4 submicron composites were composed of Cu^0 and Fe3O4 crystals and had an average size of approximately 220 nm.The Cu^0/Fe3O4 composites could efficiently catalyze the activation of PMS to generate singlet oxygen,and thus induced the rapid degradation of rhodamine B,methylene blue,orange Ⅱ,phenol and 4-chlorophenol.The use of0.1 g/L of the Cu^0/Fe3O4 composites induced the complete removal of rhodamine B(20 μmol/L) in15 min,methylene blue(20 μmol/L) in 5 min,orange Ⅱ(20 μmol/L) in 10 min,phenol(0.1mmol/L) in 30 min and 4-chlorophenol(0.1 mmol/L) in 15 min with an initial pH value of 7.0 and a PMS concentration of 0.5 mmol/L.The total organic carbon(TOC) removal higher than 85%for all of these five pollutants was obtained in 30 min when the PMS concentration was 2.5 mmol/L.The rate of degradation was considerably higher than that obtained with Cu^0 or Fe3O4 particles alone.The enhanced catalytic activity of the Cu^0/Fe3O4 composites in the activation of PMS was attributed to the synergistic effect of the Cu^0 and Fe3O4 crystals in the composites.Singlet oxygen was identified as the primary reactive oxygen species responsible for pollutant degradation by electron spin resonance and radical quenching experiments.A possible mechanism for the activation of PMS by Cu^0/Fe3O4 composites is proposed as electron transfer from the organic pollutants to PMS induces the activation of PMS to generate ^1O2,which induces the degradation of the organic pollutants.As a magnetic catalyst,the Cu^0/Fe3O4 composites were easily recovered by magnetic separation,and exhibited excellent stability over five successive degradation cycles.The present study provides a facile and green heterogeneous catalysis method for the oxidative removal of organic pollutants. 展开更多
关键词 Heterogeneous catalysis Magnetic Cu^0/Fe3O4 composite PEROXYMONOSULFATE Singlet oxygen Oxidative degradation
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