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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Nitrogen and sulfur co-doped CNT-COOH as an efficient metal-free catalyst for the degradation of UV filter BP-4 based on sulfate radicals
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Nitrogen and sulfur co-doped CNT-COOH as an efficient metal-free catalyst for the degradation of UV filter BP-4 based on sulfate radicals

机译:氮和硫共掺杂的CNT-COOH是一种有效的无金属催化剂,可降解基于硫酸根的UV过滤器BP-4

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By using CNTs functionalized by oxygenic functional groups ( COOH or OH) as the carbon source, novel catalysts of nitrogen (N) and sulfur (S) co-doped multi-walled carbon nanotubes (CNTs) were prepared for the first time by thermal decomposition. The obtained CNTs were characterized by SEM, TEM, BET, XPS, XRD, FT-IR and Raman spectroscopy. Additionally, the new material was used as a catalyst for the activation of peroxymonosulfate (PMS) for the degradation of benzophenone-4 (BP-4). Results indicated that the COOH group plays an important role in the S doping process. Moreover, binary (N and S)-doped CNT-COOH (NS-CNT-COOH) exhibited a notably enhanced catalytic activity towards PMS for degrading BP-4. This activity level was approximately five-fold greater than that of singly (N)-doped CNT-COOH and binary (N and S)-doped CNT, and it even exceeded that of the metal catalyst CuFe2O4. The enhanced catalytic performance was attributed to the active sites generated by the introduced pyridinic and pyrrolic N atoms and thiophenic S atoms. The effects of various factors on the catalytic activity of NS-CNT-COOH were studied. Results revealed that the degradation efficiency of BP-4 increased with catalyst load, oxidant concentration and reaction temperature. In contrast, NS-CNT-COOH exhibited no remarkable catalytic activity towards peroxodisulfate (PDS) and H2O2. In the case of the NS-CNT-COOH/PMS system, a possible pathway for BP-4 degradation was proposed and based on detected intermediates. The mechanism was justified by theoretical calculations of the frontier electron densities, which have not been reported previously. Furthermore, mineralization, toxicity, stability and reusability tests suggested that the developed catalyst, NS-CNT-COOH, holds promise for practical application. (C) 2016 Elsevier B.V. All rights reserved.
机译:以含氧官能团(COOH或OH)官能化的碳纳米管为碳源,通过热分解首次制备了氮(N)和硫(S)共掺杂的多壁碳纳米管的新型催化剂。 。所得的CNT通过SEM,TEM,BET,XPS,XRD,FT-IR和拉曼光谱进行表征。此外,新材料还用作过氧化单硫酸盐(PMS)活化的催化剂,以降解二苯甲酮4(BP-4)。结果表明,COOH基团在S掺杂过程中起着重要作用。此外,二元(N和S)掺杂的CNT-COOH(NS-CNT-COOH)对于PMS降解BP-4表现出明显增强的催化活性。该活性水平比单(N)掺杂的CNT-COOH和双(N和S)掺杂的CNT的活性水平高约五倍,甚至超过了金属催化剂CuFe2O4的活性水平。增强的催化性能归因于引入的吡啶和吡咯N原子和噻吩S原子产生的活性位。研究了各种因素对NS-CNT-COOH催化活性的影响。结果表明,BP-4的降解效率随催化剂负载量,氧化剂浓度和反应温度的增加而增加。相反,NS-CNT-COOH对过二硫酸盐(PDS)和H2O2没有明显的催化活性。对于NS-CNT-COOH / PMS系统,基于检测到的中间体,提出了BP-4降解的可能途径。前沿电子密度的理论计算证明了该机理的正确性,此前尚未报道过。此外,矿化,毒性,稳定性和可重复使用性测试表明,开发的催化剂NS-CNT-COOH具有实际应用前景。 (C)2016 Elsevier B.V.保留所有权利。

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