Maryam Moosavifar, Sara Akbari, Maryam Nejat Dehkordi
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To optimize the process, we conducted the effect of various parameters, including reaction time, catalyst amount, temperature, pH, isoelectric point, and 4-NP concentration on the photodegradation process. The optimal conditions for the removal of 4-NP were obtained in the presence of DAZY decorated with Fe and Ce under ultraviolet radiation, 40 µL of hydrogen peroxide, 0.03 g of photocatalyst, and a concentration of 5 × 10<sup>–4</sup> M 4-nitrophenol during 90 min. The mineralization of 4-nitrophenol (4-NP) was verified through COD experiments, resulting in a removal efficiency of 72.80%. Studying Hinshelwood’s equations revealed that the reaction rate was pseudo-first-order. The catalyst can be reused up to five times while maintaining its catalytic activity. Furthermore, the proposed degradation mechanism is introduced.</p></div>","PeriodicalId":639,"journal":{"name":"Journal of Inorganic and Organometallic Polymers and Materials","volume":"35 1","pages":"538 - 551"},"PeriodicalIF":3.9000,"publicationDate":"2024-08-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Optimizing Photocatalytic Efficiency and Durability of Zeolite-Based Catalysts via Cation Doping for Effective Dye Contaminant Removal\",\"authors\":\"Maryam Moosavifar, Sara Akbari, Maryam Nejat Dehkordi\",\"doi\":\"10.1007/s10904-024-03311-0\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Ce and Fe decorated on dealuminated zeolite Y (CFDDAZY) framework were prepared using isomorphous substitution method using dealumination treatment and impregnation methods to the formation of Si–O-Ce and Si–O-Fe bonds. For this purpose, we selected three distinct ratios of metals/zeolite, being 1:3, 1:10, and 1:20. An important outcome was achieved with a 1:20 ratio of metals to zeolite, providing strong evidence for the superiority of this configuration. The catalyst was characterized using XRD, FT-IR, UV–Vis, FESEM, TEM, EDX, and BET techniques. The prepared catalyst was evaluated in the degradation of 4-nitrophenol. To optimize the process, we conducted the effect of various parameters, including reaction time, catalyst amount, temperature, pH, isoelectric point, and 4-NP concentration on the photodegradation process. The optimal conditions for the removal of 4-NP were obtained in the presence of DAZY decorated with Fe and Ce under ultraviolet radiation, 40 µL of hydrogen peroxide, 0.03 g of photocatalyst, and a concentration of 5 × 10<sup>–4</sup> M 4-nitrophenol during 90 min. The mineralization of 4-nitrophenol (4-NP) was verified through COD experiments, resulting in a removal efficiency of 72.80%. Studying Hinshelwood’s equations revealed that the reaction rate was pseudo-first-order. The catalyst can be reused up to five times while maintaining its catalytic activity. 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引用次数: 0
摘要
我们采用同构取代法,通过脱铝处理和浸渍方法制备了装饰在脱铝沸石 Y(CFDDAZY)框架上的 Ce 和 Fe,从而形成了 Si-O-Ce 和 Si-O-Fe 键。为此,我们选择了三种不同的金属/沸石比例,分别为 1:3、1:10 和 1:20。金属与沸石的比例为 1:20,取得了重要成果,有力地证明了这种配置的优越性。使用 XRD、FT-IR、UV-Vis、FESEM、TEM、EDX 和 BET 技术对催化剂进行了表征。在降解 4-硝基苯酚的过程中对制备的催化剂进行了评估。为了优化过程,我们研究了各种参数对光降解过程的影响,包括反应时间、催化剂用量、温度、pH 值、等电点和 4-NP 浓度。在紫外线辐射、40 µL 过氧化氢、0.03 克光催化剂和 5 × 10-4 M 4-硝基苯酚浓度的条件下,用 Fe 和 Ce 修饰的 DAZY 在 90 分钟内去除 4-NP,获得了最佳条件。通过 COD 实验验证了 4-硝基苯酚(4-NP)的矿化效果,其去除率为 72.80%。研究 Hinshelwood 方程发现,反应速率为假一阶。在保持催化活性的前提下,催化剂可重复使用五次。此外,还介绍了拟议的降解机制。
Optimizing Photocatalytic Efficiency and Durability of Zeolite-Based Catalysts via Cation Doping for Effective Dye Contaminant Removal
Ce and Fe decorated on dealuminated zeolite Y (CFDDAZY) framework were prepared using isomorphous substitution method using dealumination treatment and impregnation methods to the formation of Si–O-Ce and Si–O-Fe bonds. For this purpose, we selected three distinct ratios of metals/zeolite, being 1:3, 1:10, and 1:20. An important outcome was achieved with a 1:20 ratio of metals to zeolite, providing strong evidence for the superiority of this configuration. The catalyst was characterized using XRD, FT-IR, UV–Vis, FESEM, TEM, EDX, and BET techniques. The prepared catalyst was evaluated in the degradation of 4-nitrophenol. To optimize the process, we conducted the effect of various parameters, including reaction time, catalyst amount, temperature, pH, isoelectric point, and 4-NP concentration on the photodegradation process. The optimal conditions for the removal of 4-NP were obtained in the presence of DAZY decorated with Fe and Ce under ultraviolet radiation, 40 µL of hydrogen peroxide, 0.03 g of photocatalyst, and a concentration of 5 × 10–4 M 4-nitrophenol during 90 min. The mineralization of 4-nitrophenol (4-NP) was verified through COD experiments, resulting in a removal efficiency of 72.80%. Studying Hinshelwood’s equations revealed that the reaction rate was pseudo-first-order. The catalyst can be reused up to five times while maintaining its catalytic activity. Furthermore, the proposed degradation mechanism is introduced.
期刊介绍:
Journal of Inorganic and Organometallic Polymers and Materials [JIOP or JIOPM] is a comprehensive resource for reports on the latest theoretical and experimental research. This bimonthly journal encompasses a broad range of synthetic and natural substances which contain main group, transition, and inner transition elements. The publication includes fully peer-reviewed original papers and shorter communications, as well as topical review papers that address the synthesis, characterization, evaluation, and phenomena of inorganic and organometallic polymers, materials, and supramolecular systems.