首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Response surface methodology approach for optimization of simultaneous dye and metal ion ultrasound-assisted adsorption onto Mn doped Fe3O4-NPs loaded on AC: kinetic and isothermal studies
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Response surface methodology approach for optimization of simultaneous dye and metal ion ultrasound-assisted adsorption onto Mn doped Fe3O4-NPs loaded on AC: kinetic and isothermal studies

机译:响应面方法优化染料和金属离子超声辅助吸附到负载于AC的Mn掺杂Fe3O4-NPs上的动力学和等温研究

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摘要

In the present work, the usefulness of ultrasonic power as a dispersion and mixing tool to accelerate the adsorption of Safranin O (SO), methylene blue (MB), Pb2+ ions and Cr3+ ions onto the novel composite Fe3O4-NPs-AC adsorbent was investigated. This new material was extensively characterized and analyzed by different techniques such as XRD, FESEM, Raman spectroscopy and FT-IR. Central composite design (CCD) based on designed runs revealed that adsorbent mass, sonication time, MB concentration, SO concentration, Pb2+ ion and Cr3+ ion concentration and some of their interactions have significant contributions to the target compounds removal percentages. A combination of response surface methodology and Design-Expert software was used to qualify and estimate the influence and magnitude of each terms contribution to the response. An optimization study using the following investigated increments of the effective variables, adsorbent mass (0.01-0.03 g), sonication time (2-6 min), initial dye concentration (5-25 mg L-1), and initial metal ion concentration (20-60 mg L-1), revealed that fixing the experimental variables at 0.025 g of Mn-Fe3O4-NPs-AC, with a 3 min sonication time, and 20 mg L-1 of MB, 10 mg L-1 of SO, 38 mg L-1 of Pb2+ ions and 42 mg L-1 of Cr3+ ions at room temperature lead to the achievement of the best characteristics and performance. Conduction of 32 experiments according to the limitations of CCD and a subsequent analysis of variance (ANOVA) gave useful information about the significant and also approximate contributions of each term (main and interaction of variables) in an empirical equation for the expected response. The results indicate that the R-2 values are more than 0.988 and the adjusted R-2 values are in reasonable agreement with R-2. Under the optimal conditions, the MB, SO, Pb2+ ion and Cr3+ ion removal efficiencies reached 99.54%, 98.87%, 80.25% and 99.54% after 3 min, while their equilibrium data with high performance can be represented by Langmuir isotherms and a pseudo second-order kinetic model. The maximum adsorption capacities for the single component system, 229.4 mg g(-1) for MB, 159.7 mg g(-1) for SO, 139.5 mg g(-1) for Pb2+ ions and 267.4 mg g(-1) for Cr3+ ions, support the high efficiency of Mn-Fe3O4-NPs-AC as a new adsorbent.
机译:在目前的工作中,研究了超声功率作为分散和混合工具以促进番红O(SO),亚甲基蓝(MB),Pb2 +离子和Cr3 +离子在新型复合Fe3O4-NPs-AC吸附剂上的吸附的有用性。 。这种新材料已通过XRD,FESEM,拉曼光谱和FT-IR等不同技术进行了广泛表征和分析。基于设计运行的中央复合设计(CCD)显示,吸附剂质量,超声处理时间,MB浓度,SO浓度,Pb2 +离子和Cr3 +离子浓度及其相互作用对目标化合物的去除百分率有重要贡献。使用响应面方法和Design-Expert软件的组合来限定和估计每个术语对响应的影响和大小。使用以下调查变量进行的优化研究:有效变量,吸附剂质量(0.01-0.03 g),超声处理时间(2-6分钟),初始染料浓度(5-25 mg L-1)和初始金属离子浓度( 20-60 mg L-1),表明将实验变量固定为0.025 g Mn-Fe3O4-NPs-AC,超声处理时间为3分钟,以及20 mg L-1 MB,10 mg L-1 SO室温下38 mg L-1的Pb2 +离子和42 mg L-1的Cr3 +离子可实现最佳特性和性能。根据CCD的局限性进行了32次实验,随后进行了方差分析(ANOVA),提供了有关预期响应的经验方程式中每个项的显着和近似贡献(变量的主变量和相互作用)的有用信息。结果表明,R-2值大于0.988,调整后的R-2值与R-2合理吻合。在最佳条件下,MB,SO,Pb2 +离子和Cr3 +离子的去除效率在3分钟后达到99.54%,98.87%,80.25%和99.54%,而它们的高性能平衡数据可用Langmuir等温线和伪秒表示。阶动力学模型。单组分系统的最大吸附容量:MB为229.4 mg g(-1),SO为159.7 mg g(-1),Pb2 +离子为139.5 mg g(-1)和Cr3 +为267.4 mg g(-1)离子,支持Mn-Fe3O4-NPs-AC作为新型吸附剂的高效率。

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