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Adsorption of Neutral Red and Malachite Green onto Grapefruit Peel in Single and Binary Systems

机译:单和二元体系中性红和孔雀石绿对柚子皮的吸附

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摘要

This study characterized the properties of NaOH-modified grapefruit peel (MGP) and investigated its adsorption properties, specifically the adsorption of the synthetic dyes neutral red (NR) and malachite green (MG) onto MGP, in single and binary systems by means of batch techniques. The adsorption equilibrium data of NR onto MGP fit well with both the Langmuir and Koble-Corrigan models, while the Koble-Corrigan and Dubinin-Radushkevich models seemed to agree better with MG adsorption. The maximum equilibrium quantities of NR and MG from the Langmuir model were 640.3 and 314.9 mg/g at 298 K, respectively. The Elovich model was a better fit with the kinetic process, which suggested that ion exchange was one of the main mechanisms at work. The thermodynamic parameters of adsorption systems indicated spontaneous and endothermic processes. In the binary system experiments, NR and MG exhibited competitive adsorption. The quantity of MG adsorbed was more strongly influenced by NR, due to the higher affinity of MGP for the latter.
机译:这项研究表征了NaOH修饰的柚子皮(MGP)的特性,并研究了其吸附特性,特别是通过分批方式在单一和二元体系中对合成染料中性红(NR)和孔雀石绿(MG)的吸附。技术。 NR在MGP上的吸附平衡数据与Langmuir模型和Koble-Corrigan模型均非常吻合,而Koble-Corrigan和Dubinin-Radushkevich模型似乎与MG吸附更好地吻合。 Langmuir模型的NR和MG的最大平衡量在298 K时分别为640.3和314.9 mg / g。 Elovich模型更适合动力学过程,这表明离子交换是起作用的主要机制之一。吸附系统的热力学参数表明自发和吸热过程。在二元系统实验中,NR和MG表现出竞争性吸附。 MG吸附的MG的量受NR的影响更大,这是因为MGP对后者的亲和力更高。

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