Performance Assessment: Influence of Sorbate-Sorbent Interphase Using Magnetite Modified Graphene Oxide to Improve Wastewater Treatment

IF 1 Q4 CHEMISTRY, MULTIDISCIPLINARY Indonesian Journal of Chemistry Pub Date : 2023-08-15 DOI:10.22146/ijc.82454
Olayinka Oluwaseun Oluwasina, Mochamad Zakki Fahmi, Olugbenga Oludayo Oluwasina
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Abstract

The adsorption of brilliant green onto magnetite-graphene oxide nanoparticles (MGONPs) from an aqueous solution was explored via batch experiments. The adsorption properties of MGONPs were carried out under various experimental conditions related to pH, contact time, adsorbent dose, temperature, and initial adsorbate concentration. The adsorption capacity of MGONPs and optimum pH were 54.57 mg g−1 and 6, respectively. Equilibrium was attained after 30 min, and the adsorption kinetics data best fitted the pseudo-second-order. The Freundlich isotherm best fits the equilibrium. Acetone was able to desorb the dye from the loaded adsorbent. Additionally, the newly developed adsorption attributes effective surface area (eSBET) and dimensionless preferential adsorption (qp) were more accurate than the conventional specific surface area (SBET). The adsorption capacity provides information about the sorbate-sorbent interface (q). The relevance and accuracy of the new parameters for future adsorption system design by correlation analysis were validated. This study confirms the successful modification of MGONPs for the sorption of the cationic dye brilliant green.
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性能评价:山梨酸盐-吸附剂界面对磁铁矿改性氧化石墨烯改善废水处理的影响
通过批量实验研究了磁性氧化石墨烯纳米颗粒(MGONPs)对水溶液中亮绿的吸附性能。研究了MGONPs在pH、接触时间、吸附剂剂量、温度和初始吸附浓度等条件下的吸附性能。MGONPs的吸附量和最佳pH分别为54.57 mg g−1和6。30 min后达到平衡,吸附动力学数据最符合准二级。Freundlich等温线最符合平衡。丙酮能够从负载的吸附剂上解吸染料。此外,新建立的吸附属性有效表面积(eSBET)和无量纲优先吸附(qp)比传统的比表面积(SBET)更准确。吸附量提供了山梨酸酯-吸附剂界面的信息(q)。通过相关分析验证了新参数的相关性和准确性,为未来的吸附系统设计提供了依据。本研究证实了MGONPs对阳离子染料艳绿的吸附改性成功。
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来源期刊
Indonesian Journal of Chemistry
Indonesian Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
2.30
自引率
11.10%
发文量
106
审稿时长
15 weeks
期刊介绍: Indonesian Journal of Chemistry is a peer-reviewed, open access journal that publishes original research articles, review articles, as well as short communication in all areas of chemistry, including educational chemistry, applied chemistry, and chemical engineering.
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