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壳聚糖包覆生物质废料基磁性水凝胶珠用于去除亚甲基蓝。

Chitosan coated biomass waste-based magnetic hydrogel beads for the removal of methylene blue.

机构信息

Department of Chemical Engineering, Konya Technical University, Campus, Konya, Turkey.

出版信息

Int J Phytoremediation. 2024;26(9):1500-1517. doi: 10.1080/15226514.2024.2328363. Epub 2024 Mar 15.

DOI:10.1080/15226514.2024.2328363
PMID:38488041
Abstract

Due to developing technology and increasing population, human needs have increased, and textile activities have gained momentum. Many synthetic dyestuffs are used to meet the needs in this field. In this study, a cheap, useful, innovative, environmentally friendly and sustainable adsorbent was developed for the removal of Methylene Blue(MB), which is one of the dyes that is harmful to the environment. In the cultivation of fruit trees, in addition to the product, very high amounts of by-products/waste (garbage, branches, bark, leaves, etc.) are produced. In this direction, fig tree wastes were immobilized with chitosan, made magnetic, and MB adsorption on the developed adsorbent was examined in a batch system. Glutaraldehyde was used as crosslinker. Characterization of synthesized glutaraldehyde cross-linked chitosan-coated magnetic vegetable waste composite beads (g-CMBW) was carried out by SEM, EDX, FTIR and XRD. In the study, the effects of temperature (25-55 °C), pH (3.0-8.0), initial MB concentration (10-250mg/L), contact time (5-360min) and the amount of adsorbent (2-10 g/L) on MB adsorption with g-CMBW were examined. The optimum conditions obtained were determined as pH 6.0, temperature 25 °C, adsorbent amount 6 g/L, and contact time 120 min. The maximum adsorption capacity in MB removal using g-CMBW composite beads was calculated as 103.1 mg/g according to the Langmuir isotherm model. The temperature studies showed that the adsorption capacity decreased with increasing temperature, showing that the system was exothermic. In light of these results, it was determined that there are new promising adsorbents of natural origin, with higher adsorption capacity, lower cost, and alternatives to commercially used adsorbents in the removal of MB from aqueous media.

摘要

由于技术的发展和人口的增加,人类的需求增加了,纺织活动也得到了发展。许多合成染料被用于满足这一领域的需求。在这项研究中,开发了一种廉价、有用、创新、环保和可持续的吸附剂,用于去除亚甲蓝(MB),这是一种对环境有害的染料之一。在果树种植中,除了产品外,还会产生非常多的副产品/废物(垃圾、树枝、树皮、树叶等)。在这方面,利用壳聚糖固定无花果树废物,使其具有磁性,并在批处理系统中研究了开发的吸附剂对 MB 的吸附作用。戊二醛用作交联剂。通过 SEM、EDX、FTIR 和 XRD 对合成的戊二醛交联壳聚糖包覆磁性植物废物复合珠(g-CMBW)进行了表征。在研究中,考察了温度(25-55°C)、pH(3.0-8.0)、初始 MB 浓度(10-250mg/L)、接触时间(5-360min)和吸附剂用量(2-10g/L)对 g-CMBW 吸附 MB 的影响。获得的最佳条件确定为 pH 6.0、温度 25°C、吸附剂用量 6g/L 和接触时间 120min。根据 Langmuir 等温线模型,使用 g-CMBW 复合珠去除 MB 时的最大吸附容量计算为 103.1mg/g。温度研究表明,吸附容量随温度升高而降低,表明该体系为放热体系。根据这些结果,可以确定存在具有更高吸附能力、更低成本的天然来源的新型有前途的吸附剂,并且是替代商业上用于从水介质中去除 MB 的吸附剂的替代品。

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