Investigation of Reactive Red 198 Dye Removal by Chitosan from Aqueous Solution

IF 0.5 4区 农林科学 Q4 FISHERIES Israeli Journal of Aquaculture-bamidgeh Pub Date : 2023-10-11 DOI:10.46989/001c.88510
Hamiyet Ö. Carbaş, Ali E. Kadak, Aygül Küçükgülmez, Osman Gülnaz, Mehmet Çelik
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Abstract

This study used chitosan, a biopolymer with high adsorption capacity obtained from shrimp shells, to remove Reactive Red 198 dye from water. The effects of pH, temperature, dye concentration, and particle size on adsorption were investigated. The optimum pH level for the adsorption was determined as 5. The effect of the temperature was found to be adverse, and it was observed that the adsorption capacity of chitosan decreases as the temperature increases. Considering the effect of the initial dye concentration, the adsorption values of under-size chitosan (passed through a 150-mesh sieve) and over-size chitosan (retained on a 150-mesh sieve) at 200 mg/L dye concentration were 197.38 and 196.22 mg/g, respectively. At 100 mg/L dye concentration, these values were 97.41 and 96.10 mg/g, respectively. Adhesion of the Reactive Red 198 was easier because the adsorption surface area expanded with the reduction of the particle size of the chitosan. According to the results of the study, it was seen that the isotherm model of adsorption is a suitable monolayer for the Langmuir isotherm model. Langmuir isotherm’s maximum adsorption capacity (Qmax) was calculated as 500 mg/g. The kinetic model was in line with the pseudo-second-order kinetic model. The FTIR spectra of the chitosan before and after adsorption showed that the adsorption is indeed chemical. Furthermore, SEM results demonstrated that the adsorption was more efficient due to the fibrous and porous structure of the chitosan.
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壳聚糖去除活性红198染料的研究
以虾壳为原料制备的高吸附量生物聚合物壳聚糖为材料,对水中活性红198染料进行了脱除研究。考察了pH、温度、染料浓度和粒径对吸附的影响。确定了吸附的最佳pH为5。温度的影响是不利的,壳聚糖的吸附量随着温度的升高而降低。考虑初始染料浓度的影响,在200 mg/L染料浓度下,小粒径壳聚糖(通过150目筛)和超大粒径壳聚糖(保留150目筛)的吸附值分别为197.38和196.22 mg/g。在100 mg/L染料浓度下,这些值分别为97.41和96.10 mg/g。随着壳聚糖粒径的减小,吸附表面积的增大,使活性红198更易于吸附。根据研究结果,吸附等温线模型是Langmuir等温线模型的合适单层。Langmuir等温线的最大吸附量(Qmax)为500 mg/g。动力学模型符合拟二级动力学模型。壳聚糖吸附前后的红外光谱分析表明,壳聚糖的吸附确实是化学吸附。此外,扫描电镜结果表明,由于壳聚糖的纤维和多孔结构,其吸附效率更高。
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来源期刊
CiteScore
0.90
自引率
16.70%
发文量
49
审稿时长
3 months
期刊介绍: Information not localized
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