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首页> 外文期刊>Biotechnology and bioprocess engineering >Adsorption of Methylene Blue Using Green Pea Peels (Pisum sativum): A Cost-effective Option for Dye-based Wastewater Treatment
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Adsorption of Methylene Blue Using Green Pea Peels (Pisum sativum): A Cost-effective Option for Dye-based Wastewater Treatment

机译:使用绿豌豆皮(Pisum sativum)吸附亚甲蓝:染料基废水处理的经济有效选择

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摘要

Methylene blue (MB), a common toxic dye, is largely discharged from dyeing processes for acrylic, nylon, silk, and woolen fabrics in textile industries. While application of conventional removal processes like chemical precipitation, ion exchange, commercial activated carbon adsorption, etc often become cost-prohibitive, the adsorption of MB by abundantly available green pea peel (GPP: Pisum sativum) derived and acid-treated carbon (GPP-AC) has proved to be a cost-attractive option in the present study. The physicochemical and morphological characteristics of GPP-AC were examined with the help of XRD, BET surface area, SEM, and Fourier transform infrared spectrophotometry ((FT-IR) analysis. The influences of such adsorption parameters as initial dye concentration, pH, contact time, adsorbent dosage, agitation speed, particle size, and temperature were evaluated and optimized. The equilibrium contact time for maximum adsorption of MB on to GPP-AC was found to be 7 h. The equilibrium data of the adsorption process were modeled by using the Langmuir, Freundlich, Temkin, and Dubinin-Raduskevich (D-R) isotherms. However, the adsorption equilibrium data were best described by the Langmuir Isotherm model, with a maximum adsorption capacity of 163.94 mg MB/g GPP-AC at 30℃.
机译:亚甲基蓝(MB)是一种常见的有毒染料,在纺织工业中,丙烯酸,尼龙,丝绸和羊毛织物的染色过程中会大量排出亚甲基蓝。虽然应用常规去除工艺(例如化学沉淀,离子交换,商业活性炭吸附等)通常会变得成本高昂,但大量可用的豌豆皮(GPP:Pisum sativum)衍生的酸处理碳(GPP-在本研究中,AC)被证明是一种具有成本吸引力的选择。借助X射线衍射,BET表面积,扫描电镜和傅立叶变换红外分光光度法(FT-IR)分析,研究了GPP-AC的理化和形态特征,并考察了吸附参数对初始染料浓度,pH,接触率的影响。评估并优化了吸附时间,吸附剂用量,搅拌速度,粒径和温度,发现MB在GPP-AC上的最大吸附平衡接触时间为7 h,并利用吸附动力学模型建立了吸附过程的平衡数据。 Langmuir,Freundlich,Temkin和Dubinin-Raduskevich(DR)等温线是最佳的,但Langmuir等温线模型最能描述吸附平衡数据,在30℃时最大吸附容量为163.94 mg MB / g GPP-AC。

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