西瓜皮活性炭吸附亚甲基蓝的研究

A. Garba, A. Tahir, A. K. Yusuf
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引用次数: 5

摘要

这项工作报告了利用西瓜皮的可持续废物作为批处理方式从水溶液中去除亚甲基蓝(MB)的潜在候选物的可能性。通过FTIR和SEM对该吸附剂进行了表征,FTIR分析表明,木质素、果胶和纤维素在3370 cm-1处有- oh拉伸振动峰,酯类、羧酸在1728 cm-1处有- c =O拉伸振动峰,醇类和羧酸在1350 ~ 1000 cm-1处有拉伸振动峰。羟基和羧基的可用性增强了低ph下对MB的高吸收率。原始吸附剂的SEM图像显示没有孔隙发育,但碳化后由于碳化和活化过程中挥发性基团的逸出而形成了孔隙。通过改变吸附剂用量、接触时间、溶液pH和初始染料浓度等吸附参数,采用批处理模式进行了吸附研究。发现吸附剂的最大吸附剂容量为0.4g, pH为4,初始MB浓度为20mg/L,接触时间为60 min,最大去除197.5 mg g-1。结果表明,西瓜皮是一种成功的农业废弃物,可用于可持续去除水溶液中的阳离子染料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption of Methylene Blue Using Activated Carbon Made from Watermelon Rinds
This work reports the possibility of using sustainable waste from watermelon rinds as a potential candidate for the removal of Methylene Blue (MB) from aqueous solution in batch mode. The adsorbent was characterized by FTIR and SEM where the FTIR analysis shows peaks at 3370 cm-1 that corresponds to –OH stretching vibration for lignin, pectin and cellulose, at 1728 cm-1 corresponds to –C=O stretching of esters, carboxylic acids, and as well peak in the range of 1350 – 1000 cm-1 which indicates stretching vibration of alcohols and carboxylic acids. The availability of hydroxyl and carboxyl groups enhance high MB uptake at lower pH. The SEM image of raw adsorbent shows no development of pores, but after carbonization the pores were developed due to escape of volatile groups during carbonization and activation process. Adsorption studies using batch mode were performed by varying adsorption parameters such as adsorbent dosage, contact time, pH of the solution and initial dye concentration. The maximum capacity of the adsorbent was found to be 0.4g dosage, pH 4, 20mg/L of initial MB concentration and 60 minutes contact time that removes maximum of 197.5 mg g-1. The results indicated that watermelon rind is a successful agricultural waste that could be utilized for sustainable removal of cationic dyes in aqueous solutions.
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