活性生物吸附剂吸附去除纺织废水中直接黄26染料的动力学及等温分析。

IF 2 3区 工程技术 Q2 ANATOMY & MORPHOLOGY Microscopy Research and Technique Pub Date : 2024-12-02 DOI:10.1002/jemt.24760
Mirza Nadeem Ahmad, Sohail Nadeem, Mohsin Javed, Ammar Zidan, Muhammad Naveed Anjum, Muhammad Fayyaz Farid, Ali Bahadur, Shahid Iqbal, Sajid Mahmood, Abd-ElAziem Farouk, Salman Aloufi
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引用次数: 0

摘要

由于近年来广泛使用,合成染料可能难以去除并造成健康问题。生物吸附剂被证明是一种低成本和可持续的染料去除方法。本研究以甘蔗渣为原料,从纺织废水中提取直黄26。采用丙酸处理蔗渣,提高蔗渣的吸附能力,采用0.25 mm的粒径进行进一步的研究,并通过BET分析证实了这一点。制备浓度为10 ~ 100ppm的直接黄26染料标准溶液,用紫外可见分光光度计记录吸光度。通过对不同参数(染料浓度、生物吸附剂剂量、pH、时间、粒径)的优化,发现在pH 3、接触时间120 min、粒径0.25 mm、高吸附剂、低染料溶液浓度条件下,染料去除率最大可达89%。吸附等温线和Freundlich等温线揭示了准一级吸附过程。
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Kinetic and Isothermal Analysis of the Adsorptive Elimination of Direct Yellow 26 Dye Utilizing Activated Bioadsorbent From Textile Effluent.

Due to their widespread usage in recent years, synthetic dyes may be difficult to remove and pose a health concern. Bioadsorbents proved a low-cost and sustainable method for dye removal. In this study, straight yellow 26 is extracted from textile effluent using sugarcane bagasse. Sugarcane bagasse was treated with propionic acid to enhance the adsorption capability and 0.25 mm particle size was used for further studies which was confirmed by BET analysis. Standard solutions of direct yellow 26 dye were prepared from 10 to 100 ppm concentrations and absorbance was recorded with the help of a UV visible spectrophotometer. After optimizing different parameters (concentration of dye and bioadsorbent dose, pH, time, and particle size), the studies explored that the maximum dye removal percentage was 89% obtained at pH 3, contact time 120 min, particle size 0.25 mm, high adsorbent, and low concentration of dye solution. The kinetic studies were also employed to comprehend the adsorption isotherm and Freundlich isotherm that revealed the pseudo-first-order adsorption process.

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来源期刊
Microscopy Research and Technique
Microscopy Research and Technique 医学-解剖学与形态学
CiteScore
5.30
自引率
20.00%
发文量
233
审稿时长
4.7 months
期刊介绍: Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.
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