椰壳颗粒活性炭吸附多菌灵:优化及热力学研究

I. R. Almeida, Salatiel Wohlmuth da Silva, Lígia Conceição Tavares, A. D. Benetti
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引用次数: 0

摘要

通过去离子水批量试验,研究了杀菌剂多菌灵(CBZ)在椰壳颗粒活性炭(GAC)上的吸附性能。通过对活性炭质量、温度和接触时间的变化,考察了活性炭吸附CBZ的最佳条件。采用响应面法(RSM)寻找最佳吸附条件,优化后续试验。采用范霍夫方法进行了热力学分析。GAC用量为10 mg,温度为25℃和30℃时,对杀菌剂的吸附效果较好。Freundlich等温线最适合化合物的吸附。Freundlich强度参数的结果与自发变化的ΔG值形成对比。CBZ在GAC上的吸附以物理吸附为主。这是一个自发的放热过程,减少了吸附剂/溶液界面的无序程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CARBENDAZIM ADSORPTION ON GRANULAR ACTIVATED CARBON OF COCONUT SHELL: OPTIMIZATION AND THERMODYNAMICS
The adsorption of the fungicide Carbendazim (CBZ) on granular activated carbon (GAC) of coconut shell was investigated through batch tests in deionized water. The most favorable conditions for the adsorption of CBZ were examined through the variation of the mass of GAC, temperature, and contact time. The Response Surface Methodology (RSM) was applied, seeking the best adsorption condition to optimize future tests. A thermodynamic analysis was carried out using the Van't Hoff method. The tests with the dosage of 10 mg of GAC and temperatures of 25º C and 30º C showed higher adsorption of the fungicide. The Freundlich isotherm adjusted best to the adsorption of the compound. The Freundlich intensity parameter had a result that contrasted with the value of ΔG regarding a spontaneous change. Physisorption predominates the adsorption of CBZ on GAC. It is an exothermic and spontaneous process that reduces the degree of disorder of the adsorbent/solution interface.
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