Optimization of Methylene Blue Dye Adsorption in Fixed Bed Column Packed with Tea Waste via Response Surface Methodology

Novi Sylvia, R. Dewi, Z. Zulnazri, Hendi Setiawan, Dinda Humaira, Mutia Reza
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Abstract

Tea waste is a low-cost alternative material for making adsorbent to remove methylene blue from synthetic dye wastewater perpetually. Optimization of the adsorbent process utilized Response Surface Methodology (RSM) and a continuously operating system in a fixed bed column. The independent variables in the research are X1 (bed height), X2 (contact time), and X3 (flow rate). The dependent variable is Y1 (removal efficiency) with a matrix design by Box-Behnken. The optimum condition of methylene blue (MB) B removal was found at X1=16 cm, X2=90 min, and X3=4 L/min with an adsorption efficiency of 90.45%. After the activation and adsorption of MB dye, the complete FTIR spectrum shows a distinct peak at 2933.7 cm-1. The results of the EDX analysis performed on tea waste reveal the presence of nitrogen (element N) following the adsorption process. This observation strongly suggests that the tea waste has effectively absorbed MB, as nitrogen is a constituent element found in the molecular structure of MB.
通过响应面方法优化茶叶废弃物填料固定床色谱柱对亚甲蓝染料的吸附效果
茶叶废料是一种低成本的吸附剂替代材料,可用于永久去除合成染料废水中的亚甲基蓝。吸附剂工艺的优化采用了响应面方法(RSM)和固定床柱中的连续运行系统。研究中的自变量为 X1(床层高度)、X2(接触时间)和 X3(流速)。因变量为 Y1(去除效率),采用 Box-Behnken 矩阵设计。在 X1=16 厘米、X2=90 分钟、X3=4 升/分钟的条件下,亚甲基蓝(MB)B 的去除率为 90.45%。在活化和吸附 MB 染料后,完整的傅立叶变换红外光谱在 2933.7 cm-1 处显示出一个明显的峰值。对茶叶废料进行的电离辐射 X 分析结果表明,在吸附过程中存在氮(N 元素)。这一观察结果有力地表明,茶叶废料有效地吸收了甲基溴,因为氮是甲基溴分子结构中的一种组成元素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
17 weeks
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