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双金属 Fe/Al-MOF 用于吸附去除多种染料:批处理和混合吸附剂-河流砂柱研究的优化和建模及其在纺织工业废水中的应用。

Bimetallic Fe/Al-MOF for the adsorptive removal of multiple dyes: optimization and modeling of batch and hybrid adsorbent-river sand column study and its application in textile industry wastewater.

机构信息

School of Environmental Science and Engineering, Indian Institute of Technology, Kharagpur, India.

IPE Global Limited, New Delhi, India.

出版信息

Environ Sci Pollut Res Int. 2022 Aug;29(37):56249-56264. doi: 10.1007/s11356-022-19686-x. Epub 2022 Mar 25.

Abstract

Bimetallic metal organic framework (MOF) has garnered interest over the years with its applications in industrial wastewater treatment. In this work, Fe-Al-1,4-benzene-dicarboxylic acid (FeAl(BDC)) MOF was synthesized, and adsorptive removal of Rhodamine B dye in batch and unique hybrid FeAl (BDC)-river sand fixed-bed column was studied. The experimental data from the batch studies corroborated well with the pseudo-second-order (PSO) (R: 0.97) and Freundlich adsorption isotherm models (R: 0.98) and achieved a maximum adsorption capacity of 48.59 mg/g in 90 min. Furthermore, a fixed-bed column study was conducted to assess the effect of varying flow rate (2, 5, 8 mL/min), bed height (5, 9, 13 cm), and feed concentration (10, 20, 30 mg/L) on the adsorption performance of FeAl(BDC) in continuous mode of operation. A uniform mixture of river sand and FeAl(BDC) by weight ratio (9:1) was packed into the column. The sand-FeAl(BDC) fixed-bed column could achieve the maximum adsorption capacity (q) of 113.05 mg/g at a 5 mL/min flow rate, feed concentration of 20 mg/L, and a bed height of 13 cm. The experimental data of the column study were successfully fitted well with BDST, Thomas (q: 114.94 mg/g), Yoon-Nelson, and dose-response models (q: 113.41 mg/g) and R: 0.97-0.99. The fitting parameter values from the BDST model raise the scope of viable upscaling of the fixed-bed column. In all, it is proposed that these river sand-FeAl(BDC)-based filters can be widely used in areas facing critical contamination and in poor communities with a high demand for water.

摘要

双金属金属有机骨架(MOF)因其在工业废水处理中的应用而受到多年关注。在这项工作中,合成了 Fe-Al-1,4-苯二甲酸(FeAl(BDC))MOF,并研究了其在批处理和独特混合 FeAl(BDC)-河砂固定床柱中的吸附去除罗丹明 B 染料的情况。批处理研究的实验数据与伪二阶(PSO)(R:0.97)和 Freundlich 吸附等温线模型(R:0.98)吻合良好,在 90 分钟内达到最大吸附容量 48.59 mg/g。此外,进行了固定床柱研究,以评估在连续操作模式下,改变流速(2、5、8 mL/min)、床层高度(5、9、13 cm)和进料浓度(10、20、30 mg/L)对 FeAl(BDC)吸附性能的影响。按重量比(9:1)将河沙和 FeAl(BDC)均匀混合装入柱中。沙-FeAl(BDC)固定床柱在 5 mL/min 流速、20 mg/L 进料浓度和 13 cm 床层高度下可达到最大吸附容量(q)113.05 mg/g。柱研究的实验数据很好地符合 BDST、Thomas(q:114.94 mg/g)、Yoon-Nelson 和剂量响应模型(q:113.41 mg/g)和 R:0.97-0.99。BDST 模型的拟合参数值提高了固定床柱可行放大的范围。总之,建议在面临严重污染的地区和对水需求量大的贫困社区广泛使用基于河沙-FeAl(BDC)的过滤器。

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