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茄子秸秆废料作为一种从水中和废水中去除 Eriochrome Black-T 的有效清除剂:一种从废物到最佳的方法。

Brinjal stalk waste as an effective scavenger for Eriochrome Black-T from water and wastewater: an approach towards waste to best.

机构信息

Department of Chemistry, Central University of Jharkhand, Ranchi, India.

Department of Chemistry, The Graduate School College for Women, Jamshedpur, India.

出版信息

Int J Phytoremediation. 2023;25(8):956-964. doi: 10.1080/15226514.2022.2123445. Epub 2022 Sep 21.

Abstract

Stalks of brinjal (), hereinafter SM, have been exercised as an efficient and sustainable adsorbent material for the elimination of Eriochrome Black-T (EBT) from an aqueous solution. The material was characterized by FTIR, FESEM, BET surface area, pH, and proximate analysis. FTIR spectrum suggests the presence of polyphenolic moieties, responsible for successful dye binding. FESEM images show an unprecedented octopus-like texture containing micropores. The central head transforms the architecture of a flower. The evaluated BET surface area of 10.042 m/g and pore volume 1.055 × 10cm/g suggest a porous material. The pH of the material was evaluated to be 7.05, and under optimized conditions, the maximum adsorption capacity was found 52.631 mg/g at pH 7. The operational parameters were studied concerning contact time (0-90 min), pH (5-11), initial concentration (10-40 mg/L), and interfering ions (PO, AsO, Hg, Pb). Adsorption follows Langmuir isotherm best ( = 0.996), and pseudo-second-order kinetics ( = 0.991) indicate a monolayer and homogeneous adsorption. 83% regeneration was successful with 0.1(M) sodium hydroxide solution. The material can be reused for up to three cycles with 90% efficiency retention. Analysis of EBT containing industrial effluent indicates that 52.62% of EBT can be removed.

摘要

茄子梗(),以下简称 SM,已被用作一种高效且可持续的吸附剂材料,用于从水溶液中去除 Eriochrome Black-T(EBT)。该材料通过 FTIR、FESEM、BET 比表面积、pH 值和近似分析进行了表征。FTIR 谱表明存在多酚部分,负责成功结合染料。FESEM 图像显示了一种前所未有的章鱼状纹理,其中含有微孔。中央头部改变了花朵的结构。评估的 BET 表面积为 10.042 m/g,孔体积为 1.055×10cm/g,表明该材料为多孔材料。材料的 pH 值被评估为 7.05,在优化条件下,最大吸附容量在 pH 为 7 时发现为 52.631 mg/g。研究了操作参数,包括接触时间(0-90 分钟)、pH 值(5-11)、初始浓度(10-40 mg/L)和干扰离子(PO、AsO、Hg、Pb)。吸附最符合 Langmuir 等温线(=0.996),准二级动力学(=0.991)表明是单层和均匀吸附。用 0.1(M)氢氧化钠溶液成功再生 83%。该材料可重复使用三到五次,保留 90%的效率。对含 EBT 的工业废水进行分析表明,52.62%的 EBT 可以被去除。

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