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云母矿物的物理化学和静电表面特性及其对藏花红和活性黑 5 染料吸附的应用。

Physico-chemical and electrostatic surface characterisation of mica mineral and its applicability on the adsorption of Safranin Orange and Reactive Black 5 dyes.

机构信息

LEAF - Linking Landscape, Environment, Agriculture and Food, Universidade de Lisboa - Instituto Superior de Agronomia, Lisbon, Portugal.

Department of Chemical Engineering, Universidade Estadual de Maringá, Maringá/Paraná, Brazil.

出版信息

Environ Technol. 2022 Oct;43(24):3765-3778. doi: 10.1080/09593330.2021.1934562. Epub 2021 Sep 9.

Abstract

The combined approach of specific surface area (SSA), porosity, microprobe analysis (EMPA), transmission electron microscopy (TEM), scanning electron microscopy (SEM) equipped with EDX and infrared spectroscopy (FTIR) provided the mica mineral physico-chemical and morphological characterisation. The electrostatic surface properties were assessed through the determination of the Point of Zero Charge (pH) by the drift method and the electrokinetic mica mineral features represented by the Isoelectric Point (pH) which was carried out through zeta potential measurements. Adsorption tests were performed to correlate the surface charge behaviour of the mica mineral and its influence on the adsorption efficiency of two different dyes, namely: Safranin Orange (SO), as a cationic dye and Reactive Black 5 (RB5), as an anionic dye. The higher adsorption capacity SO dye was observed at pH 9 and achieved almost 83% of removal, while RB5 dye adsorption on mica surface had the highest result, about 45% of removal efficiency, on pH of 3. In both cases, the main mechanism identified that drove this results is the electrostatic force of attraction between the adsorbent edge surface charge (pH-dependent) and the ionic nature (anionic or cationic) of the pollutant dyes particles. The preliminary adsorption experiments demonstrated that the raw grounded mica mineral has a greater potential associated with its application on cationic dye removal in wastewater. The present study aimed to detail the main characteristics of the mica mineral in order to evaluate the potential use of such mineral residues in the removal efficiency of contaminated wastewater.

摘要

采用比表面积(SSA)、孔隙率、微探针分析(EMP A)、透射电子显微镜(TEM)、扫描电子显微镜(SEM)配备 EDX 和红外光谱(FTIR)的综合方法对云母矿物进行了物理化学和形态特征分析。通过漂移法测定零电荷点(pH)和通过zeta 电位测量测定等电点(pH)来评估静电表面特性,从而确定云母矿物的电动特性。进行了吸附试验以关联云母矿物的表面电荷行为及其对两种不同染料(即:碱性藏花红(SO)作为阳离子染料和活性黑 5(RB5)作为阴离子染料)吸附效率的影响。在 pH 9 下观察到 SO 染料的吸附容量更高,达到近 83%的去除率,而 RB5 染料在云母表面的吸附在 pH 为 3 时具有最高的去除效率,约为 45%。在这两种情况下,驱动这些结果的主要机制是吸附剂边缘表面电荷(依赖 pH)和污染物染料颗粒的离子性质(阴离子或阳离子)之间的静电力吸引力。初步的吸附实验表明,原始研磨的云母矿物具有更大的潜力,可用于去除废水中的阳离子染料。本研究旨在详细描述云母矿物的主要特征,以评估此类矿物残余物在去除受污染废水中的潜在用途。

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