| Literature DB >> 34034630 |
Anna Carla Ribeiro1, Murilo Barbosa de Andrade2, Heloise Beatriz Quesada2, Laiza Bergamasco Beltran3, Rosângela Bergamasco2, Maria Madalena Calado Santos Sobral da Fonseca4, Elizabeth da Costa Neves Fernandes de Almeida Duarte1.
Abstract
ABSTRACTThe 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 (pHPZC) by the drift method and the electrokinetic mica mineral features represented by the Isoelectric Point (pHIEP) 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.Entities:
Keywords: Mica mineral; Reactive Black 5; Safranin Orange; adsorption; electrostatic properties
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Year: 2021 PMID: 34034630 DOI: 10.1080/09593330.2021.1934562
Source DB: PubMed Journal: Environ Technol ISSN: 0959-3330 Impact factor: 3.475