| Literature DB >> 29567556 |
Luana Maria Tavares Rosa1, Wander Gustavo Botero2, Josué Carinhanha Caldas Santos2, Thiago Aguiar Cacuro1, Walter Ruggeri Waldman1, Janaina Braga do Carmo1, Luciana Camargo de Oliveira3.
Abstract
The contamination of aquatic and terrestrial environments by potentially toxic metals is highlighted by the possible impacts that their high availability can have on the environment. Thus, the development of alternative absorbents that can be used in the remediation of contaminated areas is of great environmental interest. Humin, one of the fractions of natural organic matter, is a promising alternative in studies on the retention of different metals that are environmentally toxic. In this study, the influence of the organic and inorganic humin constituents that are involved in the retention of aluminum species was evaluated. After extraction and calcination to obtain the ashes (inorganic constituents), humin and ash samples were structurally characterized by Fourier transform infrared spectroscopy and scanning electron microscopy. Interaction studies between aluminum-humin and ash-humin were performed in the pH range of 4.0-8.0 and with various contact times. The results of the characterization of humin and ash showed different functional groups present in the structures of these materials. Based on the results of the interaction between humin-aluminum and ash-aluminum, it can be inferred that both the organic and inorganic components of humin are efficient at absorbing aluminum. However, the adsorption isotherms showed that humin and the ashes have different adsorption behaviors. Humin is the only fraction of natural organic matter with a significant inorganic constituent content; it is the fraction least used by researchers in this field and is often discarded as waste. In light of this, the results obtained in this work highlight the importance of humin as a natural adsorbent material. Humin may be promising for the removal of aluminum species in contaminated environments due to the presence of organic and inorganic constituents.Entities:
Keywords: Adsorbent; Aluminum; Humin; Natural substances; Remediation
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Year: 2018 PMID: 29567556 DOI: 10.1016/j.jenvman.2018.03.048
Source DB: PubMed Journal: J Environ Manage ISSN: 0301-4797 Impact factor: 6.789