AI Article Synopsis

  • Heavy metal contamination poses a serious threat to human health, prompting the development of a modified-cellulose adsorbent designed to effectively remove cadmium (Cd) from environments.
  • The modified cellulose, enhanced with various functional groups, demonstrated a significant adsorption capacity of 401.1 mg/g for Cd, with its performance showing strong alignment with the Freundlich and pseudo-second-order models for adsorption processes.
  • Analysis indicated that multiple functional groups on the modified cellulose improve Cd binding, with the most effective adsorption occurring at sites with secondary amino groups and carbonyl sulfides, highlighting its potential for practical applications in heavy metal removal.

Article Abstract

Heavy metal contamination directly threatened human life and health. In this work, a novel carboxyl, amide, carbonyl sulfide and secondary amino group grafted cellulose derivative adsorbent (modified-cellulose) was prepared in an attempt to remove heavy metal Cd. The XRD, FTIR, C NMR and XPS results showed that the carboxyl, amide, carbonyl sulfide and secondary amino group were grafted onto the cellulose backbone successfully. Effects of various factors on the adsorption performance were investigated as well as the adsorption mechanism. The Cd adsorption capacity of modified-cellulose was pretty good, up to 401.1 mg/g and with 3 times enhancement. The adsorption process was spontaneous, well described by the Freundlich model (R = 0.994), confirmed to the pseudo-second-order model (R > 0.997), and mainly controlled by chemisorption. The density functional theory (DFT) calculations indicating that the Cd binding ability of multi-functional groups modified cellulose was stronger than that of single-functional group modified cellulose. The preferential adsorption sites were analyzed based on the frontier orbital theory (FOT), and they were concentrated on the secondary amino groups and carbonyl sulfides. It is foreseeable that the as-prepared modified-cellulose adsorbent has great potential in heavy metal cadmium removal, and our conclusions could provide significant theoretical guidance in the due bioresource utilization.

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Source
http://dx.doi.org/10.1016/j.chemosphere.2019.02.138DOI Listing

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