4.7 Article

Fluorescent wood with non-cytotoxicity for effective adsorption and sensitive detection of heavy metals

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 416, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.126166

关键词

Wood; Carbon dots; Adsorbent; Adsorption; Cr(VI)

资金

  1. Hunan Youth Science and Technology Innovation Talent Project [2020RC3043]
  2. Training Plan of Young Backbone Teachers in Colleges and Universities of Hunan Province, China [71]
  3. Special Projects of Scientific and Technological Innovation in Hunan Forestry, China [XLK201982]
  4. Natural Science Foundation of Hunan Province, China [2019JJ50981]
  5. Research Foundation of Education Bureau of Hunan Province, China [18A166]

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This study presents a novel fluorescent wood (FW) with effective adsorption ability and good fluorescence properties for removing hexavalent chromium ions from wastewater. FW was prepared using a specific process to create a porous structure with many effective sorption sites.
Heavy metal pollution is one of the primary challenges of water pollution, and the fabrication of highly effective, green and non-toxic adsorbents for heavy metals is urgently required on the basis of environmental and sustainable development strategies. Here, we report a novel fluorescent wood (FW) with effective adsorption ability (maximum theoretical adsorption capacity of 98.14 mg/g for hexavalent chromium [Cr(VI)]), good fluorescence properties (absolute quantum yield of 12.8%), non-cytotoxicity (cell viability of >90%) and high detection sensitivity and selectivity for Cr(VI). The FW was formed using a process involving delignification, infiltration with carbon dots, and free-radical polymerization with acrylic acid. Mechanistic analysis confirmed that the reconstructed 3D porous structure of the FW provided many effective sorption sites, such as amino, hydroxyl and carboxyl groups. This improved the adsorption ability and stabilized the fluorescence signal, which enhanced the detection ability. These factors give the novel FW considerable potential for use in the removal of Cr(VI) ions from wastewater.

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