College of Resources and Environment, Anhui Agricultural University, Hefei 230036, China.
College of Soil and Water Conservation Science and Engineering, Northwest A&F University, Yangling 712100, China; Institute of Soil and Water Conservation CAS&MWR, Yangling 712100, China.
Int J Biol Macromol. 2024 Oct;278(Pt 2):134765. doi: 10.1016/j.ijbiomac.2024.134765. Epub 2024 Aug 15.
Industrial lignin is a waste product of the paper industry, which contains a large amount of oxygen group structure, and can be used to treat industrial wastewater containing Cr(VI). However, lignin has very low reactivity, so how to enhance its adsorption performance is a major challenge at present. In this study, a two-stage hydrothermal and activation strategy was used to activate the lignin activity and doping S element to prepare high-performance S-doped lignin-based polyporous carbon (S-LPC). The results show that the surface of S-LPC is rich in S and O groups and has a well-developed pore structure, which is very beneficial to Cr(VI) uptake -reduction and mass transfer on the material. In the wastewater, the utmost adsorption potential of Cr(VI) by S-LPC achieved 882.83 mg/g. After 7 cycles of regeneration, the adsorption of S-LPC decreased by only approximately 18 %. Ion competition experiments showed that S-LPC has excellent specificity for Cr(VI) adsorption. In factory wastewater, the adsorption performance of S-LPC for Cr(VI) remained above 95 %, which shows the excellent performance of S-LPC in practical applications. The results are of great significance for green chemical utilization of waste lignin, treatment of industrial wastewater and sustainable development.
工业木质素是造纸工业的一种废物产物,它含有大量的含氧基团结构,可以用于处理含 Cr(VI)的工业废水。然而,木质素的反应性非常低,因此如何提高其吸附性能是目前的主要挑战。在本研究中,采用两段式水热和活化策略来提高木质素的活性并掺杂 S 元素,制备高性能的 S 掺杂木质素基多孔碳(S-LPC)。结果表明,S-LPC 的表面富含 S 和 O 基团,具有发达的孔结构,这非常有利于材料上 Cr(VI)的吸附-还原和质量转移。在废水中,S-LPC 对 Cr(VI)的最大吸附潜力达到 882.83 mg/g。经过 7 次再生循环,S-LPC 的吸附量仅下降了约 18%。离子竞争实验表明,S-LPC 对 Cr(VI)的吸附具有优异的选择性。在工厂废水中,S-LPC 对 Cr(VI)的吸附性能仍保持在 95%以上,这表明 S-LPC 在实际应用中具有优异的性能。该结果对于废弃木质素的绿色化学利用、工业废水的处理和可持续发展具有重要意义。