Biochemistry Department, Faculty of Science, University of Tabuk, Tabuk 71491, Saudi Arabia; Genetic Engineering and Biotechnology Research Institute, University of Sadat City, El-Sadat City 32897, Egypt.
Biochemistry Department, Faculty of Science, University of Tabuk, Tabuk 71491, Saudi Arabia.
Int J Biol Macromol. 2023 Nov 1;251:126318. doi: 10.1016/j.ijbiomac.2023.126318. Epub 2023 Aug 12.
Targeting the remediation of oil pollution in water, the construction of super magnetic adsorbent nanocomposites (NCs) was achieved using the nanoparticles of chitosan (Cht), lignin (Lg) and phycosynthesized iron nanoparticles (Fe MNPs) using Gelidium amansii extract. The syntheses and conjugations of nanomaterials were authenticated via infrared spectral analysis and the structural physiognomies of them were appraised via electron microscopy and zeta analysis. The Lg NPs, Cht NPs, Fe MNPs and their composites (Lg/Cht MNCs) had mean particles' sizes of 42.3, 76.4, 14.2 and 108.3 nm, and were charged with - 32.7, + 41.2, + 28.4 and +37.5 mV, respectively. The magnetometer revealed the high magnetic properties of both Fe MNPs and Lg/Cht MNCs; the maximum swelling of Lg/Cht NPs (46.3 %), and Lg/Cht MNPs (33.8 %) was detected after 175 min. The diesel oil adsorption experiments with Lg/Cht MNPs, using batch adsorption practices, revealed the powerful potentiality of magnetic NCs to remove oil pollution in water; the maximum adsorption capacity (q) was achieved with the conditions of pH = 7.5, adsorption period = 90 min and adsorbent dose = 200 mg/L. The magnetic Lg/Cht MNCs exhibited excellent recovery/reusability attributes for five adsorption cycles; the q differences were negligible after the entire oil-adsorption cycles, with oil removal of >90 %. The innovative fabricated Lg/Cht MNCs could provide an effectual, sustainable and eco-friendly approach for the removal of pollutant oil in water resources.
针对水体中石油污染的修复,利用 Gelidium amansii 提取物合成了壳聚糖(Cht)、木质素(Lg)和生物合成的铁纳米粒子(Fe MNPs)的纳米复合材料(NCs),构建了超顺磁吸附纳米复合材料。通过红外光谱分析对纳米材料的合成和键合进行了验证,并通过电子显微镜和zeta 分析评价了它们的结构特征。Lg NPs、Cht NPs、Fe MNPs 及其复合材料(Lg/Cht MNCs)的平均粒径分别为 42.3、76.4、14.2 和 108.3nm,表面电荷分别为-32.7、+41.2、+28.4 和+37.5mV。磁力计揭示了 Fe MNPs 和 Lg/Cht MNCs 的高磁性能;Lg/Cht NPs(46.3%)和 Lg/Cht MNPs(33.8%)的最大溶胀在 175min 后被检测到。使用批量吸附实验对 Lg/Cht MNPs 进行柴油吸附实验,结果表明磁性 NCs 具有强大的去除水中石油污染的潜力;在 pH=7.5、吸附时间=90min 和吸附剂剂量=200mg/L 的条件下,达到了最大吸附容量(q)。磁性 Lg/Cht MNCs 在五个吸附循环中表现出良好的回收/再利用性能;整个吸附循环后 q 的差异可以忽略不计,除油率>90%。创新制备的 Lg/Cht MNCs 可为去除水资源中污染物油提供有效、可持续和环保的方法。