Niyazi Reziya, Lv Xiang, Wu Yufeng, Liu Yixiao, Aikebaier Weinire, Wu Shanpan, Zhang Wen
College of Chemistry and Chemical Engineering, Xinjiang Agricultural University, Urumqi 830000, Xinjiang, China.
ACS Omega. 2025 Aug 3;10(31):34494-34505. doi: 10.1021/acsomega.5c02887. eCollection 2025 Aug 12.
Traditional plastic films have caused serious environmental issues due to "white pollution". This study isolates lignin from cottonseed hulls to explore alternatives to plastic films. Using both cottonseed hull lignin and commercially sourced white lignin as raw materials, we performed hydroxy-methylation modification via physical and chemical cross-linking to obtain hydroxy-methylated cottonseed hull lignin and hydroxy-methylated white lignin, resulting in hydroxy-methylated lignin with improved hydrophilicity. Additionally, we prepared a hydroxy-methylated lignin/poly-(vinyl alcohol) composite film loaded with sorbitol and incorporated glycerol as a plasticizer to further enhance the mechanical properties of the composite material. The results indicate that the performances of both cottonseed hull lignin and white lignin are notably improved through hydroxy-methylation. The surface of the hydroxy-methylated lignin/poly-(vinyl alcohol) composite film is smooth and dense, with good compatibility between the hydroxy-methylated lignin and poly-(vinyl alcohol). In comparison with the original composite film, the hydroxy-methylated cottonseed hull lignin/poly-(vinyl alcohol) film exhibits a yield strength increase of 60.7 MPa and a 2887.3% enhancement in elongation at break; the cottonseed hull lignin/poly-(vinyl alcohol) film exhibits a yield strength increase of 17.5 MPa and a 567.7% enhancement in elongation at break; the hydroxy-methylated white lignin/poly-(vinyl alcohol) film exhibits a yield strength increase of 56.8 MPa and a 3139.4% enhancement in elongation at break; the white lignin/poly-(vinyl alcohol) film exhibits a yield strength increase of 16.2 MPa and a 520.7% enhancement in elongation at break. The hydroxy-methylated lignin/poly-(vinyl alcohol) composite film demonstrates remarkable mechanical properties, thermal stability, and optical characteristics. These findings provide new insights into the applications of hydroxy-methylated lignin/poly-(vinyl alcohol) composite materials.
传统塑料薄膜因“白色污染”引发了严重的环境问题。本研究从棉籽壳中提取木质素,以探索塑料薄膜的替代品。以棉籽壳木质素和市售白色木质素为原料,通过物理和化学交联进行羟甲基化改性,得到羟甲基化棉籽壳木质素和羟甲基化白色木质素,从而获得亲水性得到改善的羟甲基化木质素。此外,我们制备了负载山梨醇的羟甲基化木质素/聚(乙烯醇)复合薄膜,并加入甘油作为增塑剂,以进一步提高复合材料的机械性能。结果表明,通过羟甲基化,棉籽壳木质素和白色木质素的性能均得到显著改善。羟甲基化木质素/聚(乙烯醇)复合薄膜表面光滑致密,羟甲基化木质素与聚(乙烯醇)之间具有良好的相容性。与原始复合薄膜相比,羟甲基化棉籽壳木质素/聚(乙烯醇)薄膜的屈服强度提高了60.7MPa,断裂伸长率提高了2887.3%;棉籽壳木质素/聚(乙烯醇)薄膜的屈服强度提高了17.5MPa,断裂伸长率提高了567.7%;羟甲基化白色木质素/聚(乙烯醇)薄膜的屈服强度提高了56.8MPa,断裂伸长率提高了3139.4%;白色木质素/聚(乙烯醇)薄膜的屈服强度提高了16.2MPa,断裂伸长率提高了520.7%。羟甲基化木质素/聚(乙烯醇)复合薄膜具有优异的机械性能、热稳定性和光学特性。这些发现为羟甲基化木质素/聚(乙烯醇)复合材料的应用提供了新的见解。