Lang Qian, Liu Chuanhao, Zhu Xiaoxin, Zhang Chao, Zhang Shengming, Li Longhai, Liu Shuang, Chen Haitao
Faculty of Engineering, Northeast Agricultural University, Haerbin 150030, China.
Materials (Basel). 2022 Jul 26;15(15):5170. doi: 10.3390/ma15155170.
Soil mulch composite films composed of biodegradable materials are being increasingly used in agriculture. In this study, mulch films based on wheat straw fiber and an environmentally friendly modifier were prepared via in situ polymerization and tested as the ridge mulch for crops. The mechanical properties of the straw fiber film were significantly enhanced by the modification. In particular, the films exhibited a noticeable increase in dry and wet tensile strength from 2.35 to 4.15 and 0.41 to 1.51 kN/m, respectively, with increasing filler content from 0% to 25%. The contact angle of the straw also showed an improvement based on its hydrophilicity. The crystallinity of the modified film was higher than that of the unmodified film and increased with modifier content. The changes in chemical interaction of the straw fiber film were determined by Fourier transform infrared spectroscopy, and the thermal stability of the unmodified film was improved by in situ polymerization. Scanning electron microscopy images indicated that the modifier was uniformly dispersed in the fiber film, resulting in an improvement in its mechanical properties. The modified straw fiber films could be degraded after mulching for approximately 50 days. Overall, the superior properties of the modified straw fiber film lend it great potential for agricultural application.
由可生物降解材料制成的土壤覆盖复合薄膜在农业中的应用越来越广泛。在本研究中,通过原位聚合制备了基于麦秸纤维和环保改性剂的地膜,并将其作为农作物的垄作覆盖物进行了测试。改性显著提高了秸秆纤维薄膜的力学性能。特别是,随着填料含量从0%增加到25%,薄膜的干、湿拉伸强度分别从2.35显著提高到4.15 kN/m和从0.41显著提高到1.51 kN/m。秸秆的接触角也因其亲水性而得到改善。改性薄膜的结晶度高于未改性薄膜,并随改性剂含量的增加而增加。通过傅里叶变换红外光谱确定了秸秆纤维薄膜化学相互作用的变化,原位聚合提高了未改性薄膜的热稳定性。扫描电子显微镜图像表明,改性剂均匀分散在纤维薄膜中,从而改善了其力学性能。改性秸秆纤维薄膜在覆盖约50天后可降解。总体而言,改性秸秆纤维薄膜的优异性能使其在农业应用中具有巨大潜力。