Qian Yangyang, Qin Changpei, Zhang Jianqiang, Shi Bingfei, Wei Yuan, Wang Chunyu, Niu Jingchao, Kang Shimin, Chen Gang, Liu Yijun
College of Tea (Pu'er), West Yunnan University of Applied Sciences, Pu'er 665000, China; Hainan Key Laboratory of Storage & Processing of Fruits and Vegetables, Agricultural Products Processing Research Institute of Chinese Academy of Tropical Agricultural Sciences, Zhanjiang 524001, China.
College of Tea (Pu'er), West Yunnan University of Applied Sciences, Pu'er 665000, China.
Int J Biol Macromol. 2025 Apr;299:140130. doi: 10.1016/j.ijbiomac.2025.140130. Epub 2025 Jan 20.
Manufacturing water-stable carboxymethyl cellulose (CMC) films as an alternative to commercial plastics is a promising solution to address plastic pollution. In this study, waste walnut shell (WS) was used as a natural lignocellulosic filler, glycerol as a plasticizer, and citric acid (CA) as a crosslinking agent for preparing high-performance CMC-based bioplastics through a one-pot casting method. When WS content was 12 wt%, the obtained CWGA-12 after optimization exhibited excellent mechanical properties (tensile strength ≈18.53 MPa, fracture strain ≈78.11 %), low surface roughness (< 16 nm), high optical transmittance (82.23 %), and superior thermal stability. Moreover, CWGA-12 could not decompose within 7 days of immersion in water, or even after 5 h of continuous stirring at 60 °C, while it could be reused after crushing, dissolving, and re-pouring under alkaline conditions. The alkali-recycled CWGA-12 exhibited a better UV-blocking capacity than before (99.22 % for UVA and 99.95 % for UVB). In addition, our bioplastic also had excellent biodegradability and disappeared completely after 2 days in rainy weather. Thus, our work not only offers an innovative approach to producing petroleum-based plastic substitutes with outstanding water resistance and UV-blocking properties but also paves the way for WS waste's broader applications.
制造水稳定的羧甲基纤维素(CMC)薄膜作为商业塑料的替代品,是解决塑料污染的一个有前景的解决方案。在本研究中,废弃核桃壳(WS)被用作天然木质纤维素填料,甘油用作增塑剂,柠檬酸(CA)用作交联剂,通过一锅浇铸法制备高性能的基于CMC的生物塑料。当WS含量为12 wt%时,优化后得到的CWGA-12表现出优异的机械性能(拉伸强度≈18.53 MPa,断裂应变≈78.11%)、低表面粗糙度(< 16 nm)、高透光率(82.23%)和优异的热稳定性。此外,CWGA-12在水中浸泡7天内甚至在60°C连续搅拌5小时后都不会分解,而在碱性条件下粉碎、溶解和重新浇铸后可以重复使用。碱回收的CWGA-12表现出比以前更好的紫外线阻挡能力(UVA为99.22%,UVB为99.95%)。此外,我们的生物塑料还具有优异的生物降解性,在雨天2天后完全消失。因此,我们的工作不仅提供了一种创新方法来生产具有出色耐水性和紫外线阻挡性能的石油基塑料替代品,还为WS废料的更广泛应用铺平了道路。