Yee Foong Ng Lawrence, Ariffin Hidayah, Tengku Yasim-Anuar Tengku Arisyah, Sakata Megumi, Kawarada Tomoya, Yoshimura Osamu, Tsukegi Takayuki, Afizan Nik Abd Rahman Nik Mohd, Hassan Mohd Ali
Laboratory of Biopolymers and Derivatives, Institute of Tropical Forestry and Forest Products (INTROP), Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia
Department of Bioprocess Technology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia.
RSC Adv. 2024 Jul 12;14(30):21971-21981. doi: 10.1039/d3ra08721b. eCollection 2024 Jul 5.
This study promotes the use of nanobiochar (NBC) as an environmentally friendly substitute to conventional fillers to improve various properties of biopolymers such as their mechanical strength, thermal stability and crystallization properties. TGA analysis showed a slight increase in onset thermal degradation temperature of the composites by up to 5 °C with the addition of 4 wt% NBC. Non-isothermal DSC analysis determined that the addition of NBC into PHBHHx increases the crystallization temperature and degree of crystallinity of PHBHHx while isothermal DSC analysis demonstrated higher crystallization rate in PHBHHx/NBC composited by up to 54%. PHBHHx incorporated with NBC also exhibited superior tensile strength and modulus neat PHBHHx. Increase in mechanical strength was further proven DMA where PHBHHx/NBC composites maintained higher storage modulus at higher temperatures when compared to neat PHBHHx. PHBHHx/NBC also exhibited no cytotoxicity effect against HaCat cells. This study demonstrates the ability of biochar to act as both nucleating agents and reinforcing agents in biodegradable polymers such as PHBHHx, which could be suitable for packaging application.
本研究推动了纳米生物炭(NBC)作为传统填料的环保替代品的应用,以改善生物聚合物的各种性能,如机械强度、热稳定性和结晶性能。热重分析(TGA)表明,添加4 wt%的NBC后,复合材料的起始热降解温度略有升高,最高可达5℃。非等温差示扫描量热法(DSC)分析确定,向聚(3-羟基丁酸酯-co-3-羟基己酸酯)(PHBHHx)中添加NBC会提高PHBHHx的结晶温度和结晶度,而等温DSC分析表明,PHBHHx/NBC复合材料的结晶速率提高了54%。与纯PHBHHx相比,含有NBC的PHBHHx还表现出更高的拉伸强度和模量。动态热机械分析(DMA)进一步证明了机械强度的提高,即与纯PHBHHx相比,PHBHHx/NBC复合材料在较高温度下保持较高的储能模量。PHBHHx/NBC对人永生化角质形成细胞(HaCat细胞)也没有细胞毒性作用。本研究证明了生物炭在可生物降解聚合物(如PHBHHx)中既可以作为成核剂又可以作为增强剂,这可能适用于包装应用。