Patil Hrishikesh, Sudagar I P, Pandiselvam R, Sudha P, Boomiraj K
Department of Food Process Engineering, Agricultural Engineering College and Research Institute, Tamil Nadu Agricultural University, Tamil Nadu, India.
Department of Processing and Food Engineering, Agricultural Engineering College and Research Institute, Tamil Nadu Agricultural University, Kumulur, Tamil Nadu, India.
Int J Biol Macromol. 2023 Aug 15;246:125641. doi: 10.1016/j.ijbiomac.2023.125641. Epub 2023 Jun 30.
Composites developed from cellulose and natural resins have received much attention due to their low cost and positive environmental impact. Knowledge of the mechanical and degradation characteristics of cellulose based composite boards is essential to obtain indications of the strength and degradability of the resulting rigid packaging material. The composite was prepared with sugarcane bagasse and hybrid resin (a combination of epoxy and natural resin such as dammar, pine, and cashew nut shell liquid) with the mixing ratios (Bagasse fibers: Epoxy resin: Natural resin) 1:1:1.5, 1:1:1.75, and 1:1:2 using compression moulding method. Tensile strength, young's modulus, flexural strength, soil burial weight loss, microbial degradation, and CO evolution was determined. Cashew nut shell liquid (CNSL) resin-incorporated composite boards in the mixing ratio of 1:1:2 gave maximum flexural strength (5.10 MPa), tensile strength (3.10 MPa), and tensile modulus (0.97 MPa). The maximum degradation in soil burial test and CO evolution between the boards made using natural resin was found in the composite boards incorporated with CNSL resin with a mixing ratio of 1:1:1.5 were 8.30 % and 12.8 % respectively. The maximum weight loss percentage (3.49) in microbial degradation analysis was found in the composite board made using dammar resin in the mixing ratio of 1:1:1.5.
由纤维素和天然树脂制成的复合材料因其低成本和对环境的积极影响而备受关注。了解纤维素基复合板的机械和降解特性对于了解所得刚性包装材料的强度和可降解性至关重要。该复合材料由甘蔗渣和混合树脂(环氧树脂与天然树脂如达玛树脂、松脂和腰果壳液的组合)制备而成,混合比例为(蔗渣纤维:环氧树脂:天然树脂)1:1:1.5、1:1:1.75和1:1:2,采用模压成型法。测定了拉伸强度、杨氏模量、弯曲强度、土壤掩埋失重、微生物降解和二氧化碳释放量。混合比例为1:1:2的含腰果壳液(CNSL)树脂的复合板具有最大弯曲强度(5.10兆帕)、拉伸强度(3.10兆帕)和拉伸模量(0.97兆帕)。在土壤掩埋试验中,使用天然树脂制成的复合板中,混合比例为1:1:1.5的含CNSL树脂的复合板降解最大,二氧化碳释放量分别为8.30%和12.8%。在微生物降解分析中,混合比例为1:1:1.5的使用达玛树脂制成的复合板失重百分比最大(3.49)。