Fan Hailun, Wang Xiulun, Wu Tingting, Sun Jianzhong, Liu Jun
Graduate School of Bioresources, Mie University, Tsu 514-8507, Japan.
International Joint Research Center on High-Value Utilization of Agricultural Waste Biomass Between Jiangsu University, China, and Mie University, Japan, Zhenjiang 212013, China.
Materials (Basel). 2024 Dec 25;18(1):37. doi: 10.3390/ma18010037.
Currently, wood-based panels are mainly made from wood and adhesives containing formaldehyde. With the growing demand for raw materials and increasing concern for human health, the use of residues from annual crops to manufacture binder-free biodegradable biomass boards has attracted increasing interest. The aim of this study was to develop a biodegradable bio-board without any adhesives using eggplant straw fibers. The bio-boards were produced via simple mechanical refinement of eggplant straw fibers and were formed under pressures of 2.0 MPa, 3.5 MPa, 5.0 MPa, 6.5 MPa, and 8.0 MPa. The mechanical properties and dimensional stability of the manufactured bio-boards were evaluated. With increasing applied pressure, the bending rupture stress of the bio-boards increased from 27.69 MPa to 45.29 MPa, the tensile rupture stress varied from 12.45 MPa to 24.62 MPa, the water absorption decreased from 91.45% to 88.29%, and the contact angle increased from 89.67° to 90.45°. The bio-boards were subjected to morphological analysis (SEM) and porosity and crystallinity measurements (XRD), and the results indicated that the water absorption of the bio-boards was due to a combination of porosity and crystallinity. The results showed that eggplant straw is suitable for manufacturing bio-boards.
目前,人造板主要由木材和含甲醛的胶粘剂制成。随着对原材料需求的不断增长以及对人类健康的日益关注,利用一年生作物的残渣制造无胶粘剂的可生物降解生物质板已引起越来越多的关注。本研究的目的是使用茄子秸秆纤维开发一种不含任何胶粘剂的可生物降解生物板。通过对茄子秸秆纤维进行简单的机械细化来生产生物板,并在2.0MPa、3.5MPa、5.0MPa、6.5MPa和8.0MPa的压力下成型。对制造的生物板的力学性能和尺寸稳定性进行了评估。随着施加压力的增加,生物板的抗弯断裂应力从27.69MPa增加到45.29MPa,抗拉断裂应力从12.45MPa变化到24.62MPa,吸水率从91.45%降低到88.29%,接触角从89.67°增加到90.45°。对生物板进行了形态分析(扫描电子显微镜)以及孔隙率和结晶度测量(X射线衍射),结果表明生物板的吸水率是孔隙率和结晶度共同作用的结果。结果表明,茄子秸秆适合制造生物板。