Chollakup Rungsima, Kongtud Wuttinant, Sukatta Udomlak, Premchookiat Maneenuch, Piriyasatits Kanyanut, Nimitkeatkai Hataitip, Jarerat Amnat
Kasetsart Agricultural and Agro-Industrial Product Improvement Institute (KAPI), Kasetsart University, Chatuchak, Bangkok 10900, Thailand.
Food Technology Program, Kanchanaburi Campus, Mahidol University, Saiyok, Kanchanaburi 71150, Thailand.
Polymers (Basel). 2021 Sep 14;13(18):3096. doi: 10.3390/polym13183096.
This study aimed to develop active paper from rice straw fibers with its function as antibacterial activity obtained from longan () peels. The morphology and mechanical properties of fibers of rice straw were examined as quality parameters for paper production. Rice straw paper (RSP) with basis weight ca 106.42 g/m, 0.34 mm thickness, 34.15% brightness, and 32.26 N·m/g tensile index was successfully prepared from fibers and pulps without chemical bleaching process. Bioactive compounds of longan peels were extracted using maceration technique with a mixture of ethanol-water, and subsequently coated onto RSP at concentration of 10%, 15% and 20% (/). Fourier transform infrared (FTIR) spectroscopic analysis demonstrated the functional groups of phytochemicals in the peel extract. The results of physical properties showed that the coated RSP had similar thickness and tensile index, but had lower brightness compared to control papers. Scanning electron microscopy (SEM) confirmed the significantly different of surface and cross-section structures between coated and uncoated RSP. The coated RSP had relatively greater barrier properties to prevent water absorption. In addition, the RSP coated with longan peel extracts showed significant antibacterial activity against foodborne bacteria, and . This study reveals the benefits of natural byproducts as potential materials for active packaging prepared by environmentally friendly processes.
本研究旨在利用稻草纤维开发活性纸,其抗菌活性功能源自龙眼()果皮。研究了稻草纤维的形态和力学性能,将其作为纸张生产的质量参数。在不进行化学漂白处理的情况下,成功地从纤维和纸浆制备出了定量约为106.42 g/m²、厚度为0.34 mm、亮度为34.15%、抗张指数为32.26 N·m/g的稻草纸(RSP)。采用乙醇 - 水混合浸渍技术提取龙眼果皮中的生物活性化合物,随后以10%、15%和20%(/)的浓度涂覆在RSP上。傅里叶变换红外(FTIR)光谱分析表明了果皮提取物中植物化学物质的官能团。物理性能结果表明,涂覆后的RSP厚度和抗张指数相似,但与对照纸相比亮度较低。扫描电子显微镜(SEM)证实了涂覆和未涂覆的RSP在表面和横截面结构上存在显著差异。涂覆后的RSP具有相对更好的阻隔性能以防止吸水。此外,涂覆有龙眼果皮提取物的RSP对食源细菌、和表现出显著的抗菌活性。本研究揭示了天然副产品作为通过环保工艺制备活性包装潜在材料的益处。