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大型海藻生物聚合物薄膜中功能化木质素纳米颗粒的性质与表征

Properties and Characterization of Lignin Nanoparticles Functionalized in Macroalgae Biopolymer Films.

作者信息

Rizal Samsul, Alfatah Tata, H P S Abdul Khalil, Mistar E M, Abdullah C K, Olaiya Funmilayo G, Sabaruddin F A, Muksin Umar

机构信息

Department of Mechanical Engineering, Universitas Syiah Kuala, Banda Aceh 23111, Indonesia.

School of Industrial Technology, Universiti Sains Malaysia, Penang 11800, Malaysia.

出版信息

Nanomaterials (Basel). 2021 Mar 4;11(3):637. doi: 10.3390/nano11030637.

Abstract

The demand for bioplastic material for industrial applications is increasing. However, moisture absorption and low mechanical strength have limited the use of bioplastic in commercial-scale applications. Macroalgae is no exception to these challenges of bioplastics. In this study, Kappaphycus alvarezii macroalgae were reinforced with lignin nanoparticles. Lignin nanoparticles (LNPs) were used as a filler to reduce the brittleness and hydrophilic nature of macroalgae (matrix). Lignin nanofiller was produced using a green approach from black liquor of soda pulping waste and purified. The physical, mechanical, morphological, structural, thermal, and water barrier properties of LNPs with and without the purification process in macroalgae films were studied. The bioplastic films' functional properties, such as physical, mechanical, thermal, and water barrier properties, were significantly improved by incorporating purified and unpurified LNPs. However, the purified LNPs have a greater reinforcement effect on the macroalgae than unpurified LNPs. In this study, bioplastic film with 5% purified LNPs presented the optimum enhancement on almost all the functional properties. The enhancement is attributed to high compatibility due to strong interfacial interaction between the nanofiller and matrix. The developed LNPs/macroalgae bioplastic films can provide additional benefits and solutions to various industrial applications, especially packaging material.

摘要

工业应用对生物塑料材料的需求正在增加。然而,吸湿性和低机械强度限制了生物塑料在商业规模应用中的使用。大型海藻也面临着这些生物塑料的挑战。在本研究中,用木质素纳米颗粒增强了卡帕藻大型海藻。木质素纳米颗粒(LNPs)被用作填料,以降低大型海藻(基质)的脆性和亲水性。木质素纳米填料采用绿色方法从苏打制浆废料的黑液中制备并纯化。研究了在大型海藻薄膜中经过和未经过纯化过程的LNPs的物理、机械、形态、结构、热和阻水性能。通过加入纯化和未纯化的LNPs,生物塑料薄膜的功能特性,如物理、机械、热和阻水性能,得到了显著改善。然而,纯化的LNPs对大型海藻的增强作用比未纯化的LNPs更大。在本研究中,含有5%纯化LNPs的生物塑料薄膜在几乎所有功能特性上都表现出最佳的增强效果。这种增强归因于纳米填料与基质之间强烈的界面相互作用而具有的高相容性。所开发的LNPs/大型海藻生物塑料薄膜可为各种工业应用,特别是包装材料,提供额外的益处和解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f04/8000402/346878881eff/nanomaterials-11-00637-g002.jpg

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