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Foaming-free sustainable and scalable insulating foams derived from sunflower stalk pith for thermal insulation and sound absorption

作者:Shuyu Zhang, Tao Qin, Mengting Wang, Xuemei Li, Siwei Liu, Siwei Liu, Shuyang Jiang, Zhengjun Shi, S Liu · 发表于:Industrial Crops and Products · 年份:2025 · DOI:10.1016/j.indcrop.2025.121204 · 被引用次数:4 · 研究领域:Polymer Foaming and Composites、Polymer composites and self-healing、Advanced Cellulose Research Studies

Developing biomass-based materials with no or less chemical modifications represents a more sustainable strategy. Sunflower ( Helianthus annuus L. ) stalks are known as typical agricultural waste, most of which are burned or buried, causing environmental pollution. Relying on the porous and low-density feature, sunflower pith (SP) inside the stalk is a potential foam material. However, the problems like small size, irregular shape and anisotropy hinder the practical applications of SP. Here, we reported a simple breaking-stacking-molding (BSM) strategy, which involves breaking SP into particles, followed by spread of phenol-formaldehyde (PF) resin on the particles, and then stacking and molding the particles into panels with desired shape and size. The resulted foams demonstrate improved mechanical strength, isotropy, excellent thermal-insulation and noise-reduction capabilities. Specifically, these foams with different apparent densities exhibited thermal conductivity of 0.038–0.048 W · m –1 ·K –1 . By processing these foams into a vacuum insulation panel (0.023 W ·m –1 ·K –1 ), their applications for refrigerators, cold-chain transportation and building, etc., become practical. Further, the 10mm-thick SPF panel has high noise-reduction coefficient of 0.34 at a frequency range of 250–3000 Hz, suggesting its great potential as high-performance sound absorption material. Additionally, the SPF material shows excellent fire safety and retains good biodegradability. Technically s...