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碳酸钙仿生矿化杨木复合材料的性能增强

Performance Enhancement of the Poplar Wood Composites Biomimetic Mineralized by CaCO.

作者信息

Zhang Mengying, Li Hang, Wang Chi, Wang Zhaohui, Liu Da, Yang Tao, Deng Zebin, Yuan Guangming

机构信息

School of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410011, Hunan China.

Collaborative Innovation Center for Effective Utilizing of Wood and Bamboo Resource of China, Changsha 410004, Hunan China.

出版信息

ACS Omega. 2022 Aug 9;7(33):29465-29474. doi: 10.1021/acsomega.2c03960. eCollection 2022 Aug 23.

Abstract

Inspired by the natural matrix-mediated biomineralization, wood composites were prepared by vacuum impregnation using the gel effect of sodium alginate (SA) on calcium ions, which improved the mechanical properties, flame retardant, and smoke suppression properties of the wood composites. Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and scanning electron microscopy (SEM) confirmed that the SA inducer had promoted the orderly deposition and directional crystallization of calcium carbonate (CaCO) inside the wood cell walls and intercellular spaces. The density and weight gain rate of the biomimetic mineralized wood showed that CaCO effectively adhered to the interior of wood with SA as an inducer. The compressive and flexural strengths were 15.65% and 37.66% higher than those of the control, respectively. Thermogravimetric analysis (TG) proved that SA alleviated the thermal decomposition and complete combustion of the mineralized wood and improved the thermal stability. Microcalorimetry (MCC) and cone calorimetry (CONE) analyses revealed that the maximum heat release rate (HRR), total heat release (THR), and the total smoke production (TSP) rate of the mineralized wood was reduced by 59.51%, 48.52%, and 51.67%, respectively, compared with those of the control. This research demonstrates the in situ synthesis of CaCO within the cellular microstructure of the poplar which is using it as a biotemplate. With the enhancement of the flame retardant property and others, the wood composite biomimetic mineralized materials modified by CaCO and SA could be utilized more widely in the construction industry or other fields.

摘要

受天然基质介导的生物矿化启发,利用海藻酸钠(SA)对钙离子的凝胶效应,通过真空浸渍法制备了木材复合材料,这改善了木材复合材料的力学性能、阻燃性和抑烟性能。傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和扫描电子显微镜(SEM)证实,SA诱导剂促进了碳酸钙(CaCO₃)在木材细胞壁和细胞间隙内的有序沉积和定向结晶。仿生矿化木材的密度和增重率表明,以SA为诱导剂时,CaCO₃有效地附着在木材内部。抗压强度和抗弯强度分别比对照高15.65%和37.66%。热重分析(TG)证明,SA减轻了矿化木材的热分解和完全燃烧,提高了热稳定性。微量量热法(MCC)和锥形量热法(CONE)分析表明,与对照相比,矿化木材的最大热释放速率(HRR)、总热释放量(THR)和总产烟量(TSP)分别降低了59.51%、48.52%和51.67%。本研究证明了在杨树细胞微观结构中原位合成CaCO₃,将其用作生物模板。随着阻燃性能等的提高,经CaCO₃和SA改性的木材复合仿生矿化材料可在建筑行业或其他领域得到更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c277/9404479/6b7859138962/ao2c03960_0001.jpg

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