Garskaite Edita, Balciunas Giedrius, Drienovsky Marian, Sokol Denis, Sandberg Dick, Bastos Alexandre C, Salak Andrei N
Wood Science and Engineering, Department of Engineering Sciences and Mathematics, Luleå University of Technology Forskargatan 1 SE-931 87 Skellefteå Sweden
Laboratory of Thermal Insulating Materials and Acoustics, Institute of Building Materials, Vilnius Gediminas Technical University Linkmenu g. 28 Vilnius LT-08217 Lithuania.
RSC Adv. 2023 Feb 16;13(9):5813-5825. doi: 10.1039/d3ra00305a. eCollection 2023 Feb 14.
Dicalcium phosphate dihydrate (CaHPO·2HO, DCPD, brushite) crystals were synthesised within Scots pine sapwood a wet-chemistry route from aqueous solutions of Ca(CHCOO) and NHHPO salts. SEM/EDS analysis was used to assess the saturation of the wood cell lumina and cell wall as well as morphological features and elemental composition of the co-precipitated mineral. Brushite mineral crystallization and crystallite growth within the wood matrix was studied by XRD. The chemical composition of the mineral before and after the dissolution was evaluated using FTIR spectroscopy. The overall impact of brushite on the thermal behaviour of wood was studied by TGA/DSC and TGA/DTA/MS analysis under oxidative and pyrolytic conditions. Bending and compression strength perpendicular and parallel to the fibre directions as well as bending strengths in longitudinal and transverse directions of the mineralised wood were also evaluated. Results indicate the viability of the wet-chemistry processing route for wood reinforcement with crystalline calcium phosphate (CaP)-based minerals, and imply a potential in producing hybrid bio-based materials that could be attractive in the construction sector as an environmentally friendly building material.
通过湿化学方法,以醋酸钙(Ca(CH₃COO)₂)和磷酸二氢铵(NH₄H₂PO₄)盐的水溶液在苏格兰松边材中合成了二水磷酸氢钙(CaHPO₄·2H₂O,DCPD,透钙磷石)晶体。采用扫描电子显微镜/能谱分析(SEM/EDS)来评估木材细胞腔和细胞壁的饱和度以及共沉淀矿物的形态特征和元素组成。利用X射线衍射(XRD)研究了木材基质中透钙磷石矿物的结晶和微晶生长情况。使用傅里叶变换红外光谱(FTIR)对溶解前后矿物的化学成分进行了评估。通过热重分析/差示扫描量热法(TGA/DSC)以及在氧化和热解条件下的热重分析/差热分析/质谱联用(TGA/DTA/MS)分析,研究了透钙磷石对木材热行为的总体影响。还评估了矿化木材在垂直和平行于纤维方向的弯曲强度和抗压强度以及纵向和横向的抗弯强度。结果表明,采用基于结晶磷酸钙(CaP)矿物的湿化学处理路线对木材进行增强是可行且可行的,并意味着生产混合生物基材料具有潜力,这种材料作为一种环保建筑材料在建筑领域可能具有吸引力。