Structural Materials Research Institute, National Institute of Advanced Industrial Science and Technology, Nagoya, 463-8560, Japan.
Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601, Japan.
Sci Rep. 2018 Jun 29;8(1):9819. doi: 10.1038/s41598-018-28230-2.
The purpose of the present study is to clarify the diffusion of non-volatile substances into cell walls during the conditioning procedure under varying relative humidities (RH). In this paper, wood blocks were impregnated using an aqueous solution of melamine formaldehyde (MF), and they were subsequently conditioned under RHs of 11, 43, and 75%. The solute that diffused into the cell walls was visualized using time-of-flight secondary ion mass spectrometry (TOF-SIMS). The volumetric relative swelling of the samples during the conditioning procedure was calculated. The results showed increased cell wall swelling at higher RH, which may have been caused by higher MF diffusion into the cell walls and/or higher moisture content. Cryo-TOF-SIMS measurements showed that more cell cavities were unfilled with MF at higher RH, indicating that most of the MF diffused from the cell cavities into the cell walls. The relative intensity of MF in the cell walls of the cured samples was evaluated from dry-TOF-SIMS images, which showed a higher relative intensity of MF in the cell walls at higher RH. With the ability to visualize and semi-quantitatively evaluate the solute in cell walls, TOF-SIMS will serve as a powerful tool for future studies of solute diffusion mechanisms in solution-impregnated wood.
本研究旨在阐明在不同相对湿度 (RH) 下的预处理过程中非挥发性物质向细胞壁扩散的情况。在本论文中,使用三聚氰胺甲醛 (MF) 的水溶液对木块进行浸渍,然后在 RH 为 11%、43%和 75%的条件下进行预处理。使用飞行时间二次离子质谱 (TOF-SIMS) 可视化扩散到细胞壁的溶质。计算了样品在预处理过程中的体积相对溶胀。结果表明,较高的 RH 会导致细胞壁溶胀增加,这可能是由于 MF 向细胞壁中的更高扩散和/或更高的水分含量所致。低温 TOF-SIMS 测量表明,在较高 RH 下,更多的细胞腔没有被 MF 填充,这表明大多数 MF 从细胞腔扩散到细胞壁中。通过对干 TOF-SIMS 图像评估固化样品细胞壁中 MF 的相对强度,结果表明 RH 较高时细胞壁中 MF 的相对强度更高。TOF-SIMS 能够可视化和半定量评估细胞壁中的溶质,它将成为未来研究溶液浸渍木材中溶质扩散机制的有力工具。