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Weathering Properties Of Treated Southern Yellow Pine Wood Examined By X-ray Photoelectron Spectroscopy, Scanning Electron Microscopy and Physical Characterization

机译:X射线光电子能谱,扫描电子显微镜和物理表征检查的南方黄松木材的风化性能

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In this study the weathering behavior of southern yellow pine (SYP) wood samples pretreated in different solutions has been examined using X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM) and various types of physical characterization regarding material loss and discoloration. The treatment solutions include water as a control, a commercially available water repellent (WR) wood treating additive and polyethylene glycol (PEG) products including PEG PLUS~(TM), PEG 8000 solutions and Compound 20M in varying concentrations. All contained the wood preservative chromated copper arsenate (CCA). One sample was treated with a CCA solution only. The treatments were carried out at 20 ℃ and 150 psig for 1/2 h after exposure to vacuum (28 mmHg) for 15 min. Simulated weathering was achieved in an Atlas 65-W Weather-Ometer for 2000 h with both light and dark periods and rain. The temperature ranged from 23 ℃ during the dark cycle to 35 ℃ during the light cycle. With weathering the XPS O/C ratios increase due to oxidation of the surface. Exposure to UV light results in bond breakage and reaction with oxygen in the presence of air to form organic functional groups such as C-O-C-O, O-C-C , C=O and/or O-C-O. These oxidized products can protect the underlying wood from deterioration if they are insoluble in water and remain on the surface as a protective coating. If soluble, rain washes the compounds away and assists in the degradation. Correlated changes are observed in the XPS O/C ratios, the high-resolution XPS C Is spectra, the SEM micrographs and physical measurements including thickness alteration, weight loss, and discoloration by yellowing or whitening of the weathered wood. The PEG treatments are effective in protecting wood with the 2% PEG PLUS treatment providing the best weathering behavior similar to that of the CCA treatment. The WR and water treatments yield the poorest weathering properties.
机译:在这项研究中,已经使用X射线光电子能谱(XPS),扫描电子显微镜(SEM)以及各种类型的有关材料损失和变色的物理表征,研究了在不同溶液中预处理的南部黄松(SYP)木材样品的风化行为。处理溶液包括水作为对照,市售的憎水(WR)木材处理添加剂和聚乙二醇(PEG)产品,包括不同浓度的PEG PLUSTM,PEG 8000溶液和化合物20M。所有都包含木材防腐铬酸砷酸铜(CCA)。一个样品仅用CCA溶液处理。在暴露于真空(28 mmHg)15分钟后,在20℃和150 psig下进行1/2 h的处理。在Atlas 65-W Weather-Ometer中,在有明暗时段和有雨的情况下,进行了2000 h的模拟风化。温度范围从黑暗周期的23℃到明亮周期的35℃。随着风化,由于表面氧化,XPS O / C比增加。暴露于紫外线下会导致键断裂,并在空气存在下与氧反应形成有机官能团,例如C-O-C-O,O-C-C,C = O和/或O-C-O。如果这些氧化产物不溶于水并作为保护涂层保留在表面上,则可以保护下面的木材免于变质。如果可溶,雨水会冲走化合物并帮助降解。在XPS O / C比,高分辨率XPS C Is光谱,SEM显微照片和物理测量值(包括厚度变化,重量损失和风化木材的变黄或变白)中观察到相关的变化。 PEG处理可有效保护木材,采用2%PEG PLUS处理可提供与CCA处理类似的最佳耐候性。 WR和水处理产生最差的耐候性。

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