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首页> 外文期刊>Current Research Journal of Biological Sciences >Chemical, Color and Strength Changes of Hot Oil Treatment Process on 15-Year-Old Cultivated Acacia hybrid
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Chemical, Color and Strength Changes of Hot Oil Treatment Process on 15-Year-Old Cultivated Acacia hybrid

机译:15年栽培相思杂交种热油处理过程的化学,颜色和强度变化

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The chemical, color and strength properties of thermally modified cultivated 15-year-old Acacia hybrid were investigated. Logs of A. hybrid were harvested and cut at the bottom, middle and top sections. The wood later underwent hot oil thermal modification using palm oil at temperatures 180, 200 and 220oC for 30, 60 and 90 min. Untreated wood was used as control. The hot oil thermal modification process caused some features changed in the chemical composition, color appearances and strength properties of A. hybrid wood. Parameters such as temperatures and treatment time were closely monitored as they influence the chemical, color and strength changes in the treated wood. Temperatures of 180, 200 and 220oC, and treatment time of 1, 2 and 3 h. were used in the study. The degradation in holocellulose, cellulose, and hemicellulose contents was recognized when acacia woods were exposed to oil thermally modified process. Holocellulose and celulose degraded with the increasing of treatment temperature and duration of heating exposure, while lignin showed the increment in content through this treatment. The color changes in the sapwood and heartwood were measured using the Minolta Chroma-meter CR-310 and the results are presented according to the CIE L* a* b* color co-ordinates system. The results show that temperature at certain treatment time enhanced and darkened the treated wood. The color of the treated sapwood can be enhanced to match the color of the natural A. hybrid heartwood. The strength properties of the oil heat treated A. hybrid wood decreases in values of both MOR and MOE throughout the treatment process. The decreases in values were influenced by temperature and duration of the treatment.
机译:研究了热改性栽培的15岁相思树的化学,颜色和强度特性。收获杂种的原木并在底部,中部和顶部切割。木材随后使用棕榈油在180、200和220oC的温度下进行热油热改性30、60和90分钟。未经处理的木材用作对照。热油热改性过程导致A.杂种木材的化学成分,颜色外观和强度特性发生了一些变化。温度和处理时间等参数会受到密切监控,因为它们会影响处理后木材的化学,颜色和强度变化。温度为180、200和220oC,处理时间为1、2和3小时。在研究中使用。当相思木暴露于油热改性过程中时,可以确认全纤维素,纤维素和半纤维素含量的降低。随着处理温度和暴露时间的延长,纤维素和纤维素降解,而木质素通过该处理显示含量增加。使用Minolta色度计CR-310测量边材和心材的颜色变化,并根据CIE L * a * b *颜色坐标系显示结果。结果表明,在一定的处理时间下温度会升高并使处理过的木材变暗。处理过的边材的颜色可以得到增强,以匹配天然曲霉杂种心材的颜色。在整个处理过程中,经过油热处理的A.杂种木材的强度特性的MOR和MOE值均降低。值的降低受温度和治疗时间的影响。

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