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Dewatering Green Sapwood Using Carbon Dioxide Undergoing Cyclical Phase Change between Supercritical Fluid and Gas

机译:使用二氧化碳在超临界流体和天然气之间进行周期相变的脱水绿树水

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摘要

Conventional kiln drying of wood operates by the evaporation of water at elevated temperature. In the initial stage of drying, mobile water in the wood cell lumen evaporates. More slowly, water bound in the wood cell walls evaporates, requiring the breaking of hydrogen bonds between water molecules and cellulose and hemicellulose polymers in the cell wall. An alternative for wood kiln drying is a patented process for green wood dewatering through the molecular interaction of supercritical carbon dioxide with water of wood cell sap. When the system pressure is reduced to below the critical point, phase change from supercritical fluid to gas occurs with a consequent large change in CO2 volume. This results in the efficient, rapid, mechanical expulsion of liquid sap from wood. The end-point of this cyclical phase-change process is wood dewatered to the cell wall fibre saturation point. This paper describes dewatering over a range of green wood specimen sizes, from laboratory physical chemistry studies to pilot-plant trials. Magnetic resonance imaging and nuclear magnetic resonance spectroscopy were applied to study the fundamental mechanisms of the process, which were contrasted with similar studies of conventional thermal wood drying. In conclusion, opportunities and impediments towards the commercialisation of the green wood dewatering process are discussed.
机译:常规的木材干燥通过升高温度蒸发水进行操作。在干燥的初始阶段,木细胞内腔中的移动水蒸发。更慢,在木细胞壁中绑定的水蒸发,需要在水分子和纤维素和细胞壁中的半纤维素聚合物之间断开氢键。木窑干燥的替代方案是通过与木细胞液水的水的超临界二氧化碳的分子相互作用,是绿色木材脱水的专利方法。当系统压力降低到临界点以下时,从超临界流体到气体的相变,因此CO 2体积的大变化。这导致来自木材的有效,快速,机械驱逐的液体液。该周期相变过程的末端是木材脱水到细胞壁纤维饱和点。本文描述了从实验室物理化学研究到飞行员试验的一系列绿色木材样本尺寸的脱水。应用磁共振成像和核磁共振光谱法研究该方法的基本机制,与常规热木干燥的类似研究形成鲜明对比。总之,讨论了绿色木材脱水过程商业化的机遇和障碍。

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