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Thermal Treatment of Wood Residues and Effective Utilization of Its Products to Improve Rubberwood Manufacturing Process

机译:木材残留物的热处理和有效利用其产品以改善橡胶木制造工艺

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References(18) The main aim of this paper is to improve the current sawmilling process by utilization of the products from thermal treatment of wood residues. Firstly, batch thermal treatments of rubberwood sawdust were conducted under various conditions to study the effects of the conditions on the yields and the characteristics of the products, pyroligneous acid and activated carbons. Sufficient amounts of crude pyroligneous acid and activated carbon were obtained. In all conditions, the produced pyroligneous acid contained the same amount of components which are essential as preservative, e.g., phenolic compounds. The activated carbon especially that produced under steam atmosphere exhibited a relatively high surface area that is suitable as an adsorbent. Secondly, the model aqueous solution of a single harmful phenolic compound contained in the pyroligneous acid was subjected to batch equilibrium adsorptions with the activated carbon prepared by the above treatment. The activated carbon effectively adsorbed the phenolic compounds in the pyroligneous acid. The overall capacity of the rubberwood activated carbon to fully adsorb any component in pyroligneous acid was considerably higher than the amount of the component produced from the same rubberwood sawdust, showing the feasibility of treating the wastewater containing pyroligneous acid with the activated carbon. Finally, based on these experimental results, we synthesized the outline of an improved sawmilling process: the wood residues are thermally treated to obtain pyroligneous acid, activated carbon, and off-gas; the pyroligneous acid is used as wood preservative instead of the conventional toxic one, the wastewater containing the pyroligneous acid is treated by the activated carbon, and the off-gas with addition of residues is used as a heat and energy source for these additional operations. The proposed method is promising and reliable to give the desired performance to improve the manufacturing process and overcome environmental problems.
机译:参考文献(18)本文的主要目的是通过利用木材残留物热处理产生的产品来改善当前的锯木工艺。首先,在不同条件下对橡胶木锯末进行分批热处理,以研究该条件对产品,焦木酸和活性炭的产量和特性的影响。获得了足够量的粗焦木酸和活性炭。在所有条件下,所产生的焦木酸都含有与防腐剂相同数量的必需成分,例如酚类化合物。活性炭,特别是在蒸汽气氛下产生的活性炭,具有较高的表面积,适合用作吸附剂。其次,将焦木酸中所含的单一有害酚类化合物的模型水溶液用通过上述处理制备的活性炭进行间歇平衡吸附。活性炭有效地吸附了焦木酸中的酚类化合物。橡胶木活性炭完全吸附焦木酸中任何组分的总容量大大高于同一橡胶木锯屑产生的组分的量,这表明用活性炭处理含焦木酸废水的可行性。最后,基于这些实验结果,我们综合了一种改进的锯木厂工艺的轮廓:对木材残渣进行热处理,以获得焦木酸,活性炭和废气;对木材残渣进行热处理。焦木酸被用作木材防腐剂,而不是传统的有毒酸木盐,含有焦木酸的废水经活性炭处理,废气中还添加了残留物,用作这些额外操作的热源。所提出的方法是有希望且可靠的,以赋予期望的性能以改善制造工艺并克服环境问题。

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