Water absorption and swelling of Betula pendula ROTH wood modified with oligomers from by-products of polybutadiene production

Nadezhda Nikulina, Olga Dornyak, A. Dmitrenkov, Alexander Vostrikov, Konstantin Zhuzhukin, Natalya Chernaya
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Abstract

Currently, natural wood and products based on it are in high demand. The technology of impregnation of low-value wood species on the example of B. pendula ROTH with an oligomeric material obtained from rubber production waste has been studied. Oligomers with a styrene content of 10 and 90% were obtained. In the first case, the low molecular weight copolymer had a molecular weight of 1100-1300, and in the second - 1700-2000. Impregnation of B. pendula ROTH wood was carried out in a solution of the obtained oligomer in toluene. In order to speed up the drying process of the protective coating and increase its strength, NF-1 siccative was introduced into the impregnation composition in an amount of 4-5%. The impregnation was carried out at temperatures of 60 and 120 ˚C, followed by heat treatment at temperatures of 100 and 160 ˚C. In the work, using the theory of experimental planning, a regression model was created that made it possible to describe the effects of a number of technological indicators on increasing the water and moisture resistance of modified wood. Verification of the coefficients of the models for significance was carried out using the Student's criterion. The obtained regression models make it possible to predict the characteristics of water resistance of birch wood modified due to its impregnation with a low-molecular copolymer containing styrene at specified values of technological parameters - the styrene content in the impregnating composition, the values of the impregnation temperature and heat treatment. It is shown that in order to increase the efficiency of the impregnation and heat treatment process, it is necessary to adhere to the minimum values of the considered temperature intervals, and the styrene content in the applied oligomeric product should be ~ 90% by weight. Modifying treatment of wood with an oligomer from by-products of polybutadiene production makes it possible to improve its water resistance. The use of the proposed impregnating compounds contributes to the disposal of waste and by-products of polybutadiene production.
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用聚丁二烯生产过程中产生的副产品低聚物改性的桦木 ROTH 的吸水性和膨胀性
目前,天然木材及其制品需求量很大。以 B. pendula ROTH 为例,研究了用从橡胶生产废料中提取的低聚物浸渍低价值木材品种的技术。分别获得了苯乙烯含量为 10% 和 90% 的低聚物。第一种情况下,低分子量共聚物的分子量为 1100-1300,第二种情况下为 1700-2000。在所得低聚物的甲苯溶液中对 B. pendula ROTH 木材进行了浸渍。为了加快保护涂层的干燥过程并增加其强度,在浸渍组合物中加入了 4-5% 的 NF-1 吸湿剂。浸渍在 60 和 120 ˚C 温度下进行,然后在 100 和 160 ˚C 温度下进行热处理。在这项工作中,利用实验规划理论建立了一个回归模型,该模型可以描述一些技术指标对提高改性木材防水防潮性能的影响。使用学生标准对模型系数的显著性进行了验证。根据所获得的回归模型,可以预测在特定技术参数值(浸渍成分中的苯乙烯含量、浸渍温度值和热处理值)下,使用含苯乙烯的低分子共聚物浸渍改性桦木的抗水特性。结果表明,为了提高浸渍和热处理过程的效率,有必要遵守所考虑的温度区间的最小值,并且应用低聚物产品中的苯乙烯含量应达到约 90% (按重量计)。用聚丁二烯生产过程中产生的副产品低聚物对木材进行改性处理,可以提高木材的耐水性。使用建议的浸渍化合物有助于处理聚丁二烯生产过程中产生的废物和副产品。
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