氨态铜碳点注入活树后杨木的抗腐性和机械强度

Liang Wen, Zihao Wang, Xuan Wang, Qin Xu, Zhu Liu, Wanwan Zhao, Yaoli Zhang, Changlei Xia, Jianxiong Lv, Liping Cai
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摘要

【摘要】活树注射处理作为一种前沿的木材防腐技术,已受到广泛关注。木材防腐剂被注入树干下部,随后随着木质部汁液通过蒸腾运输。本实验以氨铜季铵盐(ACQ)和碳点(CDs)为原料合成了水性木材防腐剂,并对其性能进行了测定。测定了处理后活性杨树不同高度上ACQ/CDs的分布、承载能力和抗腐性。同时,探讨了注射处理、浸没处理和压力处理三种处理方法对木材抗腐性能和力学性能的影响。结果表明,注射处理后,木材防腐剂能很好地渗透到木质部。注射处理后不同高度的木材均具有良好的耐腐性。抗腐性随树高的增加而降低,这是由于防腐剂在树内达到不同水平的时间变化所致。与浸泡和压力处理相比,注射处理可以有效地减少长期防腐浸泡和压力施加对处理木材力学性能的影响,同时保持良好的耐腐性。关键词:注射处理木材防腐耐腐力学性能披露声明作者未报告潜在利益冲突。本研究受国家自然科学基金资助[批准号:31670558]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decay resistance and mechanical strength of poplar wood treated after injection treatment to living trees using ammoniacal copper quaternary/carbon dots
ABSTRACTAs a cutting-edge wood preservation technology, injection treatment to living trees has gained traction to prevent fungal infestation. Wood preservatives are injected into the lower part of the trunk and subsequently transported with xylem sap through transpiration. In this experiment, the waterborne wood preservative was synthesized by Ammoniacal Copper Quaternary (ACQ) and carbon dots (CDs), and its characteristics were determined. The distribution, loading capacity, and decay resistance of ACQ/CDs at different heights of the living poplar trees after the treatment were examined. Meanwhile, the effects of three methods, i.e. injection treatment, immersion treatment, and pressure treatment on the decay resistance and mechanical properties of the treated wood were explored. The results showed that the wood preservative penetrated well into the xylem after the injection treatment. The wood at different heights after the injection treatment had good decay resistance. The decay resistance diminished with the rise in tree height, attributable to variations in the timing of the preservative reaching different levels within the tree. When compared with the immersion and pressure treatments, the injection treatment can effectively reduce the influence of long-term preservative soaking and pressure application on the mechanical properties of the treated wood, while upholding commendable decay resistance.KEYWORDS: Injection treatmentwood preservationdecay resistancemechanical properties Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThis work was supported by National Natural Science Foundation of China [grant number 31670558].
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