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Study of the structural properties and degradation of coated wood with polydopamine/hydroxyapatite/chitosan hybrid nanocomposite in seawater

机译:涂层木材与海水中涂层木材/壳聚糖杂交纳米复合材料的结构性及降解研究

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摘要

Increasing environmental concerns and increasing demands for reproducible natural resources have made wood a viable option for use in various industries, particularly the marine industry. In this study, the wood was treated with three coatings, and then its biodegradability in the marine environment was investigated. The first coating, inspired secreted substance from bivalve mollusks called dopamine was used, which has the ability to adhere to different surfaces. The second coating, hydroxyapatite crystals were formed by immersion of treated wood for 14 days in simulated body fluid (SBF) x 1.5 solutions. Extracted chitosan from shrimp waste was used for the third layer. The contact angle (CA) of the treated wood with polydopamine/hydroxyapatite/chitosan showed 130 degrees. The results of FT-IR, XRD, and FE-SEM confirmed the layers on the surface of the wood. In the next step, control and treated woods were exposed to seawater for 6 months. The results showed that the control woods had more color variations than the treated woods with more swelling, more infestation of barnacles. The results of FT-IR and XRD showed that structures of lignin, cellulose, and hemicelluloses of the control wood were more demolished than those of treated wood after immersion in seawater.
机译:越来越多的环境问题和对可重复的自然资源的需求越来越大,使木材成为各种行业,特别是海洋工业的可行选择。在这项研究中,用三种涂层处理木材,然后研究了海洋环境中的生物降解性。使用第一种涂层,从叫做多巴胺的双戊丝软体软体片的第一涂层中,具有粘附到不同表面的能力。通过将处理的木材浸入模拟体液(SBF)×1.5溶液中,通过将处理过的木材浸泡14天来形成第二涂层。从虾废物中提取的壳聚糖用于第三层。处理过的木材与多碳胺/羟基磷灰石/壳聚糖的接触角(CA)显示为130度。 FT-IR,XRD和Fe-SEM的结果证实了木材表面上的层。在下一步中,控制和处理的树木暴露于海水6个月。结果表明,对照树木的颜色变化比经过治疗的树林更肿胀,更染色的胚胎。 FT-IR和XRD的结果表明,在浸入海水后,对照木材的木质素,纤维素和半纤维素的结构比处理过的木材的结构更拆除。

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