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首页> 外文期刊>Chemosphere >Acetaldehyde gas removal by a nylon film-TiO_2 composite sheet prepared on a paper surface using interfacial polymerization and electrostatic interactions
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Acetaldehyde gas removal by a nylon film-TiO_2 composite sheet prepared on a paper surface using interfacial polymerization and electrostatic interactions

机译:使用界面聚合和静电相互作用在纸张上制备的尼龙薄膜-TiO_2复合片材通过尼龙薄膜-TiO_2复合板除去乙醛气体

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In this study, preparation of a nylon film-TiO2 composite sheet with both physical durability under UV irradiation and TiO2 photocatalysis functionality was investigated. First, a nylon film was directly prepared on paper by interfacial polymerization using ethylenediamine and terephthaloyl chloride in a cyclohexane-chloroform mixture (3:1, v/v). Next, the nylon-coated paper was treated with tetraethyl orthosilicate and 3-aminopropyltrimethoxysilane to prepare polysiloxane on its surface. This was followed by fixation of TiO2 powder via electrostatic interactions with the polysiloxane. Although nylon films on paper usually decompose under TiO2 photocatalysis, the nylon film-TiO2 composite sheets prepared using 0.5%-1.0% (w/v) TiO2 did not decompose under photocatalysis. The residual rate of strength of the sheet remained at almost 100% after 240 h, which could be attributed to protection of the sheet by the polysiloxane layer. The nylon film was fibrous and could effectively adsorb acetaldehyde gas. All of the nylon film-TiO2 composite sheets prepared using 0.5% -5.0% TiO2 photocatalytically removed acetaldehyde under UV irradiation and no acetaldehyde gas was detected after 240-300 min. These results show the nylon film-TiO2 composite sheet can effectively remove acetaldehyde gas by photocatalysis and adsorption and could be applied to removal of volatile organic compounds in indoor air. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在该研究中,研究了在紫外线照射和TiO 2光催化官能团下具有物理耐久性的尼龙薄膜-TiO2复合板的制备。首先,通过在环己烷 - 氯仿混合物中使用乙二胺和对苯二甲酰氯酰氯(3:1,v / v),通过界面聚合直接在纸上直接制备尼龙薄膜。接下来,用四乙基外硅酸盐和3-氨基丙基三甲氧基硅烷处理尼龙涂布的纸,以在其表面上制备聚硅氧烷。然后通过与聚硅氧烷的静电相互作用固定TiO2粉末。尽管在纸上的尼龙薄膜通常在TiO 2光催化下分解,但是使用0.5%-1.0%(w / v)TiO2制备的尼龙薄膜-tio2复合片在光催化下没有分解。 240小时后,片材的残余速率仍然在近100%以上,其可归因于聚硅氧烷层的保护。尼龙膜是纤维状的,可有效吸附乙醛气体。使用0.5%-5.0%TiO 2在紫外线照射下使用0.5%-5.0%TiO 2制备的所有尼龙薄膜-TiO 2复合片材在240-300分钟后检测到乙醛辐照上。这些结果表明,尼龙薄膜-TiO2复合板可以通过光催化和吸附有效地除去乙醛气体,并且可以应用于在室内空气中除去挥发性有机化合物。 (c)2020 elestvier有限公司保留所有权利。

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