首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Solid-phase photocatalytic degradation of PVC by tungstophosphoric acid - a novel method for PVC plastic degradation
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Solid-phase photocatalytic degradation of PVC by tungstophosphoric acid - a novel method for PVC plastic degradation

机译:钨磷酸固相光催化降解PVC-一种降解PVC塑料的新方法

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The solid-phase photocatalytic degradation of polyvinyl chloride (PVC) films by tungstophosphoric acid (HPW) was investigated based on the unique redox property of heteropolyacid. PVC films doped with HPW (1.5, 2.0 wt.%) were prepared and their photocatalytic degradation was carried out under the irradiation of UV with wavelength 254 nm and visible light above 300 nm. The photocatalytic activity was determined by weight loss monitoring and scanning electron microscopic (SEM) analysis. HPW-doped PVC showed highly enhanced photodegradation. Irradiating the composite film for 250 It by visible light reduced its weight up to 70%. The photocatalytic degradation of PVC films embedded with semiconductor nanomaterials TiO2 and US was also investigated and compared with that of HPW-PVC. It was noticed that TiO2-PVC and CdS-PVC induced less degradation. The SEM images of PVC composite films further confirmed the above results. The photodegradation of PVC by boric acid and such acid catalysts implied that the high photocatalytic activity of HPW-doped PVC film was due to the unique redox property of HPW, rather than the acidity. FT-IR and UV-vis spectroscopic studies provided some preliminary results about the structure of the HPW-PVC composite system and will lay some foundations for further studying the photocatalytic mechanism. The advantages for PVC photodegradation by heteropoly compound were assessed. They show that this method possesses feasibility and, from the point of view of plastics assorting with environmental protection, provides a new way to develop photodegradable plastics. (C) 2004 Elsevier B.V. All rights reserved.
机译:基于杂多酸独特的氧化还原特性,研究了钨磷酸(HPW)固相光催化降解聚氯乙烯(PVC)薄膜。制备了掺有HPW(1.5,2.0重量%)的PVC膜,并且在波长254nm的UV和300nm以上的可见光的照射下进行了光催化降解。通过失重监测和扫描电子显微镜(SEM)分析确定光催化活性。掺HPW的PVC表现出高度的光降解作用。用可见光照射复合膜达250 It,可将其重量减少多达70%。还研究了嵌入半导体纳米材料TiO2和US的PVC膜的光催化降解并将其与HPW-PVC进行了比较。注意到TiO2-PVC和CdS-PVC引起的降解较少。 PVC复合膜的SEM图像进一步证实了以上结果。硼酸和此类酸催化剂对PVC的光降解表明,掺HPW的PVC膜的高光催化活性是由于HPW的独特氧化还原特性,而不是酸性。 FT-IR和UV-vis光谱研究为HPW-PVC复合体系的结构提供了一些初步的结果,并为进一步研究光催化机理奠定了基础。评估了杂多化合物对PVC光降解的优势。他们表明该方法具有可行性,并且从塑料与环境保护的角度出发,为开发可光降解塑料提供了一种新途径。 (C)2004 Elsevier B.V.保留所有权利。

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