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采用 HO/超声灌溉对危险氯 PVC 进行可持续水合作用,从塑料废物中分离出来。

Sustainable hydrophilization to separate hazardous chlorine PVC from plastic wastes using HO/ultrasonic irrigation.

机构信息

Faculty of Environment and Labour Safety, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

Department of Civil and Environmental Engineering, University of Ulsan, Daehakro 93, Namgu, Ulsan 680-749, Republic of Korea.

出版信息

Waste Manag. 2019 Apr 1;88:28-38. doi: 10.1016/j.wasman.2019.03.033. Epub 2019 Mar 19.

Abstract

Polyvinyl chloride (PVC) products comprise a large portion of plastic wastes and cause severe environmental burdens in thermal recycling such as toxic release and disposal difficulties. Selective separation methods for PVC containing hazardous chlorine are required for the development of suitable disposal or material recycling processes. However, separating PVC selectively from municipal plastic waste mixtures is difficult due to their similar hydrophobic surface and appearance densities. This study presents a one-step, selective separation technique for PVC using HO solution under ultrasonic irrigation to promote the selective development of hydrophilicity only on the PVC surface. The combined treatment helped to decrease air bubbles attached on the PVC surface because of increased wettability, which allowed the treated PVC to settle on the bottom of the flotation reactor. However, the remaining plastic wastes were easily floated off because they maintained their hydrophobicity. The combined treatment with a low concentration of 3% HO and ultrasonic irrigation for 30 min afforded 100% purity and recovery of the PVC separated from the municipal plastic waste mixture. This proposed treatment is therefore a promising and inexpensive way to improve plastic recycling quality through selective PVC separation by the selective development of hydrophilicity on its surface.

摘要

聚氯乙烯(PVC)制品在热回收过程中占塑料废物的很大一部分,并且会造成严重的环境负担,例如有毒物质的释放和处理困难。为了开发合适的处理或材料回收工艺,需要对含有危险氯的 PVC 采用选择性分离方法。然而,由于它们具有相似的疏水性表面和外观密度,因此从城市塑料废物混合物中选择性地分离 PVC 是困难的。本研究提出了一种使用 HO 溶液在超声波灌溉下的一步法选择性分离 PVC 的技术,以促进仅在 PVC 表面选择性地发展亲水性。由于润湿性的增加,联合处理有助于减少附着在 PVC 表面上的气泡,这使得处理过的 PVC 能够沉降在浮选反应器的底部。然而,其余的塑料废物很容易被浮选掉,因为它们保持疏水性。用 3%HO 和超声波灌溉处理 30 分钟的低浓度组合处理,可以从城市塑料废物混合物中获得 100%纯度和回收率的 PVC 分离。因此,通过在其表面选择性地发展亲水性来选择性地分离 PVC,这种处理方法是提高塑料回收质量的一种有前途且廉价的方法。

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