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Fenton treatment for flotation separation of polyvinyl chloride from plastic mixtures

机译:FENTON处理从塑料混合物中聚氯乙烯的浮选分离

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The generation of waste plastics has been radically promoted by large-scale consumption and rapid upgrading of plastic products in the last decades, which brings serious threats to environment and management. Combined with Fenton treatment, froth flotation was evaluated to separate polyvinyl chloride (PVC) from waste plastics for recycling. The floatability of polystyrene (PS) and polycarbonate (PC) has a dramatic decrease after Fenton treatment, while the floatability of PVC is not affected. Contact angle, Fourier transform infrared spectroscopy (FT-IR), X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM) were conducted to ascertain the mechanism of Fenton treatment. The reduction of PS and PC floatability is attributed to the increase of surface wettability confirmed by contact angle measurement. FT-IR and XPS analysis confirmed that hydrophilic oxygen-containing groups were introduced on PC and PS surface. SEM images indicated that Fenton treatment considerably increased the surface roughness of PC and PS. With respect to flotation separation PVC from plastic mixtures, optimum conditions are molar ratio (H2O2/Fe2+) 7500, H2O2 concentration 0.2 M/L, treatment 2 min, temperature 25 degrees C, pH 5.8, frother concentration 15 mg/L and flotation time 4 min. Particle size, mass fractions and reuse of plant effluent were also investigated. After Fenton treatment under optimum conditions, floatation separation of PVC from plastic mixtures was accomplished with high purity and recovery. The purity and the recovery of PVC are up to 99.26% and 100% respectively. The purity and the recovery of other plastics are up to 100% and 97.20% respectively. Consequently, flotation combined with Fenton treatment is a simple, environmental friendly and cost-effective method for separation of PVC pfrom plastic mixtures. (C) 2017 Elsevier B.V. All rights reserved.
机译:在过去几十年中,通过大规模消耗和塑料制品的大规模消耗和迅速升级,从根本上促进了废塑料的产生,这为环境和管理带来了严重的威胁。结合芬顿治疗,评价泡沫浮选以将聚氯乙烯(PVC)与废塑料分离以进行再循环。聚苯乙烯(PS)和聚碳酸酯(PC)的可浮动性在FENTON处理后具有显着的降低,而PVC的可浮动性不受影响。接触角,傅里叶变换红外光谱(FT-IR),X射线光电子能谱(XPS)和扫描电子显微镜(SEM)以确定FENTON治疗的机制。 PS和PC浮动性的降低归因于通过接触角测量证实的表面润湿性的增加。 FT-IR和XPS分析证实,在PC和PS表面上引入了亲水的含氧基团。 SEM图像表明FENTON处理显着增加了PC和PS的表面粗糙度。关于浮选分离PVC来自塑料混合物,最佳条件是摩尔比(H2O2 / Fe2 +)7500,H 2 O 2浓度0.2 m / L,处理2分钟,温度25℃,pH 5.8,浓度浓度为15mg / L和浮选时间。 4分钟。还研究了粒度,质量分数和植物流出物的再利用。在最佳条件下芬顿治疗后,通过高纯度和回收率完成PVC的PVC漂浮分离。 PVC的纯度和回收率分别高达99.26%和100%。其他塑料的纯度和回收率分别为100%和97.20%。因此,浮选联合FENTON治疗是一种简单,环保且经济高效的方法,用于分离PVC PFROM塑料混合物。 (c)2017 Elsevier B.v.保留所有权利。

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