首页> 外文期刊>Journal of material cycles and waste management >Processing plastics from ASR/ESR waste: separation of poly vinyl chloride (PVC) by froth flotation after microwave-assisted surface modification
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Processing plastics from ASR/ESR waste: separation of poly vinyl chloride (PVC) by froth flotation after microwave-assisted surface modification

机译:从ASR / ESR废料中加工塑料:在微波辅助表面改性后通过泡沫浮选分离聚氯乙烯(PVC)

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The feasibility of the selective surface hydrophilization of poly vinyl chloride (PVC) using microwave treatment to facilitate the separation of PVC via froth flotation from automobile shredder residue (ASR) and electronic waste shredder residue (ESR) was evaluated. In the presence of powder-activated carbon (PAC), 60-s microwave treatment selectively enhanced the hydrophilicity of the PVC surface (i.e., the PVC contact angle decreased from 86.8 degrees to 69.9 degrees). The scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) results are consistent with increased hydrophilic functional groups (i.e., ether, hydroxyl, and carboxyl), amounting to significant changes in the morphology and roughness of the PVC surface after treatment. After only 60 s of microwave treatment, 20 % of the PVC was separated in virgin and ASR/ESR plastics with 33 and 29 % purity, respectively, as settled fractions by froth flotation at a 150 rpm mixing speed. The microwave treatment with the addition of PAC had a synergetic effect with the froth flotation, which brought about 100 and 90 % selective separation of PVC from the other virgin and ASR/ESR plastics, with 91 and 82 % purity. The use of the combined froth flotation and microwave treatments is an effective technology for separating PVC from hazardous waste plastics.
机译:评估了采用微波处理对聚氯乙烯(PVC)进行选择性表面亲水化的可行性,以促进通过泡沫浮选从汽车切碎机残渣(ASR)和电子废料切碎残渣(ESR)中分离PVC。在粉末活性炭(PAC)的存在下,60秒的微波处理选择性地增强了PVC表面的亲水性(即PVC接触角从86.8度降低到69.9度)。扫描电子显微镜(SEM)和X射线光电子能谱(XPS)结果与增加的亲水性官能团(即醚,羟基和羧基)一致,处理后的PVC表面形态和粗糙度发生了显着变化。仅用60秒的微波处理后,通过泡沫浮选以150 rpm的混合速度将20%的PVC分别分离为纯净的和33%和29%纯度的ASR / ESR塑料,作为沉降部分。添加PAC的微波处理与泡沫浮选具有协同作用,从而使PVC与其他原始塑料和ASR / ESR塑料选择性分离,分别具有100%和90%的纯度,纯度分别为91%和82%。泡沫浮选和微波处理相结合的使用是一种将PVC与有害废塑料分离的有效技术。

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