首页> 外文期刊>Journal of Hazardous Materials >Separation of poly vinyl chloride (PVC) from automobile shredder residue (ASR) by froth flotation with ozonation
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Separation of poly vinyl chloride (PVC) from automobile shredder residue (ASR) by froth flotation with ozonation

机译:泡沫浮选-臭氧分离法从汽车切碎残渣(ASR)中分离聚氯乙烯(PVC)

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The purpose of this study is to develop froth flotation to separate polyvinyl chloride (PVC) from automobile shredder residue (ASR) plastic mixtures of variable composition. Some polymers in ASR polymer mixtures have similar density and hydrophobicity with PVC and thus selective flotation of PVC from ASR polymer mixtures cannot be achieved. The present study focused on the surface modification of PVC with ozonation, and then the modified PVC can be separated from other polymers by the following froth flotation. The results of this study indicate that the selective recovery of PVC from real ASR polyethylene tetra pethelate (PET), polymethyl methacrylate (PMMA), polybutyl methacralate (PBMA), ethyl acrylate (EA), polycarbonate (PC) and rubber mixtures can be accomplished in a three-step process involving a gravity separation, ozonation and froth flotation. The rubber was removed from other heavy ASR (PVC, PET, PMMA, PBMA, EA and PC) polymers by froth flotation without mixing. It was found that ozonation process produced the desired difference in contact angle required (from 89.5 to 73.0°) for separation of PVC from other heavy ASR polymers, whereas the contact angles of other polymers was slightly decreased. The most of the load ASR, i.e. about 72.4% is floated away and 27.6% was settled down. The highest component 96.7% of PVC was recovered in the settled fraction. As a result of this research effort, the surface modification of PVC with ozonation can be efficiently useful to separate the PVC from other similar density ASR mixed polymers.
机译:这项研究的目的是开发泡沫浮选法,以将聚氯乙烯(PVC)与可变组成的汽车切碎残渣(ASR)塑料混合物分离。 ASR聚合物混合物中的某些聚合物具有与PVC相似的密度和疏水性,因此无法从ASR聚合物混合物中选择性浮选PVC。目前的研究集中在通过臭氧化作用对PVC进行表面改性,然后可以通过以下泡沫浮选将改性的PVC与其他聚合物分离。这项研究的结果表明,可以从真正的ASR聚乙烯四石油醚(PET),聚甲基丙烯酸甲酯(PMMA),聚甲基丙烯酸丁酯(PBMA),丙烯酸乙酯(EA),聚碳酸酯(PC)和橡胶混合物中选择性回收PVC分三步进行,涉及重力分离,臭氧化和泡沫浮选。通过泡沫浮选将橡胶从其他重质ASR(PVC,PET,PMMA,PBMA,EA和PC)聚合物中除去,而无需混合。发现臭氧化过程产生了将PVC与其他重质ASR聚合物分离所需的所需接触角差异(从89.5至73.0°),而其他聚合物的接触角略有降低。负载ASR的大部分(即约72.4%)被浮走,而27.6%的沉降被稳定下来。在沉降的馏分中回收了最高含量为96.7%的PVC。这项研究成果的结果是,通过臭氧处理对PVC进行表面改性可以有效地将PVC与其他类似密度的ASR混合聚合物分离。

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