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Dissolution/reprecipitation technique for waste polyolefin recycling using new pure and blend organic solvents

机译:使用新的纯有机溶剂和混合有机溶剂的废聚烯烃回收的溶解/再沉淀技术

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Restoration of waste polymer based on low-density polyethylene (LDPE), high-density polyethylene (HDPE) and polypropylene (PP) is studied using the dissolution/reprecipitation method. In this technique, pure turpentine, turpentine/petroleum ether (PetE) and turpentine/benzene as solvents with different fractions and PetE and n-hexane as non-solvents were examined. Commercial polymer products (packaging food, bags, laboratory plastic materials, detergent containers) used as raw materials were optimized with model polymers. Polymer recoveries in every case were <94%. Fourier transform infrared (FTIR) spectra and tensile mechanical properties of the samples before and after recycling were measured. Potential recycling-based degradation of the polymer was further investigated by measuring the thermal properties (melting point and crystallinity), before and after recycling, using differential scanning calorimetry (DSC). The blend solvents were seen as good solvents for all polyole-fins used and the dissolution temperature was less than the pure solvent at the same time. High reconditioning was observed in most recycled samples, with no significant difference from the virgin materials. The studied technique seems to be viable for waste polyolefin polymer recycling.
机译:使用溶解/再沉淀方法研究了基于低密度聚乙烯(LDPE),高密度聚乙烯(HDPE)和聚丙烯(PP)的废聚合物的修复。在该技术中,检查了具有不同馏分的纯松节油,松节油/石油醚(PetE)和松节油/苯以及非溶剂的PetE和正己烷。使用模型聚合物对用作原料的商业聚合物产品(包装食品,袋子,实验室塑料材料,洗涤剂容器)进行了优化。每种情况下的聚合物回收率均小于94%。测量了回收前后样品的傅立叶变换红外(FTIR)光谱和拉伸机械性能。通过使用差示扫描量热法(DSC)在回收之前和之后测量热性质(熔点和结晶度),进一步研究了聚合物潜在的基于回收的降解。对于所有使用的多元醇翅片,共混溶剂被视为良好的溶剂,并且溶解温度同时低于纯溶剂。在大多数回收的样品中均观察到高修复度,与原始材料无显着差异。所研究的技术对于废聚烯烃聚合物的回收似乎是可行的。

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