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Supercritical fluid extraction for purification of waxes derived from polyethylene and polypropylene plastics

机译:超临界流体萃取可纯化聚乙烯和聚丙烯塑料中的蜡

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摘要

Polyethylene (PE) and polypropylene (PP) feedstock contain various additives, such as fillers and colorants, which either degrade or carry through the depolymerization process; thereby causing intense dark colors and a pungent petroleum odor. The combination of color and odor imposes several challenges, limiting the potential markets of the wax products. This study put emphasis on the development of an innovative and environmentally sustainable process based on supercritical fluid extraction (SCFE) to remove organic and inorganic contaminants that cause color and odor in waxes derived from recycled polymers. In terms of organic impurity removal, for PE 81% and for PP 97% removal efficiency was achieved. The color of PE and PP in terms of lightness under CIELAB (lightness, green-red, blue-yellow) color space was improved by 13 and 40 units, respectively. The purified waxes could be utilized in a variety of market segments, including color masterbatch, roofing shingles, rubber, and coatings. Compared with traditional purification technologies based on solvent extraction and absorbent filters, SCFE process offers exceptional advantages, including fast reaction rates, little liquid waste, ease of separation of solutes, and fewer separation stages. This novel process enables producing high-value water white waxes from reclaimed polymeric feedstock with a focus on clean technologies and enhanced resource efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
机译:聚乙烯(PE)和聚丙烯(PP)原料包含各种添加剂,例如填料和着色剂,它们会降解或经历解聚过程。从而导致强烈的深色和刺鼻的石油气味。颜色和气味的结合带来了一些挑战,限制了蜡产品的潜在市场。这项研究的重点是开发一种基于超临界流体萃取(SCFE)的创新且环境可持续的工艺,以去除有机和无机污染物,这些污染物会导致回收聚合物蜡中的颜色和气味。就有机杂质的去除而言,对于PE为81%,对于PP为97%,去除效率达到了。在CIELAB(亮度,绿红色,蓝黄色)色彩空间下,PE和PP的颜色分别提高了13和40个单位。纯化的蜡可用于各种市场领域,包括色母粒,屋面板,橡胶和涂料。与基于溶剂萃取和吸收性过滤器的传统纯化技术相比,SCFE工艺具有卓越的优势,包括反应速度快,液体浪费少,溶质易于分离以及分离步骤更少。这种新颖的工艺能够从再生的聚合物原料生产高价值的水白蜡,重点是清洁技术和提高资源效率。 (C)2019 Elsevier Ltd.保留所有权利。

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