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Absorption and removal of contaminants from recycled high-density polyethylene.

机译:从回收的高密度聚乙烯中吸收和去除污染物。

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A major concern in the processing and use of recycled plastics is the variable, and unknown, nature of the feedstock. Post-consumer and post-industrial waste may have been used for a variety of applications not originally intended by the manufacturer. This research was designed to probe the migration potential of common, yet possibly hazardous, substances which might be introduced into a high density polyethylene (HDPE) beverage container during consumer misuse. After determining the feasibility of container contamination, a systematic study was conducted to determine the likelihood of removing potential contaminants under the conditions of a typical recycling process.; The substances selected and the contaminant each represents is as follows: (1) xylene, paint thinner or gasoline; (2) methyl salicylate, oil-based household cleaner; (3) isopropanol, common organic solvent; and (4) ethylene glycol, antifreeze. These substances represent a range of physical properties.; The recycling process was divided into four steps: absorption of consumer introduced contamination, desorption during the wash cycle, desorption during drying, and desorption during extrusion. Model experiments were performed to measure the migration of the contaminants in each step.; The solubility and an effective Fickian diffusion coefficient were calculated for each step of the recycling process and each surrogate. In all steps except absorption, the diffusion coefficient represents a combination of the rates of diffusion in the HDPE and removal from the HDPE surface, whether by dissolution or by vaporization. The rate of migration was dependent on the polarity, vapor pressure, and solubility of the contaminants as well as the density of the HDPE. The results from the laboratory results were compared to results from a pilot plant recycling operation.; In this worst case scenario of 100% consumer contamination of the HDPE, none of the contaminants were removed to levels acceptable by the U.S. Food and Drug Administration (FDA) for food contact applications. However, this research demonstrated that increases in the residence time in and temperature of the desorption environment could significantly increase the amount of contaminant removed during a typical recycling. Improvements in the extruder, such as an applied vacuum for removal of volatiles, could also have a significant effect.
机译:再生塑料的加工和使用中的主要问题是原料的可变性和未知性。消费后和工业后废物可能已用于制造商最初未打算的各种应用。这项研究的目的是探究在消费者滥用期间可能引入高密度聚乙烯(HDPE)饮料容器中的常见但可能有害的物质的迁移潜力。在确定了容器污染的可行性之后,进行了系统的研究,以确定在典型的回收过程中去除潜在污染物的可能性。选择的物质和污染物分别如下:(1)二甲苯,涂料稀释剂或汽油; (2)水杨酸甲酯,油基家用清洁剂; (3)异丙醇,常见的有机溶剂; (4)防冻剂乙二醇。这些物质代表了一系列的物理性质。回收过程分为四个步骤:吸收消费者引入的污染物,在洗涤周期中解吸,在干燥过程中解吸和在挤出过程中解吸。进行模型实验以测量每个步骤中污染物的迁移。计算了回收过程的每个步骤和每个替代品的溶解度和有效的Fickian扩散系数。在除吸收以外的所有步骤中,扩散系数表示HDPE中扩散速率和从HDPE表面去除的速率的组合,无论是通过溶解还是通过蒸发。迁移速率取决于污染物的极性,蒸气压和溶解度以及HDPE的密度。将实验室结果与试验性工厂回收操作的结果进行比较。在这种最坏的情况下,消费者受到HDPE的100%污染,没有一种污染物的去除水平达到美国食品药品监督管理局(FDA)对于食品接触应用可接受的水平。但是,这项研究表明,解吸环境中的停留时间和温度的增加可能会显着增加典型回收过程中去除的污染物量。挤出机的改进,例如为除去挥发物而施加的真空,也可能会产生重大影响。

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