Department of Environmental and Energy Process Engineering, Chair of Waste Processing Technology and Waste Management, Montanuniversitaet Leoben, Leoben, Austria.
Circulyzer GmbH, Leoben, Austria.
Waste Manag Res. 2021 May;39(5):731-743. doi: 10.1177/0734242X21996435. Epub 2021 Feb 27.
The recycling of source separated polyolefins (POs) (e.g., light weight packaging waste) is already state of the art. Therefore, further plastic materials contained in mixed wastes have become more important due to increasing legal pressure. Mixed commercial and municipal solid wastes contain large quantities of POs. These mixed wastes would usually be treated in waste incinerators or processed to refuse-derived fuel for cement plants. Large-scale experiments were conducted to assess the potential of such POs from these waste streams for recycling processes. The potential and applicability of a dry-mechanical and subsequently wet-mechanical (Wet-mechanical) processing with the aim of generating a PO concentrate for chemical recycling purposes was assessed. These investigations' focus was put on the centrifugal force separator technology as the core element of Wet-mechanical processing. In addition to the input material, all output materials and process water streams were chemically and physically characterized to estimate potential treatment or recycling paths. Results demonstrate that a two-stage purification is necessary to produce POs with sufficient purity out of both wastes. Chlorine and heavy metal levels are simultaneously reduced. The increased quantity of impurities only slightly changes the density of the process waters. Process water analyses show that wastewater treatment is necessary before discharge into a receiving water or sewage treatment plant. The sediment does not fulfil any hazard-relevant properties, and different thermal treatment options are possible.
已实现对来源分离聚烯烃(POs)(例如,轻型包装废物)的回收利用,属于现有技术水平。因此,由于法律压力不断增加,混合废物中包含的其他塑料材料变得更为重要。混合商业和城市固体废物中含有大量的 POs。这些混合废物通常在垃圾焚烧炉中进行处理,或者加工成水泥厂用的垃圾衍生燃料。进行了大规模实验来评估这些废物流中的此类 POs 进行回收利用的潜力。评估了旨在生成 PO 浓缩物以用于化学回收的干法-随后湿法(湿法)加工的潜力和适用性。这些研究的重点是离心力分离器技术,它是湿法加工的核心要素。除了输入材料外,所有输出材料和工艺水均进行了化学和物理特性分析,以估算潜在的处理或回收途径。结果表明,有必要对这两种废物进行两级净化,才能生产出纯度足够的 POs。同时降低氯和重金属的含量。杂质数量的增加仅略微改变工艺水的密度。工艺水分析表明,在排放到接收水或污水处理厂之前,需要进行废水处理。沉淀物不具有任何相关危险特性,并且可以采用不同的热处理方法。