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基于清洁电晕改性的聚对苯二甲酸乙二酯和氯乙烯混合物的浮选分离:响应面法的优化。

Flotation separation of poly (ethylene terephthalate and vinyl chloride) mixtures based on clean corona modification: Optimization using response surface methodology.

机构信息

Shaanxi Key Laboratory of Disaster Monitoring & Mechanism Simulating, College of Geography and Environment, Baoji University of Arts and Sciences, Baoji 721013, China.

College of Engineering, Universiti Malaysia Pahang, Pekan 26600, Malaysia.

出版信息

Waste Manag. 2021 Dec;136:184-194. doi: 10.1016/j.wasman.2021.10.018. Epub 2021 Oct 21.

Abstract

Postconsumer polyethylene terephthalate (PET) has potential applications in many areas of manufacturing, but contamination by hazardous polyvinyl chloride (PVC) in common waste streams can reduce its recyclable value. Separating collected PET-PVC mixtures before recycling remains very challenging because of the similar physicochemical properties of PET and PVC. Herein, we describe a novel flotation process with corona modification pretreatment to facilitate the separation of PET-PVC mixtures. Through water contact angle, surface free energy, X-ray photoelectron and FT-IR characterization, we found that polar hydroxyl groups can be more easily introduced on the PVC surface than on the PET surface induced by corona modification. This selective wetting can suppress the floatability of PVC, leading to the separation of PET as floating product. A reliable mechanism including two different hydrogen-abstraction pathways was established. Response surface methodology consisting of Plackett-Burman and Box-Behnken designs was adopted for optimization of the combined process, and control parameters were solved based on high-quality prediction models, with fitting from significant variables and interactions. For physical or chemical circulation strategies with PET purity prioritization, the validated purity of the product reached 96.05% at a 626 W corona power, 5.42 m/min passing speed, 24.78 mg/L frother concentration and 286 L/h air flow rate. For the energy recuperation strategy with PET recovery prioritization, the factual recovery reached 98.08% under a 601 W corona power, 6.04 m/min passing speed, 27.55 mg/L frother concentration and 184 L/h air flow rate. The current work provides technological insights into the cleaner disposal of waste plastics.

摘要

消费后聚对苯二甲酸乙二醇酯(PET)在许多制造领域都有潜在的应用,但常见废物流中的危险聚氯乙烯(PVC)污染会降低其可回收价值。由于 PET 和 PVC 的物理化学性质相似,因此在回收前分离收集的 PET-PVC 混合物仍然极具挑战性。在此,我们描述了一种带有电晕改性预处理的新型浮选工艺,以促进 PET-PVC 混合物的分离。通过水接触角、表面自由能、X 射线光电子能谱和傅里叶变换红外光谱分析,我们发现电晕改性可以更轻易地在 PVC 表面引入极性羟基,而在 PET 表面则难以引入。这种选择性润湿可以抑制 PVC 的可浮性,从而将 PET 分离为浮选矿。建立了一种包括两种不同氢提取途径的可靠机制。采用包含 Plackett-Burman 和 Box-Behnken 设计的响应面法对组合工艺进行优化,根据高质量的预测模型解决控制参数,拟合显著变量和相互作用。对于以 PET 纯度为优先的物理或化学循环策略,在 626 W 电晕功率、5.42 m/min 通过速度、24.78 mg/L 起泡剂浓度和 286 L/h 空气流量下,验证后的产品纯度达到 96.05%。对于以 PET 回收为优先的能量回收策略,在 601 W 电晕功率、6.04 m/min 通过速度、27.55 mg/L 起泡剂浓度和 184 L/h 空气流量下,实际回收率达到 98.08%。本工作为废塑料的清洁处理提供了技术见解。

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