School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, People's Republic of China.
School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, People's Republic of China.
J Hazard Mater. 2017 Aug 5;335:39-46. doi: 10.1016/j.jhazmat.2017.04.024. Epub 2017 Apr 9.
Tantalum capacitors (TCs) are widely used in electronic appliances. The rapid replacement of electronic products results in generating large amounts of waste TCs (WTCs). WTCs, rich in valuable tantalum, are considered as high quality tantalum resources for recycling. However, environmental pollution will be caused if the organics of WTCs were not properly disposed. Therefore, effectively recycling the organics of WTCs is significant for recovering the valuable parts. This study proposed an argon (Ar) pyrolysis process to recycle the organics from WTCs. The organic decomposition kinetic was first analyzed by thermogravimetry. The results showed that the organics were decomposed in two major steps and the average activation energy was calculated to 234kJ/mol. Then, the suitable pyrolysis parameters were determined as 550°C, 30min and 100ml/min. The organics were effectively decomposed and converted to oils (mainly contained phenol homologs and benzene homologs) and gases (some hydrocarbon). These pyrolysis products could be reutilized as energy sources. Moreover, based on the products and bond energy theory, the pyrolysis mechanisms of the organics were also discussed. Finally, a reasonable technological process for products utilization was presented. This study contributes to the efficient recycling the organics before valuable material recovery from WTCs.
钽电容器(TCs)广泛应用于电子设备中。电子产品的快速更新换代导致产生了大量的废钽电容器(WTCs)。WTCs 富含有价值的钽,被认为是回收利用的高质量钽资源。然而,如果不妥善处理 WTCs 的有机物,将会造成环境污染。因此,有效回收 WTCs 的有机物对于回收有价值的部件具有重要意义。本研究提出了一种氩(Ar)热解工艺来回收 WTCs 中的有机物。首先通过热重分析对有机分解动力学进行了分析。结果表明,有机物分解分为两个主要步骤,平均活化能计算为 234kJ/mol。然后,确定了合适的热解参数为 550°C、30min 和 100ml/min。有机物被有效分解并转化为油(主要含有苯酚同系物和苯同系物)和气体(一些碳氢化合物)。这些热解产物可作为能源再利用。此外,根据产物和键能理论,还讨论了有机物的热解机理。最后,提出了一种合理的产品利用工艺流程。本研究有助于在从 WTCs 回收有价值材料之前,对有机物进行高效回收。