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Characterization of end-of-life mobile phone printed circuit boards for its elemental composition and benefication analysis

机译:用于其元素组成和利益分析的寿命终生手机印刷电路板的特征

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Globally, waste electrical and electronic equipment is one of the fastest-growing waste sectors. Mobile phones constitute the major portion of the telecommunication e-waste category. Over the years, waste mobile phones were considered as a potential source of secondary metals. This study aims to determine the physical and chemical composition of the discarded mobile phones and to evaluate its recovery potential. The printed circuit boards from the discarded (waste) mobile phones (MPCB) were collected and samples of different sizes 3 × 3 cm, 2 mm, 1 mm, 500 urn, and 150 μm were obtained after milling and sieving. Elemental composition revealed the presence of base metals, Cu, Zn, Fe, Ni, and Pb, in higher quantities with a significant amount of precious metals Au and Ag. Amount of base metals present in different MPCB size fractions was found in the order 3 × 3 cm > 2 mm > 1 mm > 500 μm >150 μm. The amount of precious metals like Ag and Au was found to be higher in large-sized MPCB fractions. FTIR studies declared the presence of polymers like ABS, PC, and HIPs in MPCB samples. TCLP tests for toxic metals revealed that MPCBs contained high concentrations of cadmium, lead, and mercury highlighting their hazardous potential. The ultimate analysis revealed that NMF has a GCV of 12.34 MJ/kg and a volatile content of 42.25%, which can be a potential source of energy that can be recovered through the gasification or pyrolysis process. Overall, the comprehensive characterization of waste MPCBs will systematically provide a better understanding of e-waste recycling processes for benefication purpose and sustainable resource utilization. Implications: A comprehensive characterization of waste mobile phone printed circuit boards for its elemental composition was performed. Mechanical treatment steps before MPCBs processing increased the exposure of metals resulting in a higher concentration of metals in acid-digested samples. The elemental analysis of MPCBs revealed that MPCBs possessed significant quantities of base and precious metals. The amount of precious metals like Ag and Au was also found in higher ranges in large-sized MPCB fractions, which elucidated fact to be considered in the pre-treatment process for metal recoveries. The high content of base and precious metals in waste mobile phones displayed their economic potential in the market. This new source may compensate for the escalating global demand for gold and silver. Results from the study indicated that MPCBs can serve as an excellent secondary source for various metals and as an efficient alternative fuel.
机译:在全球范围内,废物电气和电子设备是增长最快的废物扇区之一。移动电话构成电信电子废物类的主要部分。多年来,废物手机被认为是二级金属的潜在来源。本研究旨在确定废弃的移动电话的物理和化学成分,并评估其恢复潜力。从丢弃(废物)移动电话(MPCB)的印刷电路板被收集,在研磨和筛分后,获得了3×3cm,2mm,1mm,500μm和150μm的不同尺寸的样品。元素组合物揭示了碱金属,Cu,Zn,Fe,Ni和Pb的存在,以较高量的贵金属Au和Ag。在不同MPCB尺寸级分中存在的碱金属量在3×3cm> 2mm> 1mm>500μm>150μm时发现。发现贵金属等贵金属和Au的贵金属在大型MPCB级分中较高。 FTIR研究宣布存在诸如ABS,PC和MPCB样品中的聚合物。有毒金属的TCLP试验显示,MPCBS包含高浓度的镉,铅和汞突出其危险潜力。最终分析显示NMF具有12.34mJ / kg的GCV和42.25%的挥发性含量,这可以是可以通过气化或热解过程回收的潜在能量来源。总体而言,垃圾MPCBS的综合表征将系统地提供对益处合的回收过程的更好理解,以获得益处理和可持续的资源利用。含义:进行用于其元素组合物的废物移动电话印刷电路板的全面表征。 MPCBS处理前的机械处理步骤增加了金属的暴露导致酸消化样品中较高的金属浓度。 MPCBS的元素分析表明,MPCBS具有大量的基础和贵金属。在大型MPCB级分的较高范围内也发现了Ag和Au等贵金属的量,其在预处理方法中阐明了金属回收的预处理过程中的阐释。废物移动电话中的碱基和贵金属的高含量展示了市场在市场上的经济潜力。这种新来源可以弥补升级的全球金银需求。研究结果表明,MPCBS可以作为各种金属的优异二级源,作为有效的替代燃料。

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