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废弃多氯联苯的结构研究和金属形态评估及其环境影响:选择有效回收途径的展望。

Structural study and metal speciation assessments of waste PCBs and environmental implications: Outlooks for choosing efficient recycling routes.

机构信息

Biotechnology Group, Chemical Engineering Department, Tarbiat Modares University, Tehran, Iran.

Biotechnology Group, Chemical Engineering Department, Tarbiat Modares University, Tehran, Iran; Modares Environmental Research Institute, Tarbiat Modares University, Tehran, Iran.

出版信息

Waste Manag. 2022 Sep;151:181-194. doi: 10.1016/j.wasman.2022.07.036. Epub 2022 Aug 10.

Abstract

Environmental protection from risks and disposal management of discarded mobile phone printed circuit boards (MPhPCBs) is a global issue. Although recycling is proposed as a solution, it is challenging to choose a sustainable method due to the insufficient recognition from extreme structural heterogeneity of these wastes based on their types. To this end, a thorough study on the structural characterization of PCBs using different analyses and metal speciation by sequential extraction procedure were performed. Understanding these information is an essential step in order to choose efficient methods to maximize selective recycling of metals and minimize environmental implications. PCBs were found to be potent metallic reservoirs after all metal content of PCBs were precisely measured. The structural analysis results of the sample included identification of different phases, functional groups, 45.1 % of the crystalline and 54.9 % of amorphous, the mesoporous nature (pore diameter mean ∼ 7.24 nm), hydrophobic property (contact angle ∼93.4°), the positive ζ-potential of particles at pH < (isoelectric point ∼5.4) and vice versa, and the particle size that were not oversized. The metal speciation outcome indicated over 80 % of the total content of elements such as Si, Sn, Ag, Au, Sr, Al, Cr, Nd, Ca, Ba, and P was in a solid crystal structure/residual fraction, which were hard recycled. The assessment of contamination levels of waste indicated the considerable contamination for the environment at global contamination factor ∼27.7, the moderate ecological risk at potential ecological risk assessment ∼82.9, and threats to public health. In addition, the metals of Pr, Mn, and Zn pose high risks because of their risk assessment code values of 42.7 %, 36.7 %, and 33.1 %, respectively. Leaching tests proved Waste Extraction Test was an aggressive method. ANC4 proposed high level of H consumption are required for metal leaching in future works.

摘要

废弃手机印刷电路板(MPhPCB)的风险防范和处置管理是一个全球性问题。尽管回收被提议作为一种解决方案,但由于基于类型的这些废物的极端结构异质性认识不足,选择可持续的方法具有挑战性。为此,对使用不同分析方法和顺序提取程序进行的 PCB 结构特征进行了深入研究。了解这些信息是选择有效方法的必要步骤,这些方法可以最大限度地回收金属,减少对环境的影响。在准确测量 PCB 中所有金属含量后,发现 PCB 是潜在的金属储存库。对样品的结构分析结果包括鉴定不同的相、官能团、45.1%的结晶相和 54.9%的非晶相、中孔性质(孔径平均值约为 7.24nm)、疏水性(接触角约为 93.4°)、在 pH<(等电点约为 5.4)时颗粒带正 ζ-电位,反之亦然,以及未过大的颗粒尺寸。金属形态分析结果表明,Si、Sn、Ag、Au、Sr、Al、Cr、Nd、Ca、Ba 和 P 等元素的总含量有超过 80%以固体晶体结构/残余物的形式存在,这些元素难以回收。对废物污染水平的评估表明,全球污染因子∼27.7 下的环境存在相当大的污染,潜在生态风险评估∼82.9 下的中度生态风险,以及对公众健康的威胁。此外,Pr、Mn 和 Zn 的金属由于其风险评估代码值分别为 42.7%、36.7%和 33.1%,因此具有较高的风险。浸出试验证明,废物提取试验是一种激进的方法。ANC4 提出,在未来的工作中需要高水平的 H 消耗才能进行金属浸出。

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