首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Detection and Recovery of Palladium Gold and Cobalt Metals from the Urban Mine Using Novel Sensors/Adsorbents Designated with Nanoscale Wagon-wheel-shaped Pores
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Detection and Recovery of Palladium Gold and Cobalt Metals from the Urban Mine Using Novel Sensors/Adsorbents Designated with Nanoscale Wagon-wheel-shaped Pores

机译:使用新型纳米级马车形孔的传感器/吸附剂从城市矿山中检测和回收钯金和钴金属

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摘要

Developing low-cost, efficient processes for recovering and recycling palladium, gold and cobalt metals from urban mine remains a significant challenge in industrialized countries. Here, the development of optical mesosensors/adsorbents (MSAs) for efficient recognition and selective recovery of Pd(II), Au(III), and Co(II) from urban mine was achieved. A simple, general method for preparing MSAs based on using high-order mesoporous monolithic scaffolds was described. Hierarchical cubic Ia3d wagon-wheel-shaped MSAs were fabricated by anchoring chelating agents (colorants) into three-dimensional pores and micrometric particle surfaces of the mesoporous monolithic scaffolds. Findings show, for the first time, evidence of controlled optical recognition of Pd(II), Au(III), and Co(II) ions and a highly selective system for recovery of Pd(II) ions (up to ~95%) in ores and industrial wastes. Furthermore, the controlled assessment processes described herein involve evaluation of intrinsic properties (e.g., visual signal change, long-term stability, adsorption efficiency, extraordinary sensitivity, selectivity, and reusability); thus, expensive, sophisticated instruments are not required. Results show evidence that MSAs will attract worldwide attention as a promising technological means of recovering and recycling palladium, gold and cobalt>metals.
机译:在工业化国家,开发低成本,高效的方法从城市矿山中回收和回收钯,金和钴金属仍然是一项重大挑战。在此,实现了光学介观传感器/吸附剂(MSA)的开发,以有效识别和选择性地从城市矿山中回收Pd(II),Au(III)和Co(II)。描述了一种基于使用高阶介孔整体式支架制备MSA的简单通用方法。通过将螯合剂(着色剂)锚固在介孔整体式支架的三维孔和微米级颗粒表面中,制得层次立方的Ia3d马车形MSA。研究结果首次显示出可控的光学识别Pd(II),Au(III)和Co(II)离子的证据,以及可选择性回收Pd(II)离子的高度选择性的系统的证据(高达约95%)在矿石和工业废料中。此外,本文所述的受控评估过程涉及对固有性质的评估(例如,视觉信号变化,长期稳定性,吸附效率,非凡的灵敏度,选择性和可重复使用性)。因此,不需要昂贵,复杂的仪器。结果表明,MSA作为一种回收和再循环钯,金和钴> 金属的有前途的技术手段,将引起全世界的关注。

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