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Amidoxime-Functionalized Macroporous Carbon Self-RefreshedElectrode Materials for Rapid and High-Capacity Removal of Heavy Metalfrom Water

机译:mid胺肟官能化的大孔碳自刷新快速大容量去除重金属的电极材料从水

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摘要

Heavy metal pollution continues to be one of the most serious environmental problems which has attracted major global concern. Here, a rapid, high-capacity, yet economical strategy for deep cleaning of heavy metals ions in water is reported based on amidoxime-functionalized macroporous carbon electrode materials. The active sites of our material can be self-refreshed during the electrochemical removal process, which is different from traditional methods. The novel filter device in this work can purify contaminated water very rapidly (3000 L h–1 m–2), and can decrease heavy metal ion concentrations to below 5 ppb with a very short contact time (only 3 s). The original treatment efficiency of the device can be retained even after 1 week of continuous device operation. An extremely high removal capacity of over 2300 mg g–1 can be achieved with 2–3 orders of magnitude higher efficiency than that of surface adsorption-based commercial filters without any decay. Additionally, the cost of energy consumed in our method is lower than $6.67 × 10–3 per ton of wastewater. We envision that thisapproach can be routinely applied for the rapid, efficient, and thoroughremoval of heavy metals from both point-of-use water and industrialwastewater.
机译:重金属污染仍然是最严重的环境问题之一,引起了全球的广泛关注。在此,据报道基于a肟肟官能化的大孔碳电极材料的一种快速,高容量但经济的策略,用于深度清洁水中的重金属离子。与传统方法不同,我们材料的活性位点在电化学去除过程中可以自动刷新。这项工作中的新型过滤装置可以非常迅速地净化污水(3000 L h –1 m –2 ),并且可以将重金属离子的浓度降低到5 ppb以下接触时间非常短(仅3 s)。即使连续运行设备一周后,仍可以保持设备的原始治疗效率。与基于表面吸附的商用过滤器相比,可以实现2300 mg g –1 的极高去除能力,效率提高2-3个数量级,而不会出现任何衰减。此外,我们的方法所消耗的能源成本低于每吨废水$ 6.67×10 –3 。我们设想该方法可常规应用于快速,高效和彻底从使用点的水和工业用水中去除重金属废水。

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