Wu Tong, Liu Chong, Kong Biao, Sun Jie, Gong Yongji, Liu Kai, Xie Jin, Pei Allen, Cui Yi
Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, United States.
Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, California 94305, United States.
ACS Cent Sci. 2019 Apr 24;5(4):719-726. doi: 10.1021/acscentsci.9b00130. Epub 2019 Mar 28.
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 m), 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 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 per ton of wastewater. We envision that this approach can be routinely applied for the rapid, efficient, and thorough removal of heavy metals from both point-of-use water and industrial wastewater.
重金属污染仍然是最严重的环境问题之一,已引起全球主要关注。在此,报道了一种基于偕胺肟功能化大孔碳电极材料的快速、高容量且经济的深度净化水中重金属离子的策略。我们材料的活性位点在电化学去除过程中可自我更新,这与传统方法不同。这项工作中的新型过滤装置能够非常快速地净化受污染水(3000 L h m),并且能在非常短的接触时间(仅3秒)内将重金属离子浓度降至5 ppb以下。即使装置连续运行1周后,其初始处理效率仍可保持。该装置可实现超过2300 mg g的极高去除容量,效率比基于表面吸附的商用过滤器高2至3个数量级且无任何衰减。此外,我们方法中消耗的能源成本低于每吨废水6.67×10美元。我们设想这种方法可常规用于从使用点水和工业废水中快速、高效且彻底地去除重金属。