化学
降级(电信)
质谱法
光化学
罗丹明B
二聚体
电子顺磁共振
羟基自由基
自由基离子
激进的
高级氧化法
罗丹明
光谱学
分析化学(期刊)
水二聚体
化学工程
过程(计算)
化学反应
水溶液
催化作用
作者
Wen Li,Xinru Hu,Shuanglong Wang,Roman M. Balabin,Konstantin Chingin,Xinglei Zhang,Huanwen Chen,Xiaoping Zhang
标识
DOI:10.1021/jasms.6c00003
摘要
The practical application of advanced oxidation processes is often constrained by their high energy consumption and dependence on chemical additives. To overcome these limitations, this work harnesses the highly reactive species water dimer radical cation (H2O)2+•, as a green oxidant for efficient dye degradation. A corona discharge setup was developed for the controlled, ambient generation of (H2O)2+•, which was directly detected by in situ mass spectrometry. Electron paramagnetic resonance spectroscopy further verified its role as a precursor to hydroxyl radicals, elucidating the underlying radical cascade. Using model dyes (e.g., rhodamine B) as representative pollutants, degradation was quantitatively tracked via their characteristic UV–vis absorption. The (H2O)2+•-based process achieved 99% removal of rhodamine B in 8 min without any external chemical inputs, representing a more than 1100-fold enhancement in processing rate over conventional Fenton oxidation. Scalability was demonstrated through an enlarged array device, which exhibited an energy consumption of 0.75 kJ/mg and a degradation efficiency ∼90 times higher than that of a standard Fenton system. This study establishes a practical route to utilize (H2O)2+• for rapid, chemical-free water treatment, offering a scalable and energy-efficient strategy for green degradation technologies.
科研通智能强力驱动
Strongly Powered by AbleSci AI