State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Environ Sci Technol. 2023 Oct 31;57(43):16695-16706. doi: 10.1021/acs.est.3c06669. Epub 2023 Oct 16.
Electrocatalytic hydrogenation is acknowledged as a promising strategy for chlorophenol dechlorination. However, the widely used Pd catalysts exhibit drawbacks, such as high costs and low selectivity for phenol hydrosaturation. Herein, we demonstrate the potential and mechanism of Ru in serving as a Pd substitute using 2,4,6-trichlorophenol (TCP) as a model pollutant. Up to 99.8% TCP removal efficiency and 99% selectivity to cyclohexanol, a value-added compound with an extremely low toxicity, were achieved on the Ru electrode. In contrast, only 66% of TCP was removed on the Pd electrode, with almost no hydrosaturation selectivity. The superiority of Ru over Pd was especially noteworthy in alkaline conditions or the presence of interfering species such as S. The theoretical simulation demonstrates that Ru possesses a hydrodechlorination energy barrier of 0.72 eV, which is comparable to that on Pd. Meanwhile, hydrosaturation requires an activation energy of 0.69 eV on Ru, which is much lower than that on Pd (0.92 eV). The main reaction mechanism on Ru is direct electron transfer, which is distinct from that on Pd (indirect pathway via atomic hydrogen, H*). This work thereby provides new insights into designing cost-effective electrocatalysts for halogenated phenol detoxification and resource recovery.
电催化氢化被认为是一种很有前途的脱氯策略,用于氯酚的脱氯。然而,广泛使用的 Pd 催化剂存在一些缺点,例如成本高和对苯酚加氢饱和的选择性低。在此,我们以 2,4,6-三氯苯酚(TCP)为模型污染物,展示了 Ru 作为 Pd 替代品的潜力和机制。在 Ru 电极上,TCP 的去除效率高达 99.8%,对环己醇的选择性高达 99%,环己醇是一种附加值高、毒性极低的化合物。相比之下,Pd 电极上仅去除了 66%的 TCP,几乎没有加氢饱和选择性。Ru 优于 Pd 的优势在碱性条件下或存在干扰物质(如 S)时尤为明显。理论模拟表明,Ru 具有 0.72eV 的脱氯氢能量势垒,与 Pd 相当。同时,Ru 上的加氢饱和需要 0.69eV 的活化能,远低于 Pd(0.92eV)。Ru 上的主要反应机制是直接电子转移,与 Pd(通过原子氢,H*的间接途径)不同。这项工作为设计用于卤代酚解毒和资源回收的具有成本效益的电催化剂提供了新的思路。