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用于2,4-二氯苯甲酸电催化加氢脱氯的碳化钛掺杂泡沫钯/镍阴极:增强的导电性和反应活性。

TiC doped palladium/nickel foam cathode for electrocatalytic hydrodechlorination of 2,4-DCBA: Enhanced electrical conductivity and reactive activity.

作者信息

Lou Zimo, Li Yizhou, Zhou Jiasheng, Yang Kunlun, Liu Yuanli, Baig Shams Ali, Xu Xinhua

机构信息

Department of Environmental Engineering, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, People's Republic of China.

Department of Environmental Sciences, Abdul Wali Khan University, Mardan 23200, Pakistan.

出版信息

J Hazard Mater. 2019 Jan 15;362:148-159. doi: 10.1016/j.jhazmat.2018.08.066. Epub 2018 Sep 9.

Abstract

Titanium carbide (TiC) with excellent electrical conductivity, chemical and thermal stabilities has been recognized as one of the most promising electrocatalysts. A novel cathode, titanium carbide doped palladium/nickel foam (TiC-Pd/Ni foam), was synthesized via electroless deposition to improve the performance of Pd/Ni foam in electrocatlytic hydrodechlorination (ECH). TiC can be co-precipitated onto the surface of cathode during galvanic replacement reaction between Pd(II) solution and Ni foam. Both constant potential and constant current tests proved that TiC-Pd/Ni foam cathode performed remarkably higher activity for 2,4-dichlorobenzoic acid (2,4-DCBA) than Pd/Ni foam cathode, owing to the excellent conductivity of TiC and enhanced water dissociation over TiC-Pd/Ni foam cathode. Under the optimized reaction conditions of -0.85 V (vs Ag/AgCl), electrolyte of 10 mM and initial pH of 4, 99.8% of aqueous 2,4-DCBA (0.2 mM) was removed within 90 min. The removal process of the aqueous 2,4-DCBA obeyed first-order decay kinetic model. Over 86.3% of 2,4-DCBA can still be removed by TiC-Pd/Ni foam cathode in the fifth consecutive run within 120 min, which was much higher than that of Pd/Ni foam cathode (37.5%). Consequently, TiC-Pd/Ni foam cathode was a promising design for enhanced ECH activity and reduced operation cost.

摘要

碳化钛(TiC)具有优异的导电性、化学稳定性和热稳定性,被认为是最有前途的电催化剂之一。通过化学沉积法合成了一种新型阴极——碳化钛掺杂钯/泡沫镍(TiC-Pd/泡沫镍),以提高钯/泡沫镍在电催化加氢脱氯(ECH)中的性能。在钯(II)溶液与泡沫镍的电偶置换反应过程中,TiC可以共沉淀在阴极表面。恒电位和恒电流测试均证明,TiC-Pd/泡沫镍阴极对2,4-二氯苯甲酸(2,4-DCBA)的活性明显高于钯/泡沫镍阴极,这归因于TiC优异的导电性以及TiC-Pd/泡沫镍阴极上增强的水离解作用。在-0.85 V(相对于Ag/AgCl)、10 mM的电解质和初始pH为4的优化反应条件下,90分钟内可去除99.8%的2,4-DCBA水溶液(0.2 mM)。2,4-DCBA水溶液的去除过程符合一级衰减动力学模型。在连续第五次运行中,TiC-Pd/泡沫镍阴极在120分钟内仍可去除超过86.3%的2,4-DCBA,远高于钯/泡沫镍阴极(37.5%)。因此,TiC-Pd/泡沫镍阴极是一种增强ECH活性和降低运行成本的有前途的设计。

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