School of Physics, Beihang University, Beijing, 100191, China; Beijing Key Laboratory of Bio-inspired Energy Materials and Devices, School of Space and Environment, Beihang University, Beijing, 100191, China.
School of Energy and Power Engineering, Beihang University, Beijing, 100191, China.
J Hazard Mater. 2019 Mar 15;366:538-544. doi: 10.1016/j.jhazmat.2018.12.020. Epub 2018 Dec 7.
Novel bimetallic catalysts supported on activated carbon (AC) with high metal loadings were synthesized by carbonizing an ion-exchange resin. AC-supported Ni-Cu (Ni-Cu/C) and Ni-Zn (Ni-Zn/C) bimetallic catalysts with different Ni:Cu(Zn) ratios were used to decompose Aroclor 1254, which is a commonly used commercial mixture of polychlorinated biphenyls. Characterization with scanning electron microscopy and energydispersive X-ray spectroscopy showed that the metals were uniformly distributed on the surfaces and inside the catalysts. After 30 min reaction over the Ni-Cu/C catalyst at a low temperature of 250 °C, the efficiencies of Hexa-CBs decomposition present in Aroclor 1254 exceeded 97%, which were higher than those achieved over Ni-Zn/C. These efficiencies increased with Cu content in Ni-Cu/C, and decreased with the amount of Zn in Ni-Zn/C. X-ray photoelectron spectra and X-ray absorption near-edge structure spectra of Ni-Cu/C and Ni-Zn/C before and after the reaction indicated that Ni and Cu were oxidized during the reaction. However, Zn showed no significant change, suggesting that Ni and Cu are the active components to promote reaction with Aroclor 1254, whereas Zn is only a spectator. The efficiencies of Aroclor 1254 decomposition over bimetallic catalysts were greater than those over monometallic catalysts, which was confirmed by density functional theory calculations.
通过碳化离子交换树脂合成了负载量高的新型双金属催化剂,负载在活性炭(AC)上。使用不同 Ni:Cu(Zn) 比的 AC 负载的 Ni-Cu(Ni-Cu/C)和 Ni-Zn(Ni-Zn/C)双金属催化剂来分解 Aroclor 1254,Aroclor 1254 是一种常用的商用多氯联苯混合物。扫描电子显微镜和能谱分析表明,金属均匀分布在催化剂的表面和内部。在 250°C 的低温下,Ni-Cu/C 催化剂反应 30 分钟后,Aroclor 1254 中六氯丁二烯的分解效率超过 97%,高于 Ni-Zn/C 的效率。这些效率随着 Ni-Cu/C 中 Cu 含量的增加而增加,随着 Ni-Zn/C 中 Zn 含量的增加而降低。反应前后 Ni-Cu/C 和 Ni-Zn/C 的 X 射线光电子能谱和 X 射线吸收近边结构谱表明,反应过程中 Ni 和 Cu 被氧化。然而,Zn 没有明显变化,这表明 Ni 和 Cu 是促进与 Aroclor 1254 反应的活性成分,而 Zn 只是旁观者。双金属催化剂对 Aroclor 1254 的分解效率大于单金属催化剂,这通过密度泛函理论计算得到了证实。