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Sulfur-doped copper-yttrium bimetallic oxides: A novel and efficient ozonation catalyst for the degradation of aniline

机译:硫磺掺杂铜钇双金属氧化物:一种用于降解苯胺的新型和有效的臭氧催化剂

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Sulfur-doped copper-yttrium bimetallic oxides (S-CuYO) were synthesized by a co-precipitation method and for the first time utilized for the catalytic ozonation of aniline. For comparison purposes, sulfur-doped monometallic oxides (S-CuO and S-YO) and non-doped copper-yttrium bimetallic oxide (CuYO) were also prepared via the same processes. The S-CuYO exhibited a highest catalytic activity among these catalysts. In the catalytic ozonation with S-CuYO, the degradation efficiency and total organic carbon (TOC) removal of aniline (10 mg/L) were 96% and 57%, respectively, within 15 min under optimum conditions. The high performance of the S-CuYO was ascribed to the synergy between the Cu(I) and Y(III) species via providing the catalyst with more abundant surface hydroxyl groups, a larger surface area, and a larger pore size. The surface hydroxyl groups provided active sites for ozone adsorption and the Cu(I) on the surface catalyzed the ozone decomposition to produce free radicals via electron transfer. Besides, the low-valent S species (S2-/SO32-) in the catalyst led to the reduction of Cu(II) to Cu(I), which maintained the high catalytic activity of the S-CuYO. A free radical investigation indicated that (OH)-O-center dot radicals were the main reactive oxygen species responsible for the removal of aniline. Six main intermediates of the aniline degradation were identified by high-performance liquid chromatography-mass spectrometry (HPLC-MS). The possible degradation pathways of the aniline by catalytic ozonation with the S-CuYO were further proposed. Based on the results obtained in this study, it is concluded that the catalytic ozonation with S-CuYO is a promising approach for wastewater treatment containing aniline.
机译:通过共沉淀法合成硫 - 掺杂的铜 - 钇双金属氧化物(S-CUYO),并首次用于苯胺的催化臭氧化的第一次使用。对于比较目的,还通过相同的方法制备硫掺杂的单金属氧化物(S- CuO和S-YO)和非掺杂的铜 - 钇双金属氧化物(Cuyo)。 S-Cuyo在这些催化剂中表现出最高的催化活性。在具有S-Cuyo的催化臭氧化合物中,在最佳条件下,在15分钟内分别在15分钟内分别为96%和57%的苯胺(10mg / L)的降解效率和总有机碳(TOC)。通过提供具有更丰富的表面羟基,较大的表面积和较大的孔径,S-Cuyo的高性能归因于Cu(I)和Y(III)物种之间的协同作用。表面羟基提供了用于臭氧吸附的活性位点,并且表面上的Cu(I)催化臭氧分解以通过电子转移产生自由基。此外,催化剂中的低价管S物种(S2- / SO32-)导致Cu(II)的铜(I)的还原,该Cu(I)维持S-苏多的高催化活性。自由基调查表明(OH)-O-中心点基团是负责除去苯胺的主要活性氧物质。通过高效液相色谱 - 质谱(HPLC-MS)鉴定苯胺降解的六个主要中间体。进一步提出通过催化臭氧与S-Cuyo催化臭氧的可能降解途径。基于本研究中获得的结果,得出结论,具有S-Cuyo的催化臭氧是含有苯胺的废水处理的有希望的方法。

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