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首页> 外文期刊>Separation and Purification Technology >Microwave synthesis of metal-doped ZnS photocatalysts and applications on degrading 4-chlorophenol using heterogeneous photocatalytic ozonation process
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Microwave synthesis of metal-doped ZnS photocatalysts and applications on degrading 4-chlorophenol using heterogeneous photocatalytic ozonation process

机译:微波合成金属掺杂ZnS光催化剂和使用异质光催化臭氧化工艺降解4-氯酚的应用

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摘要

Photocatalysts can produce active species in the heterogeneous photocatalytic ozonation (HPO) process, which can efficiently degrade and mineralize organic pollutants. In this study, pristine ZnS and metal-doped (Cu, Ag, Bi, Ga, In) ZnS were synthesized by microwave method. The degradation rate of 4-chlorophenol (4-CP) in HPO process is ranked as Cu/ZnS > Bi/ZnS > Ag/ZnS > In/ZnS > Ga/ZnS > ZnS, which is attributed to the following reasons: (1) the schottky junction formed between ZnS and doped metal can effectively capture electrons as an electron trap, thus inhibiting the recombination of electron-hole pairs; (2) narrow bandgap of Cu/ZnS can enhance electron transport; (3) the valence bands of Ag/ZnS, Bi/ZnS, Ga/ZnS and In/ZnS were more positive than that of pristine ZnS to enhance the oxidization ability of holes. The experimental results showed that the optimal water-intake ozone dose optimal influent ozone dosage was 32 mg/l.min(-1) under the optimal initial solution pH of 7. In addition, the possible mechanism of HPO process was proposed and clarified. We believe that metal-doped ZnS has a promising potential to be the photocatalyst for the degradation of organic pollutants.
机译:光催化剂可以在异质光催化臭氧化(HPO)过程中产生活性物质,可有效降解和矿化有机污染物。在该研究中,通过微波法合成原始ZnS和金属掺杂(Cu,Ag,Bi,Ga,In)Zn。 HPO过程中4-氯苯酚(4-CP)的降解速率被排名为CU / ZNS> BI / ZnS> Ag / Zns> In / Zns> Ga / Zns> Zns,其归因于以下原因:(1 )在ZnS和掺杂金属之间形成的肖特基结可以有效地捕获电子作为电子阱,因此抑制了电子孔对的重组; (2)Cu / Zns的窄带隙可以增强电子传输; (3)AG / ZnS,Bi / ZnS,Ga / Zns和/ Zns的价带比原始Zns更积极,以增强孔的氧化能力。实验结果表明,在最佳初始溶液pH下,最佳水进气臭氧剂量最佳流水臭氧剂量为32mg / L.min(-1)。另外,提出并澄清了HPO过程的可能机制。我们认为金属掺杂的Zns具有有希望的有机污染物降解的光催化剂的可能性。

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