首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Degradation of sodium n-butyl xanthate by vacuum UV-ozone (VUV/O-3) in comparison with ozone and VUV photolysis
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Degradation of sodium n-butyl xanthate by vacuum UV-ozone (VUV/O-3) in comparison with ozone and VUV photolysis

机译:与臭氧和VUV光解相比,真空UV-臭氧(VUV / O-3)降解正丁基黄药酸钠

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摘要

Sodium n-butyl xanthate (SBX) is widely used as a collector in the flotation of sulfide minerals. Residual SBX and its byproducts in the flotation effluents may cause environmental pollution. The degradation of SBX by a vacuum UV-ozone (VUV/O-3) in comparison with ozone and VUV photolysis was studied. The effects of the pH and ozone dosage were investigated. The SBX was almost completely degraded within 5 min by both the O-3 and VUV/O-3 processes, whereas the removal of COD became less efficient compared to SBX removal. The COD removal and sulfur mineralization ratio in the VUV/O-3 increased by 30.4-41.6% and 16.2-23.3%, respectively, compared to the ozonation. The large ozone dosage enhanced the mineralization of SBX, but resulted in low ozone consumption ratio. However, the ozone consumption ratio increased by 17.3-45.1% while involving VUV irradiation in the ozonation. The concentrations of formed sulfur byproducts (CS2 and SO42-) were measured. The rapid conversion of CS2 to SO42- ions was observed, showing the effective mineralization of sulfur byproducts in the O-3 and VUV/O-3 processes. The enhancements of the SBX mineralization and ozone consumption ratio by involving VUV radiation with ozone were discussed, and the decomposition pathway of SBX was proposed. (C) 2016 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:正丁基黄药酸钠(SBX)被广泛用作硫化矿物浮选中的捕收剂。浮选废水中残留的SBX及其副产物可能会造成环境污染。与臭氧和VUV光解相比,研究了真空UV-臭氧(VUV / O-3)对SBX的降解。研究了pH和臭氧剂量的影响。通过O-3和VUV / O-3工艺,SBX在5分钟内几乎完全降解,而与SBX去除相比,COD的去除效率降低。与臭氧化相比,VUV / O-3中的COD去除和硫矿化率分别提高了30.4-41.6%和16.2-23.3%。较大的臭氧剂量可增强SBX的矿化作用,但导致臭氧消耗率较低。但是,在臭氧化过程中使用VUV辐照时,臭氧消耗率增加了17.3-45.1%。测量了形成的硫副产物(CS2和SO42-)的浓度。观察到CS2迅速转化为SO42-离子,表明在O-3和VUV / O-3过程中硫副产物的有效矿化。讨论了将VUV辐射与臭氧一起提高SBX矿化度和臭氧消耗率的方法,并提出了SBX的分解途径。 (C)2016化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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