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Removal of toxic cyanide and Cu(II) Ions from water by illuminated TiO2 catalyst

机译:照明的TiO2催化剂去除水中的有毒氰化物和Cu(II)离子

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摘要

Due to its strong complex formation potential, cyanide (CN-) has been used in a variety of metal processing and metal extracting processes. As a result, the wastewaters generated from such processes always contain a mixture of cyanide and metal ions. Photocatalytic degradation using ultraviolet-irradiated TiO2 suspension has been investigated for destroying both free and complex cyanide with a concurrent removal of the metal (exemplified by copper). The process uses the photogenerated holes at the surface of TiO2 upon UV irradiation of 100W. In contrast to conventional cyanide waste treatment processes, the photocatalytic processes convert both free and complex cyanide species into carbon dioxide and nitrogen with no residual harmful chemicals remaining. Synthetic cyanide wastes (dilute solutions of sodium and copper cyanide) were used. The spent TiO2 was separated by coagulating then centrifugation. The residual CN- concentration was monitored periodically using spectrophotometric analysis. Results revealed that about 78% of free cyanide (10(-3) M) was removed after illumination for 4 h in the presence of 1 g/L (TiO2) at pH 11. Free copper (10(-2) M) was completely removed in a shorter time Q h). The co-existence of Cu(II) and CN enhanced the removal efficiency of both CN and copper; the removal (%) increased with increase of Cu:CN molar ratio reaching a complete removal for both copper and cyanide at a ratio of 10:1 at the same previous conditions of free cyanide. (C) 2004 Elsevier B.V. All rights reserved.
机译:由于其强大的络合物形成潜力,氰化物(CN-)已用于多种金属加工和金属提取工艺中。结果,从这样的过程中产生的废水总是含有氰化物和金属离子的混合物。已经研究了使用紫外线照射的TiO2悬浮液进行光催化降解,以破坏游离氰化物和络合物氰化物,同时去除金属(以铜为例)。该工艺在100W的紫外线照射下使用TiO2表面的光生孔。与常规的氰化物废物处理工艺相比,光催化工艺将游离和复杂的氰化物物种转化为二氧化碳和氮气,而没有残留的有害化学物质。使用了合成氰化物废物(氰化钠和氰化铜的稀溶液)。通过凝结然后离心分离废的TiO 2。使用分光光度法定期监测残留的CN浓度。结果表明,在pH值为11的1 g / L(TiO2)存在下照射4小时后,约78%的游离氰化物(10(-3)M)被去除。在较短的时间Q h内将其完全移除)。 Cu(II)和CN的共存提高了CN和铜的去除效率。去除率(%)随Cu:CN摩尔比的增加而增加,而铜和氰化物的完全去除率与游离氰化物相同的先前条件下为10:1。 (C)2004 Elsevier B.V.保留所有权利。

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