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使用二氧化氯、臭氧和二氧化钛溶胶处理氰化物废液

Destruction of cyanide waste solutions using chlorine dioxide, ozone and titania sol.

作者信息

Parga J R, Shukla S S, Carrillo-Pedroza F R

机构信息

Department of Metallurgy and Materials Science, Institute Technology of Saltillo, V. Carranza 2400, C.P. 25000, Saltillo, Coahuila, Mexico.

出版信息

Waste Manag. 2003;23(2):183-91. doi: 10.1016/S0956-053X(02)00064-8.

Abstract

Increasingly, there are severe environmental controls in the mining industry. Because of lack of technological advances, waste management practices are severely limited. Most of the wastes in the milling industrial effluents are known to contain cyanides and it is recognized that after extraction and recovery of precious metals, substantial amounts of cyanide are delivered to tailings ponds. The toxicity of cyanide creates serious environmental problems. In this paper we describe several methods for the treatment of cyanide solutions. These include: (1) cyanide destruction by oxidation with chlorine dioxide (ClO(2)) in a Gas-Sparged Hydrocyclone (GSH) reactor; (2) destruction of cyanide by ozone (O(3)) using a stirred batch reactor, and finally, (3) the photolysis of cyanide with UV light in presence of titania sol. In all cases excellent performance were observed as measured by the extent and of the destruction.

摘要

采矿业的环境控制日益严格。由于缺乏技术进步,废物管理措施受到严重限制。已知选矿工业废水中的大部分废物含有氰化物,并且人们认识到,在提取和回收贵金属后,大量氰化物被排放到尾矿池中。氰化物的毒性造成了严重的环境问题。在本文中,我们描述了几种处理氰化物溶液的方法。这些方法包括:(1)在气浮水力旋流器(GSH)反应器中用二氧化氯(ClO₂)氧化破坏氰化物;(2)使用搅拌间歇反应器用臭氧(O₃)破坏氰化物,最后,(3)在二氧化钛溶胶存在下用紫外光光解氰化物。在所有情况下,通过破坏程度来衡量,都观察到了优异的性能。

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