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首页> 外文期刊>Minerals Engineering >Pyrolysis of arsenopyrite for gold recovery by cyanidation
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Pyrolysis of arsenopyrite for gold recovery by cyanidation

机译:毒砂热解以氰化法回收金

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摘要

Gold in arsenopyrite or high-arsenic pyrites commonly exists as submicroscopic or "invisible" inclusions, making it refractory to cyanide leaching. Current practice favour an oxidising roast to liberate the gold for cyanidation because it is fast and energetically self supporting. However, the SO_2 gas it produces can create a handling problem. One alternative we are investigating is pyrolysis under N_2 , CO_2 and SO_2 atmospheres. Instead of gaseous SO_2, the process produces elemental sulfur and, if present in the ore, arsenic metal or solid arsenic oxide. Pyrolysis experiments were conducted on a gold-containing refractory arsenopyrite ore to determine the effect of temperature, time and atmosphere on the cyanidation characteristics of the pyrolysis product. In N_2 and CO_2 , the ore behaved similarly, reaching maximum mass loss at 700 deg C and yielding maximum gold recoveries of 35 and 48 percent, respectively. Pyrolysis under SO_2 was faster, reaching maximum mass loss at 600 deg C and resulting in gold recoveries of up to 61 percent. The low gold recovery for N_2 and CO_2 pyrolysed products was due to the encapsulation of the exsolved gold particles by pyrrhotite as it recrystallised during the process. All the pyrolysis products, although composed mainly of pyrrhotite, did not seem to be highly active in cyanide solutions.
机译:毒砂或高砷黄铁矿中的金通常以亚显微或“不可见”的夹杂物形式存在,使其难于氰化物浸出。目前的做法是使用氧化焙烧法释放金进行氰化,因为它快速且有力地自我支撑。但是,其产生的SO_2气体会产生处理问题。我们正在研究的一种替代方法是在N_2,CO_2和SO_2气氛下进行热解。该方法代替气态SO_2生成元素硫,如果存在于矿石中,则生成砷金属或固态氧化砷。在含金难处理的毒砂黄铁矿上进行了热解实验,以确定温度,时间和气氛对热解产物氰化特性的影响。在N_2和CO_2中,矿石的行为类似,在700℃时达到最大质量损失,最大金回收率分别为35%和48%。 SO_2下的热解速度更快,在600℃时达到最大质量损失,导致金的回收率高达61%。 N_2和CO_2热解产物的金回收率低是由于在过程中重结晶时黄铁矿对溶解的金颗粒的包裹。所有热解产物虽然主要由黄铁矿组成,但在氰化物溶液中似乎并不具有高活性。

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