首页> 外文会议>Annual Conference of Metallurgists >(595535) ARSENIC EXTRACTION FROM DUSTS PRODUCED IN COPPER CONCENTRATE ROASTING PLANT BY ALKALINE LEACHING
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(595535) ARSENIC EXTRACTION FROM DUSTS PRODUCED IN COPPER CONCENTRATE ROASTING PLANT BY ALKALINE LEACHING

机译:(595535)通过碱性浸出,从铜精矿烘焙厂生产的粉尘中的砷提取

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In the pyrometallurgical processes of copper concentrates, arsenic is preferentially concentrated in the dusts carried by the gases as a result of their volatility and subsequent condensation in the gas cleaning train. In this work results obtained by alkaline leaching of the dusts from Ministro Hales roasting plant, belonging to Codelco, are presented. For the Ministro Hales plant the alkaline leaching would be an alternative to the recirculation of dusts to the roasting furnace. The experimental study considered NaOH and NaOH plus NaHS leaching of two samples of dusts, with 4.24 and 2.55% arsenic respectively. The results show that it is feasible to extract 90% of the arsenic and 50% of the antimony at room temperature using only NaOH, and when the temperature increases to 95?C, the extractions of As and Sb increase. Copper remains in the solid residue with less than 1% dissolution, and the NaOH net consumption was approximately 140 kg/t of dust. In leaching tests with NaOH + NaHS, two types of methods were tested, baking plus leaching with water and direct leaching with a NaOH+NaHS solution. With the second method arsenic extraction increased to 95% and copper dissolution was less than 0.01% at 85?C, NaOH 100 g/L, NaHS 90 g/L, 1.5 h and L/S ratio of 5/1 (L/kg). The bismuth remains stable in the solid in all cases.
机译:在铜浓缩物的高温冶金方法中,由于它们的挥发性和随后的气体清洁火车中的冷凝而优先浓缩砷。在这项工作中,通过碱性浸出来自矿物质烧烤植物的粉尘,属于Codelco的烧烤植物。对于矿物学植物,植物碱性浸出将是烧烤炉再循环的替代方案。实验研究审议了NaOH和NaOH加NaHs浸出了两种粉尘样品,分别为4.24和2.55%砷。结果表明,仅使用NaOH在室温下提取90%的砷和50%的锑,并且当温度升高至95℃时,升级为AS和Sb的提取。铜保留在固体残余物中,溶解小于1%,NaOH净消耗约为140kg / t的灰尘。在用NaOH + Nah浸出测试中,测试了两种类型的方法,用水和用NaOH + NaHS溶液直接浸出的烘焙加上浸出。通过第二种方法,砷提取增加至95%,铜溶解在85℃下小于0.01%,NaOH 100g / L,NaH 90g / L,1.5小时和L / S比为5/1(L / kg )。在所有情况下,铋在固体中保持稳定。

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