首页> 外文会议>Annual Conference of Metallurgists >(597475) RECOVERY OF SELENIUM FROM ACID PLANT REVERSE JET SCRUBBER SLUDGE IN COPPER SMELTING
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(597475) RECOVERY OF SELENIUM FROM ACID PLANT REVERSE JET SCRUBBER SLUDGE IN COPPER SMELTING

机译:(597475)从铜冶炼中从酸厂反向喷射洗涤器污泥中恢复硒

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Gases rich in sulfur dioxide generated as a by-product of smelting and converting operations of copper concentrate contain selenium apart from zinc, lead, copper, cadmium, bismuth, antimony, and arsenic. The gaseous stream is heat exchanged in waste heat boiler, dust collected in electrostatic precipitator followed by cleaning in reverse jet scrubber to remove fumes, halogens and fine dust before passing to DCDA Monsanto catalytic converter to produce commercial grade sulfuric acid. The gas cleaning section of the acid plant uses water to scrub the smelting gases. During scrubbing, precipitated solids, known as sludge, settles at the bottom of the reverse jet scrubber containing 30 to 40 wt% copper and selenium up to 40 wt% selenium. In the existing process, the sludge collected during scrubber cleaning process is directly recycled to the smelter for copper recovery. However, the selenium is expected to again vaporize due to high oxidation potential during smelting and converting, causing accumulation of selenium in sludge. In present investigation, a roasting process has been developed to recover the selenium from acid plant sludge before charging it to smelter for copper recovery. Selenium is associated with copper in acid plant sludge as copper selenide, as determined by X-ray diffraction and electron microscopy. Thermodynamic and thermo-gravimetry study revealed that the copper selenide phase present in the sludge was amenable to oxidation at 600°C forming oxides of copper and selenium (Cu-Se-O). However, the dissociation of selenium from the copper oxide was made possible by sulfatation using sulfur dioxide between 450°C to 600°C, resulting into the formation of CuSO4(s) and SeO2(g). Lab scale experiments were carried out in vertical tubular furnace to determine the optimum roasting conditions with respect to roasting time, temperature and molar ratio of O2:SO2. Using these optimum conditions, selenium up to 90 wt. % in the form of SeO2 vapors could be recovered from the acid plant sludge in a large scale commercial roaster. Roasted sludge free from selenium and containing oxides and sulfates of copper could now be recycled in the smelter for copper recovery.
机译:富含二氧化氧化硫的气体作为熔炼浓缩物的副产品产生的含铜浓缩物的副产物,含有锌,铅,铜,镉,铋,锑和砷。气流在废热锅炉中加热,在静电除尘器中收集的灰尘,然后在反向喷射洗涤器中清洗,以除去烟雾,卤素和细粉尘,然后通过DCDA蒙山催化转化器生产商业级硫酸。酸厂的气体清洁部分使用水来擦洗熔炼气体。在擦洗期间,沉淀的固体,称为污泥,在含有30至40wt%铜的反向喷射洗涤器的底部沉积,溶液高达40wt%硒。在现有方法中,在洗涤器清洁过程中收集的污泥直接被再循环到冶炼厂进行铜回收。然而,预期硒在熔炼和转化过程中由于高氧化电位而再次蒸发,导致硒的溶解率。在目前的研究中,已经开发出焙烧过程以在将其充电以冶炼铜回收之前从酸性植物污泥中回收硒。通过X射线衍射和电子显微镜测定,硒与酸性储存污泥中的铜有关。热力学和热重量研究表明,污泥中存在的铜硒化型相对于氧化铜和硒的氧化物(Cu-Se-O)均可氧化。然而,使用硫在450℃至600℃之间的硫酸化物中通过硫酸化使硒解离氧化铜的解离,从而形成CUSO4和SEO2(G)的形成。实验室规模实验在垂直管状炉中进行,以确定相对于焙烧时间,温度和摩尔比的最佳焙烧条件O 2:SO2。使用这些最佳条件,硒高达90重量%。可以在大规模的商业烘焙器中从酸植物污泥中回收SEO2蒸汽形式的%。现在可以在铜回收的冶炼厂再循环溶于硒和含氧化物和硫酸盐的烤污泥。

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