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首页> 外文期刊>Engineering Technology and Applied Science Research >Recovery of Nickel from Reformer Catalysts of Direct Reduction, Using the Pressurized Dissolving Method in Nitric Acid
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Recovery of Nickel from Reformer Catalysts of Direct Reduction, Using the Pressurized Dissolving Method in Nitric Acid

机译:从直接还原的重整器催化剂中回收镍,使用硝酸中的加压溶解方法

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In the process of direct reduction of iron pellet and production of sponge iron, NiO/Al2O3 act as a catalyst for the generation of carbon monoxide and hydrogen by vapor and natural gas. As an expensive material used in MIDREX method for steel units, this type of catalyst has major environmental problems after accumulation. The steel industry in Iran hopes to employ the MIDREX technique for the 80 percent of the 50 million tons of steel. Thus, the problem of spent catalysts will become a serious environmental challenge. Through the hydrometallurgy method, the present study investigates a possible solution to the problem of catalyst depot (due to heavy metals such as nickel) via nickel recovery, which may increase the possibility of selling or re-using the precious and expensive metal. The present research studied the Nickel recovery from spent catalysts of NiO/Al2O¬3 used in reduction gas reliefs of the production of sponge iron unit. In this study, the parameters of temperature, concentration, time and Rpm were studied using pressurized dissolving method. 100% efficiency was achieved at 140 °C for 120 minutes, nitric acid concentration of 1.5 mm, Rpm of 600 and 40 s/l 40 grams per liter.
机译:在直接减少铁颗粒和海绵铁的生产过程中,NiO / Al2O3通过蒸气和天然气作为产生一氧化碳和氢的催化剂。作为钢结构中使用的昂贵材料,这种类型的催化剂在积累后具有重大的环境问题。伊朗的钢铁行业希望为5000万吨钢的80%采用Midrex技术。因此,花催化剂的问题将成为一个严重的环境挑战。通过氢晶冶金方法,本研究通过镍恢复研究了催化剂贮库(如镍等重金属)的问题,这可能会增加销售或重新使用贵重且昂贵的金属的可能性。本研究研究了在生产海绵铁单元的减少气体浮雕中使用的NiO / Al2O -3的废催化剂中镍回收。在该研究中,使用加压溶解法研究了温度,浓度,时间和RPM的参数。在140℃下实现100%效率120分钟,硝酸浓度为1.5mm,RPM为600和40 s / L 40克。

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