The invention discloses a method for preparing ferronickel alloy from low-grade laterite nickel ore, belonging to the technical field of laterite nickel ore resource utilization. The invention dries low-grade laterite nickel ore and crushes it to a particle size of over 75%. The low-grade laterite nickel ore powder is obtained by sieving. The low-grade laterite nickel ore powder, reductant A and additive A are mixed evenly and prepared into pellet A. The pellet A is roasted by high-temperature reduction roasting at the temperature of 1150-1300 C. The roasted ore is grinded by water-quenched pellet to obtain pulp A, and the pulp A is placed. The magnetic separation tailings A and ferronickel concentrate were obtained under the condition of 120-180 mT magnetic field intensity; the ferronickel concentrate was added into the low-grade laterite nickel ore powder to mix evenly, and the reductant B and additive B were added to mix evenly and prepare pellet B. Under the temperature of 1150-1300 C, pellet B was reduced and roasted at high temperature to obtain roasted ore. The roasted ore was grinded by water to get pulp B, and the pulp B was placed in it. The magnetic separation tailings B and ferronickel alloy were obtained under the magnetic field intensity of 120-180 mT.
【技术实现步骤摘要】
一种利用低品位红土镍矿制备镍铁合金的方法
本专利技术涉及一种利用低品位红土镍矿制备镍铁合金的方法,属于红土镍矿资源利用
技术介绍
镍是一种重要的战略储备金属,在国民经济的发展中有着极其重要的地位。我国镍资源的消费位居世界第一,但镍资源短缺的问题已日趋严重。随着我国不锈钢工业的飞速发展,对镍的需求量不断增加,用于生产不锈钢的基础镍约占全球基础镍的65%。为了应对不锈钢生产过程中出现的高成本的现状,开发利用红土镍矿并从中生产低成本镍铁原料已经成为一种重要的趋势。并且随着高品位硫化镍矿的日益枯竭,低品位红土镍矿逐渐成为生产镍铁的主要原料。红土镍矿为硫化镍矿岩体风化、淋滤、沉积形成的地表风化壳型矿床,其主要载镍矿物是蛇纹石和针铁矿等硅酸盐矿物。红土镍矿的性质不同,处理方法也不同。褐铁型和MgO含量较低的硅镁镍矿适合湿法处理,如还原焙烧−氨浸、加压酸浸和常压酸浸,该类方法具有能耗低、镍和钴金属回收率高的显著优势。高镁贫镍且钴含量低的红土矿采用湿法工艺酸耗大并带来严重的环保问题。镁质型红土矿适合以煤基为还原剂进行直接还原焙烧,产物镍铁合金杂质含量较低,可用于制造不锈 ...
【技术保护点】
1.一种利用低品位红土镍矿制备镍铁合金的方法,其特征在于,具体步骤如下:(1)低品位红土镍矿进行干燥,破碎至粒度‑0.074mm占75%以上,过筛得到低品位红土镍矿粉;(2)将步骤(1)低品位红土镍矿粉、还原剂A、添加剂A混合均匀并制备成球径为20~50mm的球团A,在温度为1150~1300℃条件下,球团A进行高温还原焙烧得到焙烧矿,焙烧矿经水淬球磨得到矿浆A,矿浆A置于磁场强度为120~180mT条件下磁选得到磁选尾矿A和镍铁精矿;(3)将步骤(2)的镍铁精矿加入到步骤(1)的低品位红土镍矿粉中混合均匀,再加入还原剂B、添加剂B混合均匀并制备成球径为20~50mm的球团 ...
【技术特征摘要】
1.一种利用低品位红土镍矿制备镍铁合金的方法,其特征在于,具体步骤如下:(1)低品位红土镍矿进行干燥,破碎至粒度-0.074mm占75%以上,过筛得到低品位红土镍矿粉;(2)将步骤(1)低品位红土镍矿粉、还原剂A、添加剂A混合均匀并制备成球径为20~50mm的球团A,在温度为1150~1300℃条件下,球团A进行高温还原焙烧得到焙烧矿,焙烧矿经水淬球磨得到矿浆A,矿浆A置于磁场强度为120~180mT条件下磁选得到磁选尾矿A和镍铁精矿;(3)将步骤(2)的镍铁精矿加入到步骤(1)的低品位红土镍矿粉中混合均匀,再加入还原剂B、添加剂B混合均匀并制备成球径为20~50mm的球团B,在温度为1150~1300℃条件下,球团B进行高温还原焙烧得到焙烧矿,焙烧矿经水淬球磨得到矿浆B,矿浆B置于磁场强度为120~180mT条件下磁选得到磁选尾矿B和镍铁合金。2.根据权利要求...
【专利技术属性】
技术研发人员:李博,聂超群,魏永刚,王华,
申请(专利权)人:昆明理工大学,
类型:发明
国别省市:云南,53
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