首页> 外文会议>Pacific Rim International Congress on Advanced Materials and Processing >REMOVAL OF PHOSPHORUS, SULPHUR, AND ARSENIC FROM FERRONICKEL AND NICKEL ALLOYS
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REMOVAL OF PHOSPHORUS, SULPHUR, AND ARSENIC FROM FERRONICKEL AND NICKEL ALLOYS

机译:从铁龙尼克尔和镍合金中去除磷,硫和砷

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In the petroleum industry catalysts are often used to accelerate the reaction rate and remove the hazardous sulphur and arsenic from crude oil. A large quantity of spent catalyst material is generated every year and this represents a relatively cheap source of nickel supply. In order to use this nickel for the production of stainless steel or nickel alloys, the phosphorus, sulphur and arsenic in the material must be removed. The aim of this project is to remove these impurities from the nickel-based alloy produced from recovery of spent catalyst without incurring a significant loss of other valuable elements. Slag refining of nickel alloy was carried out in a 10 kw induction furnace. The effects of an oxidizing slag, a weak reducing slag and a strong reducing slag were examined. It was found that a strong reducing slag containing 70wt% CaC_2 and 30wt% CaF_2 was most suitable for the simultaneous removal of phosphorus, sulphur and arsenic without incurring a significant loss of valuable metal elements. With this slag, more than 70wt% sulphur, 67wt% arsenic, and about 30wt% phosphorus were removed.
机译:在石油工业催化剂中,通常用于加速反应速率并从原油中除去危险硫和砷。每年产生大量的废催化剂材料,这代表了镍供应的相对便宜的来源。为了使用该镍用于生产不锈钢或镍合金,必须除去材料中的磷,硫和砷。该项目的目的是从废催化剂的回收中从镍基合金中除去这些杂质,而不会产生其他有价值的元素的显着损失。镍合金的炉渣精炼在10 kW的感应炉中进行。检查了氧化渣,弱还原渣和强还原渣的影响。发现含有70wt%CaC_2和30wt%CaF_2的强还原渣最适合于同时去除磷,硫和砷,而不会产生显着的有价值的金属元素的损失。用该渣,除去70wt%的硫,67wt%砷和约30wt%的磷。

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