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Sintering Process for Limonitic Nickel Laterite

机译:Limonitic镍红土烧结过程

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Land-based nickel resources include nickel sulfide and nickel laterite. With the consumption of high grade nickel sulfide, use of nickel laterite has received more and more attention. The mineralogy and sintering behavior of limonitic nickel laterite with high iron and low nickel and silica was studied to offer technical support for producing ferronickel through sintering-blast furnace route. The mineralogy results showed that the main phases in this kind of nickel laterite are goethite (FeO(OH)), gibbsite (Al(OH)_3) and NiFe_2O_4. The TGA (Thermogravimetric Analysis) and DSC (Differential Scanning Calorimetry) revealed hydroxide minerals in addition to absorbed water. After the sintering experiments the chemical composition, phases present (XRD analysis) and physical properties of the sinter were studied. The content of FeO in the sinter increased with increasing basicity up to 1.3, and then decreased with further increase in basicity. The yield of sinter increased (from 73% to 80%) with increase in the basicity from 1.1 to 1.7, and then the yield decreased with the further increase in basicity. Mg(Ni)(Fe,Al)_2O_4 is the main phase in the sinter while MgCaSiO_4 and Fe_2SiO_4 is the main binder phase when the basicity is 1.1-1.5, and MgCaSiO_4, Fe_2SiO_4 and SFCA is the main binder phase when the basicity is 1.7~2.1.
机译:陆基镍资源包括硫化镍和镍红土。随着高品位硫化镍的消费量,使用镍红土矿已经获得越来越多的关注。矿物学和红土高铁和低镍和硅褐铁矿镍烧结行为进行了研究,提供了通过烧结,高炉路线镍铁制造的技术支持。矿物学结果表明,这种镍的主要阶段红土是针铁矿(FeO的(OH)),三水铝石铝(Al(OH)_3)和NiFe_2O_4。在TGA(热重分析)和DSC(差示扫描量热法)显示除了吸收的水氢氧化物矿物质。烧结实验化学组成后,相本(XRD分析)和烧结的物理性质进行了研究。的FeO在烧结的含量随着碱度高达1.3增加,然后随着碱度进一步增加而减少。烧结矿的产率增加(从73%至80%)与增加的碱度为1.1〜1.7,然后将该产率与碱度进一步增加而减少。毫克(Ni)的(铁,铝)_2O_4是在烧结的主要相,而MgCaSiO_4和Fe_2SiO_4是主要的粘结剂相当碱度是1.1-1.5,和MgCaSiO_4,Fe_2SiO_4和SFCA是主要的粘结剂相时的碱度为1.7 〜2.1。

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