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Vanadium Subgroup

Scandium subgroup | Vanadium Subgroup | Titanium subgroup elements, IVB | Hydroxides Е(ОН)4 are compounds of nonstoichiometric composition ЕО2.nH2O. Ortho-titanic (a-titanic) H4TiO4 (Ti(OH)4), and more inert meta-titanic(b-titanic) H2TiO3 are known. | Chemical properties of titanium |


Читайте также:
  1. Copper subgroup trends
  2. Scandium and Titanium Subgroups
  3. Scandium subgroup
  4. Titanium subgroup elements, IVB
  5. Vanadium Subgroup

Production of metallic vanadium, niobium, and tantalum is a complex and difficult process since:

· it is necessary to separate them from various admixtures;

· separation of niuobium and tantalum is an extremely complicated task;

· reduction to the free state requires significant efforts.

 

The ores of iron that contain vanadium are one of the important sources of vanadium. During processing the ore in the blast furnace the predominating part of vanadium is reduced and included into cast iron. The further treatment of vanadium cast iron to steel gives vanadium slags containing FeVO4. Annealing of the latter with NaCl gives NaVO3:

4FeVO4 + 4NaCl + O2 = 4NaVO3 + 2Fe2O3 + 2Cl2

NaVO3 is isolated by water, transformed to (+ H2SO4) + V2O5 and reduced by Са or Al:

V2O5 + 5Ca = 2V + 5CaO

Ferrovanadium alloy can be produced when the cheap reducing agent ferrosilicon is used:

2V2O5 + 5Si(Fe) = 4V(Fe) + 5SiO2

Especially pure vanadium is produced by thermal decomposition of VI2 (iodide process, A. E. van Arkel).

The first stage of production of Nb and Ta is concentration of ores. Afterwards they can be transformed to fluorocomplexes K2[MF7] (M = Nb, Ta). These coordination compounds are, in turn, separated due to their difference in solubility. And, finally, free elements can be obtained by metallothermy with active metals:

K2[MF7] + 5Na = M + 5NaF + 2KF

 

Uses

Scandium is extracted in only a few mines worldwide due to the low availability and difficulties in the preparation of metallic scandium, which was first done in 1937. Applications for scandium were developed in 1970s. The positive effects of scandium on aluminium alloys were discovered in the 1970s, and its use in such alloys remains the only major application of scandium. High purity scandium is used in electronic engineering, space explorations (resistance to corrosion and thermal stability). Annual production of scandium increases from year to year: 1973 (27 kg), 1985 (100 kg), 1990 (1000 kg.).

 

Y is used as a component of nuclear reactors and to introduce doping in some metalllic materials (Cr, Mo, W). Sс2O3 and Y2O3 can be transformed to mangnetic materials. Yttrium was used in the yttrium barium copper oxide (YBa2Cu3O7, aka 'YBCO' or '1-2-3') superconductor developed in 1987. This high temperature superconductor (HTSC) operated at 93 K, notable because this is above liquid nitrogen's boiling point (77.1 K). As the price of liquid nitrogen is lower than that of liquid helium, which has to be used for the metallic superconductors, the operating costs will decrease.

 


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