Abstract:
In order to solve the problem of lead removal from crude antimony in the traditional antimony refining process,NaPO
3 was introduced as a lead elimination reagent to generate phosphate slag and the slag was removed by floating on the surface of liquid antimony. The reaction mechanisms were clarified by thermogravimetric-differential thermal analysis and X-ray diffraction analysis and removal of Pb from crude Sb was investigated by condition experiment. It is found that PbO and NaPO
3 begin an endothermic reaction at 590℃ and mainly form NaPb
4(PO
4)
3 and NaPbPO
4 below 850℃ and above 850℃,respectively. The reaction products of the mixture of PbO,Sb
2O
3 and NaPO
3 show that NaPO
3 preferentially reacts with PbO when NaPO
3 is insufficient,and amorphous antimony glass will generate only with enough NaPO
3. Single-factor experiments were taken with NaNO
3 as an oxidizing agent under nitrogen.Reaction time,temperature,NaPO
3 and NaNO
3 amounts were considered for smelting results. Under the optimal condition,the content of lead in refined antimony is 0. 047% and 98. 90% of lead is removed.