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  • 葉龍剛, 楊聲海, 唐朝波, 唐謨堂. NaPO3用于粗銻火法精煉過程除鉛[J]. 工程科學學報, 2015, 37(11): 1429-1433. DOI: 10.13374/j.issn2095-9389.2015.11.006
    引用本文: 葉龍剛, 楊聲海, 唐朝波, 唐謨堂. NaPO3用于粗銻火法精煉過程除鉛[J]. 工程科學學報, 2015, 37(11): 1429-1433. DOI: 10.13374/j.issn2095-9389.2015.11.006
    YE Long-gang, YANG Sheng-hai, TANG Chao-bo, TANG Mo-tang. Lead removal from crude antimony in the pyrometallurgical refining process by using NaPO3[J]. Chinese Journal of Engineering, 2015, 37(11): 1429-1433. DOI: 10.13374/j.issn2095-9389.2015.11.006
    Citation: YE Long-gang, YANG Sheng-hai, TANG Chao-bo, TANG Mo-tang. Lead removal from crude antimony in the pyrometallurgical refining process by using NaPO3[J]. Chinese Journal of Engineering, 2015, 37(11): 1429-1433. DOI: 10.13374/j.issn2095-9389.2015.11.006

    NaPO3用于粗銻火法精煉過程除鉛

    Lead removal from crude antimony in the pyrometallurgical refining process by using NaPO3

    • 摘要: 針對傳統粗銻精煉工藝中除鉛的難題,提出用NaPO3作為除鉛劑,生成磷酸鹽渣浮于銻液表面除去的方法.用熱重-差熱法和X射線衍射技術研究反應機理并進行粗銻除鉛的條件實驗.研究發現,PbO與NaPO3在590℃時即開始吸熱反應,在850℃以下主要形成NaPb4(PO4)3,而在850℃以上主要形成NaPbPO4,反應徹底.PbO、Sb2O3和NaPO3混合物的反應表明:在NaPO3量不足時,優先與PbO反應,只有當NaPO3足量時才會與Sb2O3生成銻的非晶態玻璃.用NaNO3作為氧化劑,在氮氣保護下進行了除鉛單因素實驗,考察反應時間和溫度、NaPO3和NaNO3加入量對結果的影響.在最優條件下精銻含鉛0.047%,除鉛率98.90%.

       

      Abstract: In order to solve the problem of lead removal from crude antimony in the traditional antimony refining process,NaPO3 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 NaPO3 begin an endothermic reaction at 590℃ and mainly form NaPb4(PO4)3 and NaPbPO4 below 850℃ and above 850℃,respectively. The reaction products of the mixture of PbO,Sb2O3 and NaPO3 show that NaPO3 preferentially reacts with PbO when NaPO3 is insufficient,and amorphous antimony glass will generate only with enough NaPO3. Single-factor experiments were taken with NaNO3 as an oxidizing agent under nitrogen.Reaction time,temperature,NaPO3 and NaNO3 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.

       

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