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不同成因黄铁矿表面特性及可浮性差异研究 被引量:1
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作者 段文婷 邓荣东 +2 位作者 马英强 刘文元 杨远坤 《金属矿山》 CAS 北大核心 2023年第9期103-110,共8页
针对塞尔维亚某矿床中上部矿带高硫型浅成热液黄铁矿(HSEP)和下部矿带斑岩型黄铁矿(PP),利用X射线衍射、纯矿物浮选试验、接触角测量、Zeta电位测试和红外光谱测试等方法研究其表面特性和可浮性的差异。结果表明,HSEP和PP的铁硫原子个数... 针对塞尔维亚某矿床中上部矿带高硫型浅成热液黄铁矿(HSEP)和下部矿带斑岩型黄铁矿(PP),利用X射线衍射、纯矿物浮选试验、接触角测量、Zeta电位测试和红外光谱测试等方法研究其表面特性和可浮性的差异。结果表明,HSEP和PP的铁硫原子个数比(Fe/S)分别为0.49和0.47,HSEP随着(210)和(211)晶面择优取向生长,而PP随着(220)和(311)晶面择优取向生长。HSEP的天然可浮性好于PP,随着矿浆pH值的增加,HSEP和PP的可浮性逐渐下降,且两者可浮性差异逐渐减小。PP在丁基黄药用量较低时反应的灵敏性更高,随着药剂用量的增加2种黄铁矿可浮性无明显差异;而在使用丁铵黑药做捕收剂时,HSEP的可浮性均好于PP,并加大了不同pH条件下2种黄铁矿的可浮性差异。PP更容易受到淀粉的抑制,而在使用石灰抑制黄铁矿时,2种黄铁矿的可浮性差异随着pH值的升高而逐渐减小,在pH=12时两者的可浮性无明显差异且被完全抑制。不同硫酸铜用量和矿浆pH值条件下,2种黄铁矿的可浮性具有明显差异,加大捕收剂用量和硫酸均对HSEP活化的效果更好。 展开更多
关键词 黄铁矿 浮选 成因类型 晶面择优取向 铁硫比 可浮性差异
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Variation in energy metabolism structure of microbial community during bioleaching chalcopyrites with different iron-sulfur ratios 被引量:1
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作者 YANG Yu ZHU Zhen-yu +2 位作者 HU Ting-ting ZHANG Meng-jun QIU Guan-zhou 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2022-2036,共15页
The energy metabolism structure of microbial community plays an important role in the process of biohydrometallurgy.In this article,an artificial microbial community composed of three strains(Acidithiobacillus ferroox... The energy metabolism structure of microbial community plays an important role in the process of biohydrometallurgy.In this article,an artificial microbial community composed of three strains(Acidithiobacillus ferrooxidans,Leptospirillum ferriphilum and Acidithiobacillus thiooxidans)was used to leach three kinds of chalcopyrites with different iron-sulfur ratios.After 36 d of leaching,the chalcopyrite with iron-sulfur ratio of about 1:1 achieved the highest copper extraction(69.62%).In the early stage,iron oxidizing bacteria predominated,and the expression of rus and rio was 8 times higher than that in the late stage.In the late stage,sulfur oxidizing bacteria predominated,and the expression of tetH and HdrAB was 4 times higher than that in the early stage.Furthermore,the three bioleaching systems above were added with elemental sulfur(3 g/L);the chalcopyrite with iron-sulfur ratio of about 2:1 achieved the highest copper extraction(80.63%).The results suggest that the energy metabolism structure of the microbial community could be changed by changing the iron-sulfur ratio during the leaching process for improving the leaching efficiency of chalcopyrite. 展开更多
关键词 energy metabolism structure microbial community BIOLEACHING chalcopyrite iron-sulfur ratio
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