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低品位鎳磁黃鐵礦鎳浸出特性及回收方法

Leaching characteristics and recovery method of nickel from low-grade nickel-pyrrhotite

  • 摘要: 對我國某高硅低品位鎳磁黃鐵礦進行直接酸浸、焙燒——酸浸和細菌浸出比較,并考察硫酸用量及氧化亞鐵硫桿菌對浸出率的影響.以稻殼為硫酸鹽還原菌固定化載體構建連續上升流固定填充床反應器,以連續上升流方式處理浸出液.結果表明:焙燒使礦物發生燒結,鎳被包裹,不利于浸出;細菌浸出Ni2+浸出率為92.16%,質量濃度可達973.22 mg·L-1·T·f.菌在礦物表面形成生物膜,直接與礦物發生作用使礦物溶解,將浸液中Fe2+氧化為Fe3+,Fe3+進一步溶解礦物·浸出液以2200~3600 mL·L-1·d-1的速率經過反應器,Ni2+以NiS的形式吸附于稻殼上,回收率在98%以上,使原礦中NiO質量分數由1.69%上升至稻殼中的11.84%.浸液中98%的Mg2+留在溶液中,利于金屬分離.

     

    Abstract: In order to leach and recover nickel from high-silicon low-grade nickel-pyrrhotite, some factors were determined, including roasting pretreatment control, sulfuric acid use ratio, inoculated ThiobaciUus. ferrooxidans or uninoculated. Then sulfate-reducing bacteria (SRB) were immobilized by intact rice chaff in an up-flow anaerobic bed reactor. The leach liquor was treated by the reactor. It is shown that roasting results in the sintering of minerals and makes nickel wrapped, which is not conducive to the leaching of nickel. Thiobacillus ferrooxidans form a biofilm on the mineral surface, which plays a key role in the dissolution of minerals, and oxidizes Fe2+ to be Fe3+, which does a further dissolution of minerals. The leaching rate of nickel reaches to 92.16% and the concentration of Ni2+ is 973.22 mg·L-1. When the influent passes through the reactor at a speed of 2 200 to 3 600 mL·L-1·d-1, the recovery of Ni2+, which adsorbs on the rice chaff in the form of NiS, is above 98%, and 98% of magnesium exists in the solution in the form of ions. The NiO content increases from 1.69% of the crude ore to 11.84% of the rice chaff.

     

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