Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报

ZHONGGUO YOUSEJINSHU XUEBAO

第25卷    第1期    总第190期    2015年1月

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文章编号:1004-0609(2015)-01-0190-07
钼精矿真空分解工艺热力学分析
王 磊1, 2,郭培民2,庞建明2,赵 沛2

(1. 北京科技大学 冶金与生态工程学院,北京 100083;
2. 中国钢研科技集团有限公司 低温冶金与资源高效利用中心,北京 100081
)

摘 要: 对钼精矿真空分解工艺中的关键性环节进行了热力学分析,并进行了真空分解试验验证。结果表明:控制炉内压力在低于100Pa、分解温度在1773~2073 K范围,实现钼精矿分解得到金属Mo完全可能。钼精矿中As2S3、SnS2、PbS直接以硫化物形式升华去除,而Bi2S3则更容易分解为Bi蒸气和S蒸气,直接以气态形式去除。CuS在较低温度下容易分解为Cu2S和S蒸气,而要使Cu2S分解为Cu蒸气将Cu去除,则需要更高的温度。硫磺可以通过冷凝的方式回收,硫磺回收的温度区间为392~490 K。通过试验得到Mo含量达到93.69%的金属钼球和S含量达到98.6%的硫磺产品,金属Mo中P、S、Cu、As、Pb和Sn等杂质元素较少。

 

关键字: 钼精矿;真空分解;热力学;硫磺

Thermodynamic analysis of vacuum decomposition process of molybdenum concentrate
WANG Lei 1, 2, GUO Pei-min2, PANG Jian-ming2, ZHAO Pei2

1. School of Metallurgical and Ecological Engineering,
University of Science and Technology Beijing, Beijing 100083, China;
2. Center of Efficient Utilization of Resources by Low-temperature Metallurgy,
China Iron and Steel Research Institute Group, Beijing 100081, China

Abstract:The key steps of thermal decomposition process of molybdenum concentrate in vacuum were thermodynamically analyzed and verified by the vacuum decomposition experiment. The results show that the thermal decomposition process of molybdenum concentrate in vacuum is feasible when the temperature is in the range of 1773-2073 K and the furnace pressure is less than 100Pa. PbS, SnS2 and As2S3 in the molybdenum concentrate can directly volatile into gas, and Bi2S3 is more likely to decompose to Bi and S vapors and volatilize directly, and CuS decomposes to Cu2S easily, but Cu2S is difficult to decompose unless it is treated under a higher temperature and a lower pressure. The calculated suitable temperature range for sulfur recovery in this process is 392-490 K. The Mo content of molybdenum metal ball obtained by experiments is 93.69% and the S content of sulfur products reaches 98.6%. The impurity elements, such as P, S, Cu, As, Pb, Sn, in the molybdenum products are very low.

 

Key words: molybdenum concentrate; vacuum decomposition; thermodynamic; sulfur

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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