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Removing Tin from Tin-bearing Iron Concentrates with Sulfidation Roasting Using High Sulfur Coal

机译:使用高硫煤进行硫化焙烧去除含锡铁精矿中的锡

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With the sulfidation roasting process using high sulfur coal, the tin could be removed efficiently from tin-bearing iron concentrates, and the iron phase was reduced to metal iron. The research showed that the tin removal rate increased with roasting temperature and residence time. Different with the phenomena using pyrite as curing agent, deep reduction of tin-bearing concentrates did not cause tin remove rate decrease. The reason may be that curing rate of tin phases by the SO_(2) generated from high sulfur coal pyrolysis was higher, and the formation amounts of iron-tin alloy were decreased. The iron phase was mainly reduced into Fe from Fe_(2)O_(3) and Fe_(3)O_(4) in the roasting process. Tin content of the concentrates was decreased to 0.056% under the conditions of N_(2) flow rate of 60 ml/min, roasting temperature of 1473 K, residence time of 60 min, high sulfur coal addition amounts of 70% and particle size of 200 meshes. The roasting product can meet the standard of BF ironmaking, which requires tin content in iron ores less than 0.08%. The work supplies a new approach for the clean use of high sulfur coal.
机译:通过使用高硫煤的硫化焙烧工艺,可以有效地从含锡铁精矿中除去锡,并将铁相还原为金属铁。研究表明,除锡率随着焙烧温度和停留时间的增加而增加。与使用黄铁矿作为固化剂的现象不同,含锡精矿的深度还原不会引起锡去除率的降低。原因可能是高硫煤热解产生的SO_(2)使锡相的固化速率更高,而铁锡合金的形成量却减少了。在焙烧过程中,铁相主要从Fe_(2)O_(3)和Fe_(3)O_(4)还原为Fe。在N_(2)流量为60 ml / min,焙烧温度为1473 K,停留时间为60 min,高硫煤添加量为70%,粒径为60%/ min的条件下,精矿中的锡含量降至0.056%。 200目该焙烧产品可以满足高炉炼铁的标准,要求铁矿石中锡含量小于0.08%。该工作为清洁使用高硫煤提供了一种新方法。

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