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Fundamental Study on Application of Gas-based Shaft Furnace Direct Reduction Process to high Efficiency and Clean Utilization of Paigeite

机译:基于天然气轴炉直接减速过程对宜瓜省高效率和清洁利用的基础研究

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The paigeite resources are abundant in China, but most of them are difficult to be utilized efficiently because of the current technical problems on industrial practice. It is necessary to perfected and innovated for comprehensive utilization of paigeite. The new process of gas-based shaft furnace direct reduction-electric furnace smelting separation provides a new way to efficient and clean comprehensive utilization of paigeite resources. In this paper, the pellets are prepared from boron-bearing iron concentrate. The mechanisms of roasting, the rules of reduction, and the properties of reduction swelling are also investigated. And then the pellets after reduction are smelted and separated in electric furnace to study the properties of products and analyze the feasibility and superiority of new technique. The results showed that boron-bearing iron concentrate is a kind of good raw material for pelletizing process. The properties of boron-bearing pellets after roasting for 20 min at 1200°C could meet to the requirements of gas-based shaft furnace direct reduction process, which exhibited fast reaction rate, good reduction swelling properties and high compressive strength both before and after reduction. With the new process, the efficient separation of boron and iron can be realized. The high boron grade and high activity of boron-rich slag obtained from new process can be used directly in boric acid manufacture. The new process shows excellent tech-economy feasibility to achieve efficiency and clean comprehensive utilization of paigeite resources.
机译:Paigeite资源在中国丰富,但由于目前的工业实践技术问题,大多数人都很难有效利用。有必要完善和创新,以普遍利用Paigeite。天然气轴炉的新工艺直接减速电炉冶炼分离提供了一种新的普通岩资源综合利用的新方法。在本文中,粒料由含硼铁浓缩物制备。还研究了烘焙机制,减少规则和还原肿胀的性质。然后在电炉中施加并分离颗粒,以研究产品的性质,并分析新技术的可行性和优越性。结果表明,含硼铁浓缩物是一种用于造粒过程的良好原料。硼球粒在1200焙烧20分钟后的性质℃下能够满足给基于气体的竖炉直接还原方法,其表现出快速反应速率,良好的还原溶胀性能和高抗压强度的两个前和压下后的要求。随着新工艺,可以实现硼和铁的有效分离。从新方法获得的富含硼渣的高硼等级和高活性可直接在硼酸制造中使用。新工艺显示出优秀的技术经济性可行性,以实现Paigeite资源的效率和清洁综合利用。

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