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Thermodynamic analysis on the dust generation from EAF for the recycling of dust

机译:电炉产生粉尘循环利用的热力学分析

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Recently, in addition to the large interest on the CO_2 emission problem, the energy saving and the environmental conservation become more and more important issue. Zero emission campaign is adopted by many companies. In such circumstances, most of steel companies were carrying out the recycling of dust by many ways. There are many aspects on the dust recycling. One of important purpose is the zinc recovery, and other is the utilization as a slag (e.g. roadbed material) by injection. Especially for the dust injection, many troubles such as an accumulation in the filtering system and an increase of the content of harmful elements in the dust will occur. Then, it become very important to understand the mechanism and the thermodynamics of the dust generation or/and precipitation form EAF to prevent those troubles. In this study, the dust sampled from the impeller of blower in the dust filtering system of EAF was examined by XRD and XRF. Quite complicated compounds formed in Zn-Fe-Pb-Cr-Mn-O-CI-F system were found in the dust according to the dust injection. Thermodynamic analysis was performed and the equilibrium composition obtained from the calculation was in excellent agreement with the actual composition in the dust. Main constituents in the dust are ZnFe_2O_4 and Fe_2O_3. Relatively dominant ones are as follows: Fluorides are FeF_3, ZnF_2 and PbF_2, chlorides are ZnCl_2 and PbCl_2, and oxides are ZnO and MnO_2. The fluorides deposit around 1 000 deg C from gas phase. And the chlorides ZCl_2, PbCl_2 and oxides MnO_2 form less than 500 deg C. The partial pressure of chloride gas will become a maximum around 400 deg C, when there is no moisture.
机译:近来,除了对CO 2排放问题的浓厚兴趣之外,节能和环境保护也变得越来越重要。零排放运动被许多公司采用。在这种情况下,大多数钢铁公司都通过多种方式进行粉尘的回收利用。灰尘回收有很多方面。重要的目的之一是锌的回收,另一个是通过注入作为矿渣(例如路基材料)的利用。特别是对于粉尘喷射,会发生许多麻烦,例如过滤系统中的堆积以及粉尘中有害元素含量的增加。然后,了解防止电弧炉产生尘埃或/和沉淀物的机理和热力学对于防止这些麻烦就变得非常重要。在本研究中,通过XRD和XRF检查了电炉除尘系统中鼓风机叶轮采样的粉尘。根据粉尘注入情况,在粉尘中发现了Zn-Fe-Pb-Cr-Mn-O-CI-F体系中形成的许多复杂化合物。进行了热力学分析,从计算中获得的平衡组成与粉尘中的实际组成非常吻合。灰尘中的主要成分是ZnFe_2O_4和Fe_2O_3。相对占优势的如下:氟化物为FeF_3,ZnF_2和PbF_2,氯化物为ZnCl_2和PbCl_2,氧化物为ZnO和MnO_2。氟化物从气相沉积约1000摄氏度。氯化物ZCl_2,PbCl_2和氧化物MnO_2的形成少于500摄氏度。如果没有水分,氯化物气体的分压将在400摄氏度附近达到最大值。

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