欢迎登录材料期刊网

材料期刊网

高级检索

不锈钢粉尘是一种产生量大、粒度细小、杂质含量高、极具回收利用价值的二次资源。为了开发不锈钢粉尘高效利用工艺,采用化学分析、XRD、扫描电镜等方法,对 EAF 和 AOD 不锈钢除粉尘的化学成分、粒度、物相组成、Cr6+浸出及微观形貌进行了研究。结果表明,不锈钢粉尘中 Ni、Cr、Fe含量较高,且均以氧化物形式存在;粉尘中的主要物相有铬铁尖晶石、磁铁矿、钙镁橄榄石、石英及石灰等;粉尘中的 Cr6+含量极少,低于国家危险废弃物的限制要求,但高于饮用水国家标准。

Stainless steel dust is a kind of secondary utilization resource with large output,small particle size,high impurity content and great recycling value.For efficient utilization of stainless steel dust,chemical components, particle size,phase composition,leaching experiment and microstructures of EAF and AOD dust were studied by chemical analysis,XRD,scanning electron microscopy (SEM).The results show that Ni,Cr and Fe are enriched in stainless steel dust and existing in the form of oxide.The phase compositions of dust mainly include chromoher-cynite,magnetite,monticellite,silica and lime etc.The dust contains rarely Cr6+ which is lower than the require-ment of the national hazardous waste,but is slightly higher than the national standard for drinking water.

参考文献

[1] 彭兵;彭及.不锈钢电弧炉粉尘的物理化学特性及形成机理探讨[J].北方工业大学学报,2003(1):34-40.
[2] 彭及 .不锈钢冶炼粉尘形成机理及直接回收基础理论和工艺研究[D].中南大学,2007.
[3] 沈宗斌;沙永志.钢铁粉尘冷固结球团工艺研究[J].钢铁,2003(12):1-5.
[4] Alan Douglas Zunkel.Electric arc furnace dust management: A review of technologies[J].Iron and Steel Engineer,19973(3):33-38.
[5] G. Ma;A.M. Garbers-Craig.Cr(VI) containing electric furnace dusts and filter cake from a stainless steel waste part 1-Characteristics and microstructure[J].Ironmaking & Steelmaking: Products and applications,20063(3):229-237.
[6] K. Pillay;H. von Blottnitz;J. Petersen.Ageing of chromium(III)-bearing slag and its relation to the atmospheric oxidation of solid chromium(III)-oxide in the presence of calcium oxide[J].Chemosphere,200310(10):1771-1779.
[7] 李具仓.不锈钢除尘灰的再生利用[J].钢铁研究学报,2013(08):19-23.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%