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氯化冶金炉耐火材料腐蚀、黏附行为研究 被引量:4

Stu dy on the Corrosion and Adhesion Behavior of Chloridizing Metallurgy Furnace
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摘要 氯化冶金工艺中炉料成分复杂,易对氯化冶金炉耐火材料产生腐蚀、黏附,影响耐火材料的寿命,并阻碍氯化焙烧提金工艺产业化。将4种常见Al2O3-Si O2系耐火砖小块放入炉料中长时间焙烧,分析其接触面的物相,得出含Ca Cl2的矿粉在高温下对耐火材料的界面腐蚀特性:1 200℃下高铝耐火砖不粘料、不与炉料反应,高硅耐火砖中Si O2则会与炉料中Ca反应而被侵蚀;1 250℃时由于铁氧化物在氧化铝中的固溶及低熔点物质的生成,高铝耐火砖开始发生炉料的黏附;1 250℃时高硅耐火砖开始发生炉料的渗入,并由于Ca元素与Si O2的反应而被侵蚀;随着温度的升高,Fe2O3在Al O3中的固溶量增加,1 300℃时铁在高铝耐火材料中的富集更为明显。 Furnace burden is chemically complex in the chloride metallurgy process.Complex components of furnace burden can corrode or adhere to refractory material,which reduces the working life of refractory material and then has a strong impact on the industrialization of chloridizing-roasting gold-extracting process.Small chunks of four kinds of common firebrick were put in the furnace burden and roast.Through analyzing the phases of contact surface the high temperature surface corrosion properties caused by minerals containing Ca Cl2 were found.It suggests that firebricks which contain more Al2O3 are not adhesive to furnace burden,and they are chemical stable in that condition.Firebricks which contain more Si O2 will react with Ca at 1 200 ℃.The furnace burden clings to high Al2O3 content firebricks because iron oxides can be solid dissolved in Al2O3 and materials of low melting point are generated at 1 250 ℃.The content of Fe2O3 which is solid dissolved in Al2O3 increases with rising temperature.Iron enrichment of high Al2O3 content firebricks is more obvious at 1 300 ℃.
出处 《黄金科学技术》 CSCD 2015年第5期99-104,共6页 Gold Science and Technology
基金 国家自然科学基金项目"复杂体系无机涂层高温黏附特征响应机理及过程调控"(编号:51202249) 中国科学院"战略重点研究计划""纳米材料规模化生产中的质量控制体系"(编号:XDA09040100)联合资助
关键词 氯化冶金 耐火材料 腐蚀 黏附 chloridizing metallurgy refractory material corrosion adhesion
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参考文献16

  • 1丁剑,孙建伟,钱鹏,潘占开,叶树峰,李青春,王彩霞,陈运法.氯化焙烧回收高铁硫酸烧渣中有价金属的实验研究[J].计算机与应用化学,2012,29(3):255-261. 被引量:16
  • 2梅冬和.氯化球团工程防腐简介[J].现代冶金,1982,(4):106-114. 被引量:1
  • 3韩晓光..高炉煤气中HCl对耐火材料侵蚀过程的研究[D].河北联合大学,2013:
  • 4刘化升.氨碱废液法氯化钙生产设备的腐蚀与防护[J].纯碱工业,2014(4):30-32. 被引量:1
  • 5王艳波..高浓度氯离子介质中铝、铜合金的腐蚀与防护研究[D].重庆大学,2005:
  • 6潘葱英..垃圾焚烧炉内过热器区HCI高温腐蚀研究[D].浙江大学,2004:
  • 7Abels J M, Strehblow H H.A surface analytical approach to the high temperature chlorination behaviour of inconel 600 at 700 ~C [ J ].Corrosion Science, 1997,39( 1 ): 115-132. 被引量:1
  • 8Zahs A, Spiegel M, Grabke H J.Chloridation and oxidation of iron,chromium,nickel and their alloys in chloridizing and oxidizing atmospheres at 400-700 ~C [ J ].Corrosion Science, 2000,42(6): 1093-1122. 被引量:1
  • 9Nielsen H P,Frandsen F J,Dam-Johansen K,et al.The impli- cations of chlorine-associated corrosion on the operation of biomass-fired boilers [ J ].Progress in Energy and Combustion Science, 2000,26(3 ) : 283-298. 被引量:1
  • 10Hossain M K, Saunders S R J.A microstructural study of lhe influence of NaC1 vapor on the oxidation of a Ni-Cr-A1 alloy at $50 ~C [J ].Oxidation of Metals, 1978,12( 1 ) : 1-22. 被引量:1

二级参考文献46

  • 1马红周,兰新哲,王耀宁,尚军刚,张向昭.焙烧氰化尾渣的利用研究[J].稀有金属,2010,34(2):281-284. 被引量:24
  • 2李绍卿,王静,刘香梅,罗建民.从氰化尾渣中回收金的氰化工艺研究[J].黄金,2004,25(10):37-39. 被引量:17
  • 3吴敏杰,白春根.碳质金矿的氯化预处理[J].黄金科学技术,1994,2(1):34-39. 被引量:8
  • 4Okada,K and Otsuka N.Change in chemical composition of mullite formed from 2SiO2*3Al2O3 xerogel during the formation process,J.Am.Ceram.Soc,1987.70:245-247 被引量:1
  • 5Huling J.C and Messing.G.L.Hybrid gels for homoepitactic nucleation of mullite,J.Am.Ceram.Soc,1989.72:1725-1729 被引量:1
  • 6Li,D.X and Thomson.WJ.Kinetic mechanisms for the mullite formation from sol-gel precursors,J.Mater.Res,1990.5:1963-1969 被引量:1
  • 7Wei W and Halloran,J.W.Tranformation kinetics of diphasic aluminosilicate gels,J.Am.Ceram.Soc,1988.71:581-587 被引量:1
  • 8Low.I.M and Mcpherson R.The origin of mullite formation.J.Mater.Sci,1989.24:926-936 被引量:1
  • 9Klaussen.G.Fischman.G.S and Laughner.J.L.Microstructure evolution of sol-gel mullite,Ceram.Eng.Sci.Proc,1990.11:1087-1093 被引量:1
  • 10Sundaresan S.Mullitization of diphasic aluminosilicate gels.J.Am.Ceram.Soc,1991.74:2388-2392 被引量:1

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