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碘-乙醇非水体系分离-重铬酸钾滴定法测定炉渣中金属铁与氧化亚铁 被引量:10

Determination of metallic iron and ferrous oxide in furnace slag by potassium dichromate titration after separation in iodine-ethanol non-aqueous system
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摘要 对炉渣中的金属铁与氧化亚铁的测定进行了研究。通过考察与金属铁反应而不与氧化亚铁反应的5种弱酸盐溶液(醋酸铅溶液、醋酸铜溶液、三氯化铁-醋酸钠-醋酸溶液、碘-碘化钾溶液、三氯化铁溶液)和非水溶液(碘-乙醇溶液)对金属铁的浸取效果,选取了碘-乙醇溶液作为炉渣中金属铁的浸取剂。实验结果表明,0.200 0g炉渣样品用50mL碘-乙醇溶液浸取40min,采用重铬酸钾滴定法分别测定浸取液中铁量和浸取后残渣中的亚铁量,得到炉渣中金属铁和氧化亚铁量,金属铁的浸取率在97%以上,而氧化亚铁不被浸出。与经典的三氯化铁浸取剂相比,本浸取剂对金属铁的浸取效果好,金属铁与氧化亚铁分离完全,避免了用三氯化铁溶液作浸取剂时亚铁与金属铁的酸溶干扰。以碘-乙醇溶液浸取钢渣和脱磷渣后采用重铬酸钾滴定法测定,金属铁的测定结果的相对标准偏差(RSD)分别为4.2%和4.6%,氧化亚铁测定结果的相对标准偏差(RSD)分别为0.72%和0.62%。 The determination of metallic iron and ferrous oxide in furnace slag was studied. The leac- hing effect of five weak acid salt solutions (which could react with metallic iron but not react with fer- rous oxide, including lead acetate, copper acetate, ferric chloride-sodium acetate-acetic acid, iodine- potassium iodide and ferric trichloride) and non-aqueous solution (iodine-ethanol solution) on metallic iron were investigated. The iodine-ethanol solution was selected as the leaching agent for metallic iron in furnace slag. 0. 200 0 g of furnace slag sample was leached with 50 mL of iodine-ethanol solution for 40 min, then the content of iron in leaching solution and ferrous in residue was determined by potassi- um dichromate titration, respectively, to obtain the content of metallic iron and ferrous oxide in fur nace slag. The experimental method showed that, leaching rate of metallic iron was higher than 97%, while ferrous oxide was not leached. Compared with the classical ferric chloride leaching reagent, iodine-ethanol system showed better leaching effect of metallic iron. The metallic iron could be totally separated from ferrous oxide and avoided the acid dissolution interference while using ferric trichloride as leaching agent. The steel slag and dephosphorization slag were leached with iodine-ethanol solution and then determined by potassium dichromate titration. The relative standard deviation (RSD) of me- tallic iron was 4.2% and 4.6%, respectively. The RSD of ferrous oxide was 0.72% and 0.62%, re- spectively.
出处 《冶金分析》 CAS CSCD 北大核心 2013年第8期28-32,共5页 Metallurgical Analysis
关键词 炉渣 碘-乙醇非水体系 金属铁 亚铁 重铬酸钾滴定 furnace slag iodine-ethanol non-aqueous system metallic iron ferrous oxide potassium dichromate titration
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  • 1杨隽,雷清如.碘-乙醇分离钒钛高炉渣中金属铁的研究[J].无机盐工业,2004,36(6):54-56. 被引量:6
  • 2黄孟阳,彭金辉,张世敏,孙艳,汪云华,黄铭,范兴祥.微波加热还原钛精矿制取富钛料新工艺[J].钢铁钒钛,2005,26(3):24-28. 被引量:23
  • 3林发,黄美新.碳酸钙样品中微量铁的分析[J].无机盐工业,1996,10(6):34-36. 被引量:1
  • 4GB/T 6730.6-1986铁矿石化学分析方法:三氯化铁-乙酸钠容量法测定金属铁量[S].
  • 5GB/T 6730.8-1986铁矿石化学分析方法:重铬酸钾容量法测定亚铁量[S].
  • 6庄丽英.铁矿石中氧化亚铁测定方法的改进.冶金分析,1986,6(5):33-35.
  • 7王其华 马荣生.直接还原铁过程中金属铁和亚铁测定方法的研究.冶金分析,1985,5(1):114-17.
  • 8[2]Young R S.物相分析方法[M].张弛译.北京:冶金工业出版社,1982.46-78
  • 9[3]陈友善.钒钛矿冶金化学物相分析[M].成都:四川人民出版社,1983.27-63
  • 10[4]Rawers J,Kwong J,Bennett J.Characterizing coal-gasifier slag-refractory interactions[J]. Mater. At High Tempt., 1999,16 (4):219-222

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