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    利用濕法煉鋅赤鐵礦法沉鐵渣制備鐵紅工藝

    楊源 鄧志敢 魏昶 樊剛 劉慧楊 曾濤 朱應旭

    楊源, 鄧志敢, 魏昶, 樊剛, 劉慧楊, 曾濤, 朱應旭. 利用濕法煉鋅赤鐵礦法沉鐵渣制備鐵紅工藝[J]. 工程科學學報, 2020, 42(10): 1325-1334. doi: 10.13374/j.issn2095-9389.2019.10.17.005
    引用本文: 楊源, 鄧志敢, 魏昶, 樊剛, 劉慧楊, 曾濤, 朱應旭. 利用濕法煉鋅赤鐵礦法沉鐵渣制備鐵紅工藝[J]. 工程科學學報, 2020, 42(10): 1325-1334. doi: 10.13374/j.issn2095-9389.2019.10.17.005
    YANG Yuan, DENG Zhi-gan, WEI Chang, FAN Gang, LIU Hui-yang, ZENG Tao, ZHU Ying-xu. Preparation of iron oxide red by sinking iron slag in zinc smelting hematite process[J]. Chinese Journal of Engineering, 2020, 42(10): 1325-1334. doi: 10.13374/j.issn2095-9389.2019.10.17.005
    Citation: YANG Yuan, DENG Zhi-gan, WEI Chang, FAN Gang, LIU Hui-yang, ZENG Tao, ZHU Ying-xu. Preparation of iron oxide red by sinking iron slag in zinc smelting hematite process[J]. Chinese Journal of Engineering, 2020, 42(10): 1325-1334. doi: 10.13374/j.issn2095-9389.2019.10.17.005

    利用濕法煉鋅赤鐵礦法沉鐵渣制備鐵紅工藝

    doi: 10.13374/j.issn2095-9389.2019.10.17.005
    基金項目: 國家自然科學基金地區基金資助項目(51564030,51664030);國家自然科學基金青年科學基金資助項目(51804146);國家自然科學基金地區科學基金資助項目(51964029);國家重點研發計劃固廢資源化專項資助項目(2018YFC1900402)
    詳細信息
      通訊作者:

      E-mail:dengzhigan83@163.com

    • 中圖分類號: TF802.2

    Preparation of iron oxide red by sinking iron slag in zinc smelting hematite process

    More Information
    • 摘要: 針對赤鐵礦渣中存在雜質,影響其綜合回收利用的問題,開展赤鐵礦渣高溫水熱法脫雜,制備鐵紅的研究。研究了不同酸度、溫度、時間和液固比條件,對鐵紅產品中鐵、鋅、硫含量以及鋅、硫脫除率和鐵溶出率的影響。實驗結果表明:pH值為1,溫度220 ℃,保溫時間3 h,液固比6∶1,轉速400 r·min?1條件下,鐵紅產品中鐵質量分數由58.66%上升為66.83%;赤褐鐵類礦物含鐵由占總鐵質量分數94.05%,上升為97.79%;硫質量分數由2.96%下降至0.82%;鋅質量分數由1.03%下降至0.18%。經X射線衍射檢測,與赤鐵礦渣相比,鐵紅產品中氧化鐵信號峰值提高,雜峰減少。通過掃描電鏡/能量散射X射線分析,鐵紅產品表面附著的硫酸鹽等雜質經高溫水熱法處理后明顯減少;實驗前后,赤鐵礦渣與鐵紅產品顆粒形貌與大小沒有發生變化。實驗處理后的鐵紅產品經檢測,滿足國家標準氧化鐵紅含鐵量C級,水溶物和水溶性氯化物及硫酸鹽含量III型,篩余物2型,105 ℃揮發物V2型,來源a型標準。

       

    • 圖  1  赤鐵礦渣X射線衍射圖

      Figure  1.  Hematite X-ray diffraction patterns

      圖  2  不同酸度對鐵紅產品質量,鋅、硫脫除率以及鐵溶出率的影響。(a)鐵紅產品中鐵、鋅、硫質量分數;(b)鋅、硫脫除率以及鐵溶出率

      Figure  2.  Effects of different acidity levels on iron oxide red content, impurity removal rate, and iron dissolution rate: (a) iron, zinc, sulfur mass fraction in iron oxide red products; (b) removal rate of zinc and sulfur and iron dissolution rate

      圖  3  200 ℃赤鐵礦渣中雜質穩定區域圖[26]

      Figure  3.  Diagram of stable impurity region in hematite at 200 ℃[26]

      圖  4  不同溫度對鐵紅產品質量,鋅、硫脫除率以及鐵溶出率的影響。(a)鐵紅產品中鐵、鋅、硫質量分數;(b)鋅、硫脫除率以及鐵溶出率

      Figure  4.  Effects of different temperatures on iron oxide red product content, impurity removal rate, and iron dissolution rate: (a) iron, zinc, sulfur mass fraction in iron oxide red products; (b) removal rate of zinc and sulfur and iron dissolution rate

      圖  5  不同反應時間對鐵紅產品質量,鋅、硫脫除率以及鐵溶出率的影響。(a)鐵紅產品中鐵、鋅、硫質量分數;(b)鋅、硫脫除率以及鐵溶出率

      Figure  5.  Effects of different preparation times on iron oxide red product content, impurity removal rate, and iron dissolution rate: (a) iron, zinc, sulfur mass fraction in iron oxide red products; (b) removal rate of zinc and sulfur and iron dissolution rate

      圖  6  不同液固比對鐵紅產品質量,鋅、硫脫除率以及鐵溶出率的影響。(a)鐵紅產品中鐵、鋅、硫質量分數;(b)鋅、硫脫除率以及鐵溶出率

      Figure  6.  Effects of different liquid–solid ratios on iron oxide red product content, impurity removal rate, and iron dissolution rate: (a) iron, zinc, sulfur mass fraction in iron oxide red products; (b) removal rate of zinc and sulfur and iron dissolution rate

      圖  7  赤鐵礦渣與綜合實驗條件產出鐵紅產品X射線衍射圖

      Figure  7.  X-ray diffraction pattern of slag compared with that of raw material

      圖  8  赤鐵礦渣掃描電鏡與能譜圖

      Figure  8.  SEM/EDAX image and diagram of hematite slag

      圖  9  鐵紅產品掃描電鏡與能譜圖

      Figure  9.  SEM/EDAX image and diagram of iron oxide red products

      表  1  赤鐵礦渣中主要元素含量(質量分數)

      Table  1.   Content of main elements in hematite %

      FeZnSKNa
      58.661.032.960.0280.061
      下載: 導出CSV

      表  2  赤鐵礦渣中鐵物相含鐵占比(質量分數)

      Table  2.   Proportions of iron content in hematite slag %

      Iron in magnetic iron mineralsIron in iron carbonate mineralsIron in silicate mineralsIron in sulfate mineralsIron in red brown iron minerals
      1.230.581.742.3994.05
      下載: 導出CSV

      表  3  赤鐵礦渣浸出毒性檢測結果

      Table  3.   Hematite residue leaching toxicity test results mg·L?1

      IndexFluorideCyanideHexavalent chromiumCopperLeadZincCadmiumBeryllium
      Standard10055100510010.02
      Content0.090.2530.08475.70.0450.0015
      IndexNickelTotal chromiumArsenicSeleniumBariumMercurySilver
      Standard515511000.15
      Content0.0270.0120.0100.00720.00660.0002
      下載: 導出CSV

      表  4  檢測最佳條件處理的鐵紅產品與赤鐵礦渣中各鐵物相含鐵質量分數占比

      Table  4.   Proportion of iron content in the iron phase between the iron red product and the hematite residue under the best condition

      Sample typesIron in magnetic iron minerals/%Iron in iron carbonate minerals/%Iron in silicate minerals/%Iron in sulfate minerals/%Iron in red brown iron minerals/%
      Hematite slag1.230.581.742.3994.05
      Iron red products<0.750.100.750.5897.79
      下載: 導出CSV

      表  5  鐵紅產品與赤鐵礦渣中鐵,鋅,硫質量分數對比

      Table  5.   Comparison of zinc, iron, and sulfur mass fractions in iron oxide red products and hematite slag %

      Sample typesFeZnS
      Hematite slagIron58.661.032.96
      Iron oxide red products66.830.180.82
      下載: 導出CSV
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