Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesHost
2023 No. 6
Article Contents

Si Jinfeng, Li Xingming. Effect of Pretreatment Methods on the Yield of Humic Acid in Oxidized Coal[J]. Multipurpose Utilization of Mineral Resources, 2023, 44(6): 154-158, 183. doi: 10.3969/j.issn.1000-6532.2023.06.023
Citation: Si Jinfeng, Li Xingming. Effect of Pretreatment Methods on the Yield of Humic Acid in Oxidized Coal[J]. Multipurpose Utilization of Mineral Resources, 2023, 44(6): 154-158, 183. doi: 10.3969/j.issn.1000-6532.2023.06.023

Effect of Pretreatment Methods on the Yield of Humic Acid in Oxidized Coal

  • This is an essay in the field of mineral processing engineering. During the mining and storage process of coal resources, a large amount of oxidized coal is formed, resulting in waste of coal resources and environmental pollution. Extracting humic acid from oxidized coal can achieve the goal of high-value utilization of oxidized coal resources. In order to further improve the content and utilization efficiency of humic acid in oxidized coal, this article uses three methods: H2O2 oxidation, concentrated H2SO4 oxidation, and reverse flotation to pretreat oxidized coal samples. The influence of these methods on the content of humic acid in oxidized coal was investigated, and the changes in oxygen-containing functional groups were analyzed using Fourier transform infrared spectroscopy (FTIR). The experimental results show that both oxidation and reverse flotation can improve the utilization efficiency of humic acid. After using H2O2 oxidation, the humic acid content in coal samples increases from 21.58% to 43.62%; After oxidation with concentrated H2SO4, the content of humic acid reached 48.51%, and the extraction rate of humic acid reached 81.08%. Extracting humic acid through reverse flotation treatment can remove some minerals, and humic acid is enriched in sediment. The extraction rate of humic acid is also improved. After oxidation treatment, the extracted humic acid has an increase in oxygen-containing groups and enhanced hydrophilicity.

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  • [1] 陈阳, 解维伟. 药剂C-1对氧化煤浮选的促进机理研究[J]. 煤炭工程, 2020, 52(9):153-156. CHEN Y, XIE W W. Study on the promotion mechanism of agent C-1 on oxidised coal flotation[J]. Coal Engineering, 2020, 52(9):153-156.

    Google Scholar

    CHEN Y, XIE W W. Study on the promotion mechanism of agent C-1 on oxidised coal flotation[J]. Coal Engineering, 2020, 52(9): 153-156.

    Google Scholar

    [2] 陈强. 高灰氧化煤的浮选试验研究[J]. 洁净煤技术, 2012, 18(2):10-12. CHEN Q. Flotation test study of high ash oxidised coal[J]. Clean Coal Technology, 2012, 18(2):10-12.

    Google Scholar

    CHEN Q. Flotation test study of high ash oxidised coal[J]. Clean Coal Technology, 2012, 18(2): 10-12.

    Google Scholar

    [3] 王市委, 陶秀祥, 陈松降, 等. 低阶煤-油泡浮选技术研究进展[J]. 矿产综合利用, 2020(4):48-58. WANG S W, TAO X X, CHEN S J, et al. Development of oily bubble flotation research for low-rank coal[J]. Multipurpose Utilization of Mineral Resources, 2020(4):48-58.

    Google Scholar

    WANG S W, TAO X X, CHEN S J, et al. Development of oily bubble flotation research for low-rank coal[J]. Multipurpose Utilization of Mineral Resources, 2020(4): 48-58.

    Google Scholar

    [4] 程万里, 邓政斌, 刘志红, 等. 煤泥浮选中矿物颗粒间相互作用力的研究进展[J]. 矿产综合利用, 2020(3):48-55. CHENG W L, DENG Z B, LIU Z H, et al. Research progress of interaction force between mineral particles in coal slurry flotation[J]. Multipurpose Utilization of Mineral Resources, 2020(3):48-55.

    Google Scholar

    CHENG W L, DENG Z B, LIU Z H, et al. Research progress of interaction force between mineral particles in coal slurry flotation[J]. Multipurpose Utilization of Mineral Resources, 2020(3): 48-55.

    Google Scholar

    [5] 桂夏辉, 邢耀文, 王婷霞. 煤泥浮选过程强化之二——低阶/氧化煤难浮机理探讨篇[J]. 选煤技术, 2017(2):79-83. GUI X H, XING Y W, WANG T X. Enhancement of coal slurry flotation process II - Exploration chapter on the mechanism of difficult flotation of low-order/oxidised coal[J]. Coal Beneficiation Technology, 2017(2):79-83.

    Google Scholar

    GUI X H, XING Y W, WANG T X. Enhancement of coal slurry flotation process II - Exploration chapter on the mechanism of difficult flotation of low-order/oxidised coal[J]. Coal Beneficiation Technology, 2017(2): 79-83.

    Google Scholar

    [6] 桂夏辉, 邢耀文, 连露露, 等. 煤泥浮选过程强化之三——低阶/氧化煤浮选界面强化篇[C]// 2018年全国选煤学术交流会.

    Google Scholar

    GUI X H, XING Y W, LIAN L L, et al. Coal slurry flotation process enhancement III - low-order/oxidised coal flotation interface enhancement chapter[C]// 2018 National Coal Beneficiation Symposium.

    Google Scholar

    [7] 王之春, 董宪姝. 腐植酸钠对煤泥浮选抑制规律的研究[J]. 中国煤炭, 2016, 42(2):83-87. WANG Z C, DONG X S. Research on the inhibition law of sodium humate on coal slurry flotation[J]. China Coal, 2016, 42(2):83-87.

    Google Scholar

    WANG Z C, DONG X S. Research on the inhibition law of sodium humate on coal slurry flotation[J]. China Coal, 2016, 42(2): 83-87.

    Google Scholar

    [8] 黄良仙, 韩星星, 马展, 等. 甘肃某地褐煤中腐植酸的提取工艺研究[J]. 陕西科技大学学报(自然科学版), 2019, 37(6):105-110. HUANG L X, HAN X X, MA Z, et al. Research on the extraction process of humic acid from lignite in Gansu[J]. Journal of Shaanxi University of Science and Technology (Natural Science Edition), 2019, 37(6):105-110.

    Google Scholar

    HUANG L X, HAN X X, MA Z, et al. Research on the extraction process of humic acid from lignite in Gansu[J]. Journal of Shaanxi University of Science and Technology (Natural Science Edition), 2019, 37(6): 105-110.

    Google Scholar

    [9] 安泉, 屈进州, 周安宁, 等. 低阶煤煤泥的淀粉抑制反浮选降灰实验研究[J]. 选煤技术, 2019(6):24-27+33. AN Q, QU J Z, ZHOU A N, et al. Experimental study on ash reduction by starch inhibited reverse flotation of low rank coal slurry[J]. Coal Selection Technology, 2019(6):24-27+33.

    Google Scholar

    AN Q, QU J Z, ZHOU A N, et al. Experimental study on ash reduction by starch inhibited reverse flotation of low rank coal slurry[J]. Coal Selection Technology, 2019(6): 24-27+33.

    Google Scholar

    [10] 阳虹, 李永生, 范云场, 等. 风化煤中腐植酸的提取及其光谱学研究[J]. 煤炭转化, 2013, 36(2):87-91. YANG H, LI Y S, FAN Y C, et al. Extraction of humic acid from weathered coal and its spectroscopic study[J]. Coal Conversion, 2013, 36(2):87-91.

    Google Scholar

    YANG H, LI Y S, FAN Y C, et al. Extraction of humic acid from weathered coal and its spectroscopic study[J]. Coal Conversion, 2013, 36(2): 87-91.

    Google Scholar

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