Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesHost
2023 No. 5
Article Contents

Jing Kaiyu, Wang Keqiang. Effect of Rare Earth Tailing on Properties of Recycled Aggregate Concrete[J]. Multipurpose Utilization of Mineral Resources, 2023, 44(5): 47-52, 57. doi: 10.3969/j.issn.1000-6532.2023.05.009
Citation: Jing Kaiyu, Wang Keqiang. Effect of Rare Earth Tailing on Properties of Recycled Aggregate Concrete[J]. Multipurpose Utilization of Mineral Resources, 2023, 44(5): 47-52, 57. doi: 10.3969/j.issn.1000-6532.2023.05.009

Effect of Rare Earth Tailing on Properties of Recycled Aggregate Concrete

  • This is an essay in the field of ceramics and composites. In order to improve the utilization rate of rare earth tailings, this study designed and prepared C30 recycled aggregate concrete with rare earth tailings as fine aggregate. The influence of tailing sand content on workability, mechanical properties and durability of recycled aggregate concrete was studied. The results show that C30 and C40 concrete can be prepared by using rare earth tailing sand as fine aggregate to meet the requirements of the standard. With the increase of tailing sand content, the workability of concrete decreases, but the workability of concrete using tailing sand as fine aggregate can meet the requirements of use. With the increase of tailing sand content, the micro-pore structure of concrete becomes densified and the compressive strength is improved. When tailing sand content is 100%, the 28 d compressive strength of concrete is increased by 34.9%. The addition of tailing sand improves the frost resistance and carbonation resistance of concrete.

  • 加载中
  • [1] Abaka-Wood G B, Zanin M, Addai-Mensah J, et al. Recovery of rare earth elements minerals from iron oxide–silicate rich tailings – part 1: magnetic separation[J]. Minerals Engineering, 2019, 136:50-61. doi: 10.1016/j.mineng.2019.02.026

    CrossRef Google Scholar

    [2] 李潇雨, 惠博, 熊文良, 等. 白云鄂博稀土资源综合利用现状概述[J]. 矿产综合利用, 2021(5):17-24. LI X Y, HUI B, XIONG W L, et al. Multipurpose utilization of rare earth resources in Bayan Obo[J]. Multipurpose Utilization of Mineral Resources, 2021(5):17-24.

    Google Scholar

    LI X Y, HUI B, XIONG W L, et al. Multipurpose utilization of rare earth resources in Bayan Obo[J]. Multipurpose Utilization of Mineral Resources, 2021(5): 17-24.

    Google Scholar

    [3] 熊文良, 黄阳, 张丽军, 等. 稀土尾矿配料煅烧硅酸盐水泥熟料的实验研究[J]. 矿产综合利用, 2021(5):76-80. XIONG W L, HUANG Y, ZHANG L J, et al. Experimental study on calcination of portland cement clinker with rare earth tailings[J]. Multipurpose Utilization of Mineral Resources, 2021(5):76-80.

    Google Scholar

    XIONG W L, HUANG Y, ZHANG L J, et al. Experimental study on calcination of portland cement clinker with rare earth tailings[J]. Multipurpose Utilization of Mineral Resources, 2021(5): 76-80.

    Google Scholar

    [4] 王维维, 李二斗, 王其伟, 等. 白云鄂博微细粒稀土矿工艺矿物学及浮选实验研究[J]. 矿产综合利用, 2021(5):81-85. WANG W W, LI E D, WANG Q W, et al. Study on process mineralogy and flotation test of the Bayan Obo finegrained rare earth ore[J]. Multipurpose Utilization of Mineral Resources, 2021(5):81-85.

    Google Scholar

    WANG W W, LI E D, WANG Q W, et al. Study on process mineralogy and flotation test of the bayan obo finegrained rare earth ore[J]. Multipurpose Utilization of Mineral Resources, 2021(5): 81-85.

    Google Scholar

    [5] 秦玉芳, 马莹, 李娜. 白云鄂博尾矿库及其资源利用研究概况[J]. 矿产综合利用, 2020(6):100-109. QIN Y F, MA Y, LI N. Research overview of Bayan Obo tailings pond and its resource utilization[J]. Multipurpose Utilization of Mineral Resources, 2020(6):100-109.

    Google Scholar

    QIN Y F, MA Y, LI N. Research overview of Bayan Obo tailings pond and its resource utilization[J]. Multipurpose Utilization of Mineral Resources, 2020(6): 100-109.

    Google Scholar

    [6] Xiong Beibei, Demartino Cristoforo, Xu Jinjun, et al. High-strain rate compressive behavior of concrete made with substituted coarse aggregates: Recycled crushed concrete and clay bricks[J]. Construction and Building Materials, 2021, 301:123875. doi: 10.1016/j.conbuildmat.2021.123875

    CrossRef Google Scholar

    [7] Kim Jeonghyun. Properties of recycled aggregate concrete designed with equivalent mortar volume mix design[J]. Construction and Building Materials, 2021, 301:124091. doi: 10.1016/j.conbuildmat.2021.124091

    CrossRef Google Scholar

    [8] Chen Xue-Fei, Kou Shi-Cong, Xing Feng. Mechanical and durable properties of chopped basalt fiber reinforced recycled aggregate concrete and the mathematical modeling[J]. Construction and Building Materials, 2021, 298:123901. doi: 10.1016/j.conbuildmat.2021.123901

    CrossRef Google Scholar

    [9] Lin ShuKen, Wu ChungHao. Improvement of bond srength and durability of recycled aggregate concrete incorporating high volume blast furnace slag[J]. Materials, 2021, 14(13):3708. doi: 10.3390/ma14133708

    CrossRef Google Scholar

    [10] 胡立志, 代飞, 李伟青, 等. 搅拌站废浆对水泥水化的影响[J]. 矿产综合利用, 2019(5):102-106. HU L Z, DAI F, LI W Q, et al. Study on effect of the slurry of concrete mmixing plant upon cement hydration[J]. Multipurpose Utilization of Mineral Resources, 2019(5):102-106.

    Google Scholar

    HU L Z, DAI F, LI W Q, et al. Study on effect of the slurry of concrete mmixing plant upon cement hydration[J]. Multipurpose Utilization of Mineral Resources, 2019(5): 102-106.

    Google Scholar

    [11] 杨树桐, 李琳桢, 于淼. 碱激发海砂再生骨料混凝土的制备及其拉伸强度的确定[J]. 材料导报, 2021, 35(S2):176-182. YANG S T, LI L Z, YU M. Production and tensile strength determination of alkali activated sea sand recycled aggregate concrete[J]. Materials Review, 2021, 35(S2):176-182.

    Google Scholar

    YANG S T, LI L Z, YU M. Production and tensile strength determination of alkali activated sea sand recycled aggregate concrete[J]. Materials Review, 2021, 35(S2): 176-182.

    Google Scholar

    [12] 刘春阳, 高英棋, 顾一凡, 等. 钢纤维大粒径再生粗骨料混凝土梁受弯性能试验研究[J]. 建筑结构, 2021, 51(21):68-72+89. LIU C Y, GAO Y Q, GU Y F, et al. Experimental study on the flexural behavior of concrete beams with large particle size recycled coarse aggregate and steel fiber[J]. Building Structure, 2021, 51(21):68-72+89.

    Google Scholar

    LIU C Y, GAO Y Q, GU Y F, et al. Experimental study on the flexural behavior of concrete beams with large particle size recycled coarse aggregate and steel fiber [J]. Building Structure, 2021, 51(21): 68-72+89.

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Figures(10)

Tables(5)

Article Metrics

Article views(490) PDF downloads(101) Cited by(0)

Access History

Other Articles By Authors

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint