A Comprehensive Review on Lead-Zinc Tailings as An Alternate Material in Concrete

Open Access

Year : 2024 | Volume : 12 | Special Issue 05 | Page : 227 230
    By

    Kanakaraju Dandaboina,

  • Joshi Sreenivasa Prasad,

  1. MTech Student, Department of Civil Engineering, Anurag University, Venkatapur, Ghatkesar, Medchal District, Hyderabad, Telangana, India
  2. Ph.D, Department of Civil Engineering, Anurag University, Venkatapur, Ghatkesar, Medchal District, Hyderabad, Telangana, India

Abstract

Lead-Zinc Tailings are high volume wastages that are dumped in the open area of mine after extraction of minerals from ore. Tailings have high content of heavy metals that creates lot of environmental problems like air, water, land and also marine drainage along with it creates risk to human life, so tailings required better and safe management to overcome these problems. Now, this review begins with the utilization of Lead and Zinc Tailings as an alternate material in the concrete production by replacing Cement and Fine aggregate. The previous studies shows that tailings have been used as an alternate material for cement and sand, the compressive strength of the material with Lead and Zinc is increased while increasing curing days and the workability of material is reduced. So, the compressive strength of material is reduced when we are increasing the tailing content in the concrete. Finally, the results show that, the tailings-based concrete have better result to overcome environmental problems and also introduction of new materials in the construction industry. This review gives an overview about Lead-Zinc tailings and comprehensive understanding of utilization of tailings as an alternate material in the preparation of concrete. There is a possibility to conduct more research on behavior and properties of Lead-Zinc tailing based concrete that is durability properties, microstructural properties, thermal properties, mechanical properties, and also leaching properties of the concrete. So, by utilizing Lead-Zinc Tailings as a replacement material we can introduce more new materials in the construction field and also reduces the environmental problems.

Keywords: Tailings, Compressive Strength, Workability, Durability, Micro Structural Analysis.

[This article belongs to Special Issue under section in Journal of Polymer and Composites (jopc)]

How to cite this article:
Kanakaraju Dandaboina, Joshi Sreenivasa Prasad. A Comprehensive Review on Lead-Zinc Tailings as An Alternate Material in Concrete. Journal of Polymer and Composites. 2024; 12(05):227-230.
How to cite this URL:
Kanakaraju Dandaboina, Joshi Sreenivasa Prasad. A Comprehensive Review on Lead-Zinc Tailings as An Alternate Material in Concrete. Journal of Polymer and Composites. 2024; 12(05):227-230. Available from: https://journals.stmjournals.com/jopc/article=2024/view=185645


References

1.       Qing Liu, Yuan Li, Guodong Zhao 2019 The Latest Research Progress of Green Building Materials in Lead and Zinc Tailings IOP Conf. Series: Earth and Environmental Science 267 (2019) 052024 doi:10.1088/1755-1315/267/5/052024 2.       Mifeng Gou, Longfei Zhou, and Nathalene Wei Ying Then 2019 Utilization of tailings in cement and concrete: A review https://doi.org/10.1515/secm-2019-0029 3.       Alieh Saedi, Ahmad Jamshidi-Zanjani, Ahmad Khodadadi Darban, Mehdi Mohseni, Hamidreza Nejati 2022 Utilization of lead–zinc mine tailings as cement substitutes in concrete construction: Effect of sulfide content https://doi.org/10.1016/j.jobe.2022.104865 4.       Xiang He, Zuhua Yuhua, Shaker Qaidi, Haytham F. Isleem, Osama Zaid, Fadi Althoey, Jawad Ahmad 2022 Mine tailings-based geopolymers: A comprehensive review https://doi.org/10.1016/j.ceramint.2022.05.345 5.       Ziyi Yin, Rui Li, Hang Lin, Yifan Chen, Yixian Wang and Yanlin Zhao 2022 Analysis of Influencing Factors of Cementitious Material Properties of Lead–Zinc Tailings Based on Orthogonal Tests https://doi.org/10.3390/ma16010361 6.       Haojie Wang, Chenxuan Ju, Min Zhou, Jiaao Chen, Yiqie Dong, Haobo Hou 2022 Sustainable and efficient stabilization/solidification of Pb, Cr, and Cd in lead-zinc tailings by using highly reactive pozzolanic solid waste https://doi.org/10.1016/j.jenvman.2022.114473 7.       Zhongtao Luo, Changbo, Yuandong, Xiaohai Liu 2022 Recycle of lead-zinc tailings in blended cement: mechanical property and stabilization/solidification of heavy metals https://doi.org/10.21203/rs.3.rs-1571072/v1 8.       Rui Li, Ziyi Yin and Hang Lin 2023 Research Status and Prospects for the Utilization of Lead–Zinc Tailings as Building Materials https://doi.org/10.3390/buildings13010150 9.       Alieh Saedi, Ahmad Jamshidi-Zanjani, Mehdi Mohseni, Ahmad Khodadadi Darban, Hamidreza Nejati 2023 Mechanical activation of lead–zinc mine tailings as a substitution for cement in concrete construction https://doi.org/10.1016/j.conbuildmat.2022.129973 10.   Mifeng Gou, Longfei Zhou, and Nathalene Wei Ying Then 2019 Utilization of tailings in cement and concrete: A review https://doi.org/10.1515/secm-2019-0029


Special Issue Open Access Review Article
Volume 12
Special Issue 05
Received 23/04/2024
Accepted 13/07/2024
Published 26/07/2024


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