Study on Soil Pollution Control and Land Ecological Restoration Technology

Authors

  • Lin Ma

DOI:

https://doi.org/10.62051/ijnres.v3n2.06

Keywords:

Soil Pollution Control; Land Ecological Restoration; Physical-Chemical Repair; Bioremediation; Phytoremediation.

Abstract

This paper discusses the present situation and development trend of soil pollution control and land ecological restoration technology. Soil pollution mainly comes from industrial emissions, excessive use of pesticides and fertilizers and improper treatment of municipal garbage, which poses a threat to agriculture, human health and ecological balance. Treatment technologies include engineering remediation (such as soil replacement and water washing), physical-chemical remediation (such as solidification-stabilization, leaching, etc.), and biological remediation (using microorganisms, plants and animals). Land ecological restoration emphasizes integrity and sustainability, and adopts various methods such as plant and microbial restoration. In addition, prevention and control strategies and policy suggestions are put forward, including strengthening waste treatment standards, rational use of pesticides and fertilizers, and promoting waste classification. It is also suggested to establish a sound legal system for soil pollution prevention and control and raise public awareness of environmental protection.

References

[1] Wang, H., Pei, Z., Chen, G., & Xing, B. (2023). Mutual influence of copper and paraquat on their adsorption in soil. Pedosphere, 33(6), 857-864.

[2] Liu, H. J., Jian-Ling, X. U., Wen, M. A., Liang, M. A., Wang, H. X., & Pan, Q. B., et al. (2021). Assessment of pollution level and ecological risk of heavy metals in different succession stages of peat bog wetland soil. Chinese Journal of Analytical Chemistry, 49(5), 839-846.

[3] Huo, W., Zou, R., Wang, L., Guo, W., Zhang, D. , & Fan, H. (2018). Effect of different forms of n fertilizers on the hyperaccumulator solanum nigrum l. and maize in intercropping mode under cd stress. Rsc Advances, 8(70), 40210-40218.

[4] Zhou, W., Zhou, J., Feng, X., Wen, B., Zhou, A., & Liu, P., et al. (2023). Antimony isotope fractionation revealed from exafs during adsorption on fe (oxyhydr)oxides. Environmental Science And Technology, 57(25), 9353-9361.

[5] Liu, Y., Gao, T., Wang, X., Fu, J., Zuo, M., & Yang, Y., et al. (2022). Effects of heavy metals on bacterial community surrounding bijiashan mining area located in northwest china. Open life sciences, 17(1), 40-54.

[6] Lahmamsi, H., Ananou, S., Lahlali, R., & Tahiri, A. (2024). Lactic acid bacteria as an eco-friendly approach in plant production: current state and prospects. Folia Microbiologica, 69(3), 465-489.

[7] Tan, B., & Liu, Z. (2021). Cloud resources-based water and soil pollution control in mountainous areas and rural tourism landscape design. Arabian Journal of Geosciences, 14(15), 1-15.

[8] Maitra, S., Maity, D., & Kundu, P. A. N. P. S. (2020). Isolation and identification of a bacterial strain from soil for bioremediation of phenol for pollution control. Journal of the Indian Chemical Society, 97(4), 607-612.

[9] Sills, J., Zhou, Y., & Liu, Y. (2018). China's fight against soil pollution. Science, 362(6412), 298-298.

[10] Wang, Y., Gao, H., Xie, Z., Zhang, L., & Peng, C. (2020). Effects of different agronomic practices on the selective soil properties and nitrogen leaching of black soil in northeast china. Scientific Reports, 10(1), 14939.

[11] Hong, Z., Li, F., Borch, T., Shi, Q., & Fang, L. (2023). Incorporation of cu into goethite stimulates oxygen activation by surface-bound fe(ii) for enhanced as(iii) oxidative transformation. Environmental science & technology, 57(5), 2162-2174.

[12] Ren-Yong, S., Jiu-Yu, L. I., Ni, N. I., & Ren-Kou, X. U. (2019). Understanding the biochar's role in ameliorating soil acidity. Journal of Integrative Agriculture, 18(007), 1508-1517.

[13] Chen, S., Liang, Z., Webster, R., Zhang, G. , Zhou, Y., & Teng, H., et al. (2019). A high-resolution map of soil ph in china made by hybrid modelling of sparse soil data and environmental covariates and its implications for pollution. Science of The Total Environment, 665(10), 273-283.

Downloads

Published

30-08-2024

Issue

Section

Articles

How to Cite

Ma, L. (2024). Study on Soil Pollution Control and Land Ecological Restoration Technology. International Journal of Natural Resources and Environmental Studies, 3(2), 36-44. https://doi.org/10.62051/ijnres.v3n2.06