Research And Impact of Bioremediation on Soil Cadmium

Authors

  • Mingting Xu

DOI:

https://doi.org/10.54097/qsejf454

Keywords:

Cadmium pollution; bioremediation; phytoremediation technolog.

Abstract

There are many studies on the interaction between Cd pollution and bioremediation at home and abroad, mainly local and short-term toxicological effects, and there is a lack of systematic reviews. The purpose of this report is to provide a summary of the research on several bioremediation methods through specific experiments and mechanisms. and a summary and report on the principles and mechanisms of phytoremediation technology and animal remediation technology. In the future, bioremediation technology should focus on further exploration in the treatment cycle and final treatment of materials, avoid secondary pollution, strengthen the prevention and control of soil cadmium pollution, master more scientific soil cadmium pollution prevention and control technology, and expand more experiments and research on bioremediation If necessary, researchers can comprehensively apply and match a variety of different control technologies to enhance the control effect of soil cadmium pollution. It is also hoped that more attention will be paid to some potential future research on remediation methods for soil cadmium pollution, and that bioremediation is not only for the further exploration and discovery of cadmium and other heavy metal pollution in soil.

Downloads

Download data is not yet available.

References

Liu Xiao. Application of microbial technology in the remediation of heavy metal contaminated soil Research. Modern Agricultural Research, 2022, 28(6): 25-27.

Chen Suhua, Sun Tieyan, Zhou Qixing, Wu Guoping. Interaction between microorganisms and heavy metals and their applications . Chinese Journal of Applied Ecology, 2002, (2): 239-242.

Langley, S. and Beveridge, TJ Effect of O-Side-Chain-Lipopolysaccha-Ride Chemistry on Metal Binding. Applied and Environmental Microbiology, (1999), 65, 489-498.

Chen Ming, Zhao Yonghong. Experimental Study on Adsorption of Heavy Metal Ions by Microorganisms. Southern Metallurgical Institute, 2001, (3): 168-173 + 184.

Lu Jinjing, Gao Chunhua, Wu Xueping, et al. Research Progress of Combined Plant-Microbial Remediation Technology in Cd Contaminated Soil. Shanxi Agricultural Sciences, 2019, 47(6): 1115-1120.

Zhang Qian, Zhao Xiufang, Gao Huanhuan, et al. Research Progress on Remediation of Soil Heavy Metal Pollution by Plants Combined with Nitrogen-fixing Bacteria. Resources and Environmental Science, Modern Agricultural Science and Technology, 2019, (8 ): 180-183.

Jing Luhuai, Chen Xiaoming, et al, Microbial degradation of ryegrass in remediation of heavy metal contaminated soil, wastewater and enriched plants. Chinese Journal of Environmental Engineering, 2019, 13(6): 1449-1456.

Luo Qiaoyu, Wang Xiaojuan, Lin Shuangshuang, et al, Application and mechanism of AM fungus on bioremediation of heavy metal contaminated soil. Acta Ecologica Sinica, 2013, 33(13): 3898-3899.

Wu Yun, Yang Haiyan, Zhu Jianwen, Wang Zulin. Study on Adsorption of Cu2+ by Immobilized Brewer's Yeast Waste Bacteria. Journal of Xinjiang Agricultural University, 2007, 30(4): 102-105.

Gao Ruiying, Chen Can, Wang Jianlong. Kinetics of adsorption of Zn2+ and Cd2+ by Saccharomyces cerevisiae. Journal of Tsinghua University (Natural Science Edition), 2007, 47(6): 897-900.

Zhang Xiaoying, Chen Su, Liu Ying, et al. Research progress on biochar aging and its effects on heavy metal adsorption and fixation. Journal of Agricultural Resources and Environment, 2023, 40(4): 852-863 .

Dong Jing, Dai Qunwei, Zhao Yulian, et al. Purification of sulfate-reducing bacteria and their passivation of CD2+. Environmental Science and Technology, 2019, 42(5): 34-40.

Peng Shuchuan, Yu Yanyun, Wan Zhengqiang, et al. Interaction of Sulfate-reducing Bacteria Extracellular Polymers (EPS) in the Removal of Heavy Metal Ions Cd~(2+). Journal of Nanjing University (Natural Science Edition), 2013, 49(6): 61-67.

Zhao Y, Yao J, Yuan ZM, et al. Bioremediation of Cd by strain GZ-22 isolated from mine soil based on biosorption and microbially induced carbonate precipitation. Environmental Science and Pollution Research, 2017, 24(1 ):372-380.

Bhattacharya A, Naik SN, Khare S K. Harnessing the bio-mineralization ability of urease producing Serratia marcescens and Enterobacter cloacae EMB19 for remediation of heavy metal cadmium (II). Journal of Environmental Management, 2018, 215: 143-152.

Li Zhe, Wu Di, Zhang Xiufang, et al. Fixation of Cd by a strain of Xylose-Xylobacterium oxide. Journal of Northwest A&F University (Natural Science Edition), 2018, 46(9):97- 104.

Hrynkiewicz K, Złoch M, Kowalkowski T, et al. Strain-specific bioaccumulation and intracellular distribution of Cd2+ in bacteria isolated from the rhizosphere, ectomycorrhizae, and fruitbodies of ectomycorrhizal fungi. Environmental Science and Pollution Research, 2015, 22(4):3055-3067.

Zhao Yuhan. Screening of iron-manganese oxidizing bacteria in paddy soil and adsorption effect of their products on cadmium. Yangzhou University, 2021.

Wei T, Liu X, Dong MF, et al. Rhizosphere iron and manganese-oxidizing bacteria stimulate root iron plaque formation and regulate Cd uptake of rice plants (Oryza sativa L.) - ScienceDirect. Journal of Environmental Management, 2021, 278.

Downloads

Published

05-05-2024

How to Cite

Xu, M. (2024). Research And Impact of Bioremediation on Soil Cadmium. Highlights in Science, Engineering and Technology, 96, 107-115. https://doi.org/10.54097/qsejf454