Effectiveness of Water Management in Producing Cadmium-Safe Rice in Soils of Different Contamination Levels and Physicochemical Properties
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Published:2021-04
Issue:4
Volume:232
Page:
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ISSN:0049-6979
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Container-title:Water, Air, & Soil Pollution
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language:en
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Short-container-title:Water Air Soil Pollut
Author:
Lu Weisheng,Li Dongqin,Liu Ying,Li Guijie,Zhao Yang,Zhang Qiuhua,Zeng Zulei,Li Huaxing,Chen Guikui
Funder
the National Natural Science Foundation of China the Science and Technology Program of Guangzhou Guangdong Basic and Applied Basic Research Foundation
Publisher
Springer Science and Business Media LLC
Subject
Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering
Reference47 articles.
1. Arao, T., Kawasaki, A., Baba, K., Mori, S., & Matsumoto, S. (2009). Effects of water management on cadmium and arsenic accumulation and dimethylarsinic acid concentrations in Japanese rice. Environmental Science & Technology, 43, 9361. 2. Cao, F., Cai, Y., Liu, L., Zhang, M., He, X., Zhang, G., & Wu, F. (2015). Differences in photosynthesis, yield and grain cadmium accumulation as affected by exogenous cadmium and glutathione in the two rice genotypes. Plant Growth Regulation, 75, 715. 3. Chen, H., Zhang, W., Yang, X., Wang, P., McGrath, S. P., & Zhao, F. J. (2018). Effective methods to reduce cadmium accumulation in rice grain. Chemosphere, 207, 699. 4. Cui, Y. J., Zhu, Y. G., Smith, F. A., & Smith, S. E. (2004). Cadmium uptake by different rice genotypes that produce white or dark gains. Journal of Environmental Sciences, 16, 962. 5. Daum, D., Bogdan, K., Schenk, M. K., Merkel, D. (2001). Influence of the field water management on accumulation of arsenic and cadmium in paddy rice, Plant nutrition. Springer, pp. 290-291.
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