代表性文章(近五年)
1. Ma Chuang, Liu Fuyong,Yang Jun*, et al. The newly absorbed atmospheric lead by wheat spike during filling stage is the primary reason for grain lead pollution. Science of The Total Environment. (SCI, IF=10.754). 2023. 10.1016/j.scitotenv.2023.161965.
2. Zeng Weibin, Wan Xiaoming, Yang Jun*, et al. An interpolation method incorporating the pollution diffusion characteristics for soil heavy metals-taking a coke plant as an example. Science of The Total Environment. (SCI, IF=10.754). 2023. 10.1016/j.scitotenv.2022.159698.
3. Zhao Chen, Du Meng, Yang Jun*, et al. Changes in arsenic accumulation and metabolic capacity after environmental management measures in mining area. Science of The Total Environment. (SCI, IF=10.754). 2023. 10.1016/j.scitotenv.2022.158652.
4. Yang Jun, Hu Ruqing, Zhao Chen, et al. Challenges and opportunities for improving the environmental quality of cadmium-contaminated soil in China. Journal of Hazardous Materials. (SCI, IF=14.224). 2023. 10.1016/j.jhazmat.2022.130560.
5. Zhao Chen, Yang Jun*, Shi Hhuading, et al. Transforming approach for assessing the performance and applicability of rice arsenic contamination forecasting models based on regression and probability methods. Journal of Hazardous Materials. (SCI, IF=14.224). 2022. 10.1016/j.jhazmat.2021.127375.
6. Ma Chuang, Xie Pan, Yang Jun*, et al. Evaluating the contributions of leaf organ to wheat grain cadmium at the filling stage. Science of The Total Environment. (SCI, IF=10.754). 2022. 10.1016/j.scitotenv.2022.155217.
7. Yan Yunxian, Yang Jun*, Wan Xiaoming, et al. Temporal and spatial differentiation characteristics of soil arsenic during the remediation process of Pteris vittata L. and Citrus reticulata Blanco intercropping. Science of the Total Environment. (SCI, IF=10.754). 2022. 10.1016/j.scitotenv.2021.152475.
8. Yang Jun, Yan Yunxian, Lu Nanjia, et al. The key nodes and main factors influencing accumulation of soil arsenic in Pteris vittata L. under field conditions. Science of the Total Environment. (SCI, IF=10.754). 2022. 10.1016/j.scitotenv.2021.150787.
9. Ma Chuang, Xie Pan, Yang Jun*, et al. Relative contribution of environmental medium and internal organs to lead accumulation of wheat grain. Science of The Total Environment. (SCI, IF=10.754). 2022. 10.1016/j.scitotenv.2021.151832.
10. Yang Jun, Chen Zhao, Yang Junxing, et al. Discriminative algorithm approach to forecast Cd threshold exceedance probability for rice grain based on soil characteristics. Environmental Pollution. (SCI, IF=9.988). 2020. 10.1016/j.envpol.2020.114211.
11. Yang Jun*, Wang Jingyun, Qiao Pengwei, et al. Identifying factors that influence soil heavy metals by using categorical regression analysis: A case study in Beijing, China. Frontiers of Environmental Science & Engineering. (SCI, IF=6.048). 2020. 10.1007/s11783-019-1216-2.
12. Guo Junmei, Yang Jun(并列第一), Yang Junxing, et al. Water-soluble chitosan enhances phytoremediation efficiency of cadmium by Hylotelephium spectabile in contaminated soils. Carbohydrate Polymers. (SCI, IF=10.723). 2020. 10.1016/j.carbpol.2020.116559.
13. Wan Xiaoming, Lei Mei, Yang Jun*, et al. Three-year field experiment on the risk reduction, environmental merit, and cost assessment of four in situ remediation technologies for metal(loid)-contaminated agricultural soil. Environmental Pollution. (SCI, IF=9.988). 2020. 10.1016/j.envpol.2020.115193.
14. Zhao Chen, Yang Jun*, Zheng Yuanming, et al. Effects of environmental governance in mining areas: The trend of arsenic concentration in the environmental media of a typical mining area in 25 years. Chemosphere. (SCI, IF=8.943). 2019, 235: 849-857.
15. Yang Jun, Guo Yue, Yan Yunxian, et al. Phytoaccumulation of As by Pteris vittata supplied with phosphorus fertilizers under different soil moisture regimes - A field case. Ecological Engineering. (SCI, IF=4.379). 2019, 138: 274-280.
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更新日期:2023年5月22日