农业水土环境研究方向:
[1]谭霄*,张钰婷,蔡孟哲,梅雨婷,李龙国.盐渍化灌区秋浇冻土入渗过程机制及深度学习模拟[J].农业工程学报,2025.(EI)
[2]Guo, G.#, Wang, Z.#,Tan, X.*, Guo, J., Yu, J., Chen, A., Xu, Y., He, Y., 2025. Improving the SHAW model’s performance in seasonally freeze-thaw irrigation districts by integrating the capillary bundle model. Geoderma 464, 117637.//doi.org/10.1016/j.geoderma.2025.117637(中科院1区TOP)
[3]Guo, G.,Tan, X.*, He, Y., Guo, J., Yu, J., Zhuang, W., Liu, C., 2025. Transport of heat, water, and salts in freeze–thaw soils under flood irrigation: Experiment and simulation. Journal of Hydrology 652, 132688. //doi.org/10.1016/j.jhydrol.2025.132688(中科院1区TOP)
[4]Yang, Z.,Tan, X.*, Chen, A., Xu, Y., Zhang, Y., Zhuang, W., 2025. The Effect of Autumn Irrigation on the Water, Heat, and Salt Transport in Seasonally Frozen Soils Under Varying Groundwater Levels. Water 17. //doi.org/10.3390/w17071049(中科院4区)
[5]Tan, X., Gao, J., Li, L., Yu, J.*, 2023. Effects of Silicon Application on Nitrogen Migration in Soil–Rice Systems under Cadmium Stress. Sustainability 15.//doi.org/10.3390/su152416552(中科院3区)
[6]Tan, B.,Tan, X.*, Liu, C., Zeng, Y., Li, Y., 2022. Effects of lead stress on rice (Oryza sativa L.) growth and metabolism in the rhizosphere microenvironment: the role of eicosanoid compounds. Plant Growth Regulation 96, 483–495.//doi.org/10.1007/s10725-022-00802-3(中科院3区)
[7]Tan, X., Wu, J.*, Wu, M., Huang, J., Tan, B., Li, L.*, 2021. Effects of ice cover on soil water, heat, and solute movement: An experimental study. Geoderma 403, 115209. //doi.org/10.1016/j.geoderma.2021.115209(中科院1区TOP)
[8]Zhao, Q.#,Tan, X.#, Zeng, Q., Zhao, H., Wu, J.*, Huang, J.*, 2021. Combined effects of temperature and precipitation on the spring runoff generation process in a seasonal freezing agricultural watershed. Environmental Earth Sciences 80, 490.//doi.org/10.1007/s12665-021-09777-2(中科院4区)
[9]Tan, X.#, Wu, M.#*, Huang, J., Wu, J., Chen, J., 2020. Similarity of soil freezing characteristic and soil water characteristic: Application in saline frozen soil hydraulic properties prediction. Cold Regions Science and Technology 173, 102876. //doi.org/10.1016/j.coldregions.2019.102876(中科院3区)
[10]Wu, M.#,Tan, X.#*, Wu, J., Huang, J., Jansson, P.-E., Zhang, W., 2020. Coupled water transport and heat flux in seasonally frozen soils: uncertainties identification in multi-site calibration. Environmental Earth Sciences 79, 524. //doi.org/10.1007/s12665-020-09262-2(中科院4区)
[11]Tan, X., Wu, J.*, Huang, J., Wu, M., Zeng, W., 2018. Design of a new TDR probe to measure water content and electrical conductivity in highly saline soils. Journal of Soils and Sediments 18, 1087–1099. //doi.org/10.1007/s11368-017-1838-6(中科院3区)
[12]高晶晶,李龙国,谭霄*.施硅对含镉土壤中铵态氮等温吸附的影响[J].中国农村水利水电,2022,(3):134-139.
[13]谭霄,伍靖伟,李大成,黄介生.盐分对土壤水分特征曲线的影响[J].灌溉排水学报,2014, 33(4/5):228-232.
[14]谭霄,伍靖伟,吴谋松,黄介生.盐分对改进TDR测量土壤水分的影响及模型标定[J].灌溉排水学报,2014, 33(4/5):352-355.
[15]谭霄,谭博,刘超,庄文化,李龙国,李乃稳,贺宇欣.一种新型原状土柱取样装置及其使用方法[P]. 2021.已授权,发明专利号: ZL201910879245.9.(发明专利)
[16]谭霄,刘超,黄介生,伍靖伟,李乃稳,庄文化,谭博.一种基于冻融作用的灌区土壤盐渍化防治方法[P]. 2021.已授权,发明专利号:ZL201910569659.1.(发明专利)
[17]谭霄,伍靖伟,谭博. SWAIS (Soil-Water-Air-Ice System)模型软件V1.0[Z]. 2020.软件著作权登记号: 2020SR1891661.(软著)
农业生态可持续发展研究方向:
[18]Tan, X., Wang, Z., Li, S., Tan, B., Zhuang, W., Liu, C., He, Y.*, 2025. Light-induced soil legacy alleviates continuous cropping adversity on Nicotiana benthamianagrowth. Plant and Soil. //doi.org/10.1007/s11104-025-07954-x(中科院2区)
[19]Liu, Z., Xia, Q., Cai, J., Wang, Z., Yang, K., Chen, D., Wei, J., Chen, C., Liu, C., Chang, W., Li, Z., Li, X., Yang, Y., Yang, L.*,Tan, X.*, 2024. Nitrogen Fertilizers Affect Microbial Hitchhiking to the Plant Roots. J. Agric. Food Chem. //doi.org/10.1021/acs.jafc.3c07623(中科院1区TOP)
[20]Tan, J., Liu, F., Xu, T.,Tan, X.*, 2022. Exploration of water–nitrogen coupling effects in paddy field based on ORYZA (v3) model. Journal of the Science of Food and Agriculture 102, 396–406.//doi.org/10.1002/jsfa.11369(中科院2区)
[21]Li, S., Liu, C.,Tan, X.*, Tan, B., He, Y., Li, N., 2020. Interactive Effects of Light and Nitrogen on Pakchoi (Brassica chinensis L.) Growth and Soil Enzyme Activity in an Underground Environment. Agronomy 10. //doi.org/10.3390/agronomy10111772(中科院3区)