Dr. Fengxian Chen

Profile

Academic positionPost Doc
Research fieldsSoil Sciences
KeywordsHerbicide Transport, Soil and Runoff Simulation, Integrated modeling, Machine Learning, Environmental Risk Assessment

Current contact address

CountryGermany
CityJülich
InstitutionForschungszentrum Jülich GmbH
InstituteInstitut für Bio- und Geowissenschaften, Pflanze-Boden-Atmosphäre Austauschprozesse (IBG-3)

Host during sponsorship

Prof. Dr. Jan VanderborghtInstitut für Bio- und Geowissenschaften, Pflanze-Boden-Atmosphäre Austauschprozesse (IBG-3), Forschungszentrum Jülich GmbH, Jülich
Start of initial sponsorship01/10/2025

Programme(s)

2025Humboldt Research Fellowship Programme for Postdocs

Publications (partial selection)

2025Chen, Fengxian and Zhou, Bin and Zhang, Yexiang and Chen, Xijuan: Stricter cadmium and lead standards needed for organic fertilizers in China. In: Science of The Total Environment, 980, 2025, 179561
2025Chen, Xijuan and Wang, Ruiqi and Chen, Fengxian and Styszko, Katarzyna: Transport and removal of viruses in soil: Evaluating low-cost filtering materials for groundwater protection. In: Journal of Hazardous Materials, 496, 2025, 139538
2024Chen, Jing and Yang, Liqiong and Chen, Fengxian and Zhuang, Jie: A chemotaxis-haptotaxis coupled mechanism reducing bacterial mobility in disturbed and intact soils. In: Soil and Tillage Research, 242, 2024, 106168
2024Chen, Fengxian and Zhou, Bin and Yang, Liqiong and Zhuang, Jie and Chen, Xijuan: Annual atrazine residue estimation in Chinese agricultural soils by integrated modeling of machine learning and mechanism-based models. In: Journal of Hazardous Materials, 472, 2024, 134539
2024Chen, Fengxian and Zhou, Bin and Yang, Liqiong and Zhuang, Jie and Chen, Xijuan: Assessing the risk of E. coli contamination from manure application in Chinese farmland by integrating machine learning and Phydrus. In: Environmental Pollution, 356, 2024, 124345
2024Zhao, Mingyang and Yang, Liqiong and Chen, Fengxian and Zhuang, Jie: Bacterial transport mediated by micro-nanobubbles in porous media. In: Water Research, 258, 2024, 121771
2024Chen, Fengxian and Yang, Liqiong and Chen, Xijuan and Zhuang, Jie: Estimating bacterial breakthrough behaviors based on bacterial retention profiles in porous media. In: Soil Science Society of America Journal, 88, 2024, 1479–1487
2024Miao, Chunping and Peng, Zhong-Ren and Cui, Aiwei and He, Xingyuan and Chen, Fengxian and Lu, Kaifa and Jia, Guangliang and Yu, Shuai and Chen, Wei: Quantifying and predicting air quality on different road types in urban environments using mobile monitoring and automated machine learning. In: Atmospheric Pollution Research, 15, 2024, 102015
2024Chen, Fengxian and Ronen, Zeev and Arye, Gilboa: Spatial distribution of Azospirillum brasilense in 2D flow cell: Effect of irrigation and inoculation regimes. In: European Journal of Soil Science, 75, 2024,
2024Chen, Fengxian and Ronen, Zeev and Arye, Gilboa: Transport of plant growth promoting bacteria (Azospirillum brasilense) in sand under transient water flow: effect of inoculation regime. In: Biology and Fertility of Soils, 60, 2024, 883–899
2023Chen, Fengxian and Zhou, Bin and Yang, Liqiong and Chen, Xijuan and Zhuang, Jie: Predicting bacterial transport through saturated porous media using an automated machine learning model. In: Frontiers in Microbiology, 14, 2023,
2022Li, Zheng and Rosenzweig, Ravid and Chen, Fengxian and Qin, Ji and Li, Tianyi and Han, Jincheng and Istvan, Paula and Diaz-Reck, Damiana and Gelman, Faina and Arye, Gilboa and Ronen, Zeev: Bioremediation of Petroleum-Contaminated Soils with Biosurfactant-Producing Degraders Isolated from the Native Desert Soils. In: Microorganisms, 10, 2022, 2267
2022Zhang, Xiaoming and Chen, Fengxian and Yang, Liqiong and Qin, Fucang and Zhuang, Jie: Quantifying bacterial concentration in water and sand media during flow-through experiments using a non-invasive, real-time, and efficient method. In: Frontiers in Microbiology, 13, 2022,
2017Chen, Fengxian and Arye, Gilboa: The role of lipids and polysaccharides in model root mucilage with implications for the surface activity of the rhizosphere. In: Biologia, 72, 2017, 1285–1290