Dr. Fengxian Chen

Profil

Derzeitige StellungPost Doc
FachgebietBodenwissenschaften
KeywordsHerbicide Transport, Soil and Runoff Simulation, Integrated modeling, Machine Learning, Environmental Risk Assessment

Aktuelle Kontaktadresse

LandDeutschland
OrtJülich
Universität/InstitutionForschungszentrum Jülich GmbH
Institut/AbteilungInstitut für Bio- und Geowissenschaften, Pflanze-Boden-Atmosphäre Austauschprozesse (IBG-3)

Gastgeber*innen während der Förderung

Prof. Dr. Jan VanderborghtInstitut für Bio- und Geowissenschaften, Pflanze-Boden-Atmosphäre Austauschprozesse (IBG-3), Forschungszentrum Jülich GmbH, Jülich
Beginn der ersten Förderung01.10.2025

Programm(e)

2025Humboldt-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

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