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ARS Home » Pacific West Area » Davis, California » Sustainable Agricultural Water Systems Research » Research » Research Project #438377

Research Project: A Systems Approach to Improved Water Management for Sustainable Production

Location: Sustainable Agricultural Water Systems Research

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)

Perceptions on the genetic biocontrol of invasive carp Reprint Icon - (Peer Reviewed Journal)
Smanski, M., Erickson, S.E., Lhewa, P., Rundquist, K., Schultz, S., Levers, L.R. 2023. Perceptions on the genetic biocontrol of invasive carp. Biological Control. 2023.07.27.550879. https://doi.org/10.1101/2023.07.27.550879.

Aging of colloidal contaminants and pathogens in the soil environment: Implications for nanoplastic and COVID-19 risk mitigation Reprint Icon - (Peer Reviewed Journal)
Wang, L., Hu, Z., Yin, H., Bradford, S.A., Luo, J., Hou, D. 2022. Aging of colloidal contaminants and pathogens in the soil environment: Implications for nanoplastic and COVID-19 risk mitigation. Soil Use and Management. 39(1):70-91. https://doi.org/10.1111/sum.12849.

Prediction of colloid sticking efficiency at pore-scale and macroscale using a pore network model Reprint Icon - (Peer Reviewed Journal)
Lin, D., Zhang, X., Hu, L., Bradford, S.A., Shen, C. 2022. Prediction of colloid sticking efficiency at pore-scale and macroscale using a pore network model. Journal of Hydrology. 612(C). Article 128253. https://doi.org/10.1016/j.jhydrol.2022.128253.

Micro- and nanoplastics retention in porous media exhibits different dependence on grain surface roughness and clay coating with particle size Reprint Icon - (Peer Reviewed Journal)
Liang, Y., Luo, Y., Shen, C., Bradford, S.A. 2022. Micro- and nanoplastics retention in porous media exhibits different dependence on grain surface roughness and clay coating with particle size. Water Research. 221. Article 118717. https://doi.org/10.1016/j.watres.2022.118717.

Application of the vineyard data assimilation (VIDA) system to vineyard root-zone soil moisture monitoring in the California Central Valley Reprint Icon - (Peer Reviewed Journal)
Chen, F., Lei, F., Knipper, K.R., Gao, F.N., McKee, L.G., Alsina, M., Alfieri, J.G., Anderson, M.C., Bambach, N., Castro, S.J., McElrone, A.J., Alstad, K., Dokoozlian, N., Greifender, F., Kustas, W.P., Notarnicola, C., Agam, N., Prueger, J.H., Hipps, L., Crow, W.T. 2022. Application of the vineyard data assimilation (VIDA) system to vineyard root-zone soil moisture monitoring in the California Central Valley. Irrigation Science. https://doi.org/10.1007/s00271-022-00789-9.

Prediction of collector contact efficiency for colloid transport in porous media using Pore-Network and Neural-Network models Reprint Icon - (Peer Reviewed Journal)
Lin, D., Hu, L., Bradford, S.A., Zhang, X., Lo, I.M. 2022. Prediction of collector contact efficiency for colloid transport in porous media using Pore-Network and Neural-Network models. Separation and Purification Technology. 290. Article 120846. https://doi.org/10.1016/j.seppur.2022.120846.

Environmental applications and risks of nanomaterials: An introduction to CREST publications during 2018–2021 Reprint Icon - (Review Article)
Bradford, S.A., Shen, C., Kim, H., Letcher, R.J., Rinklebe, J., Ok, Y., Ma, L. 2021. Environmental applications and risks of nanomaterials: An introduction to CREST publications during 2018–2021. Critical Reviews in Environmental Science Technology. https://doi.org/10.1080/10643389.2021.2020425.

Novel analytical expressions for determining van der Waals interaction between a particle and air-water interface: Unexpected stronger van der Waals force than capillary force Reprint Icon - (Peer Reviewed Journal)
Du, Y., Bradford, S.A., Shen, C., Li, T., Bi, X., Liu, D., Huang, Y. 2021. Novel analytical expressions for determining van der Waals interaction between a particle and air-water interface: Unexpected stronger van der Waals force than capillary force. Journal of Colloid and Interface Science. 610:982-993. https://doi.org/10.1016/j.jcis.2021.11.157.

Pore-network modeling of colloid transport and retention considering surface deposition, hydrodynamic bridging, and straining Reprint Icon - (Peer Reviewed Journal)
Lin, D., Hu, L., Bradford, S.A., Zhang, X., Lo, I.M. 2021. Pore-network modeling of colloid transport and retention considering surface deposition, hydrodynamic bridging, and straining. Journal of Hydrology. 603 Part B. Article 127020. https://doi.org/10.1016/j.jhydrol.2021.127020.

Perennial crop dynamics may affect long-run groundwater levels Reprint Icon - (Peer Reviewed Journal)
Franklin, B., Schwabe, K., Levers, L.R. 2021. Perennial crop dynamics may affect long-run groundwater levels. Land. 10(9): 971. https://doi.org/10.3390/land10090971.

Virus transport from drywells under constant head conditions: a modeling study Reprint Icon - (Peer Reviewed Journal)
Sasidharan, S., Bradford, S.A., Simunek, J., Gerba, C.P., Kraemer, S.R. 2021. Virus transport from drywells under constant head conditions: a modeling study. Water Research. 197. Article 117040. https://doi.org/10.1016/j.watres.2021.117040.

Transdisciplinary contributions and opportunities in soil physical hydrology Reprint Icon - (Peer Reviewed Journal)
Wendroth, O., Bradford, S.A., Harter, T. 2021. Transdisciplinary contributions and opportunities in soil physical hydrology. Vadose Zone Journal. 20(2). Article e20114. https://doi.org/10.1002/vzj2.20114.

Why are viruses spiked? Reprint Icon - (Peer Reviewed Journal)
Shen, C., Bradford, S.A. 2021. Why are viruses spiked? mSphere. 6(1). Article e01339-20. https://doi.org/10.1128/mSphere.01339-20.

Evidence on enhanced transport and release of silver nanoparticles by colloids in soil due to modification of grain surface morphology and co-transport Reprint Icon - (Peer Reviewed Journal)
Liang, Y., Luo, Y., Lu, Z., Klumpp, E., Shen, C., Bradford, S.A. 2021. Evidence on enhanced transport and release of silver nanoparticles by colloids in soil due to modification of grain surface morphology and co-transport. Environmental Pollution. 276. Article 116661. https://doi.org/10.1016/j.envpol.2021.116661.

Simulation of colloid transport and retention using a pore-network model with roughness and chemical heterogeneity on pore surfaces Reprint Icon - (Peer Reviewed Journal)
Lin, D., Hu, L., Bradford, S.A., Zhang, X., Lo, I.M. 2021. Simulation of colloid transport and retention using a pore-network model with roughness and chemical heterogeneity on pore surfaces. Water Resources Research. 57(2). Article e2020WR028571. https://doi.org/10.1029/2020WR028571.

Non-monotonic contribution of nonionic surfactant on the retention of functionalized multi-walled carbon nanotubes in porous media Reprint Icon - (Peer Reviewed Journal)
Zhang, M., Bradford, S.A., Klumpp, E., Šimunek, J., Jin, C., Qiu, R. 2020. Non-monotonic contribution of nonionic surfactant on the retention of functionalized multi-walled carbon nanotubes in porous media. Journal of Hazardous Materials. 407. Article 124874. https://doi.org/10.1016/j.jhazmat.2020.124874.

Comparison of simulated recharge from drywells and infiltration basins: a modeling study Reprint Icon - (Peer Reviewed Journal)
Sasidharan, S., Bradford, S.A., Simunek, J., Kraemer, S.R. 2020. Comparison of simulated recharge from drywells and infiltration basins: a modeling study. Journal of Hydrology. 594. Article 125720. https://doi.org/10.1016/j.jhydrol.2020.125720.