58
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Chemical Structural Features Affecting the Soil Sorption of Sulfonylurea Herbicides

&

References

  • Ahangar, A. G. 2010. Sorption of PAHs in the soil environment with emphasis on the role of soil organic matter: A review. World Applied Sciences Journal 11:759–67.
  • Ambure, P., R. B. Aher, A. Gajewicz, T. Puzyn, and K. Roy. 2015. NanoBRIDGES” software: Open access tools to perform QSAR and nano-QSAR modeling. Chemometrics and Intelligent Laboratory Systems 147:1–13. doi:10.1016/j.chemolab.2015.07.007.
  • Bao-Lei, W., M. Ning, W. Jian-Guo, M. Yi, L. Zheng-Ming, and L. Yong-Hong. 2004. 3D-QSAR analysis of new sulfonylureas related to their herbicidal activity. Acta Physico-chimica Sinica 20 (06):577–81. doi:10.3866/PKU.WHXB20040605.
  • Barigye, S. J., M. H. Duarte, C. A. Nunes, and M. P. Freitas. 2016. MIA-plot: A graphical tool for viewing descriptor contributions in MIA-QSAR. RSC Advances 6 (55):49604–12. doi:10.1039/C6RA09593C.
  • Barigye, S. J., and M. P. Freitas. 2016. Ten Years of the MIA-QSAR strategy: Historical development and applications. International Journal of Quantitative Structure-Property Relationships 1 (1):64–77. doi:10.4018/IJQSPR.2016010103.
  • Bhardwaj, L. K. 2022. Evaluation of bis (2-ethylhexyl) phthalate (DEHP) in the PET bottled mineral water of different brands and impact of heat by GC–MS/MS. Chemistry Africa 5 (4):929–42. doi:10.1007/s42250-022-00385-6.
  • Bhardwaj, L., A. Chauhan, A. Ranjan, and T. Jindal. 2018. Persistent organic pollutants in biotic and abiotic components of Antarctic pristine environment. Earth Systems and Environment 2 (1):35–54. doi:10.1007/s41748-017-0032-8.
  • Bhardwaj, L., and T. Jindal. 2020. Persistent organic pollutants in lakes of grovnes peninsula at larsemann hill area, east antarctica. Earth Systems and Environment 4 (2):349–58. doi:10.1007/s41748-020-00154-w.
  • Bhardwaj, L., and T. Jindal. 2022. Polar ecotoxicology: Sources and toxic effects of pollutants. In New frontiers in environmental Toxicology, T. Jindal. ed., 9–14. Cham: Springer. doi:10.1007/978-3-030-72173-2_2.
  • Bhardwaj, L. K., and A. Sharma. 2021. Estimation of physico-chemical, trace metals, microbiological, and phthalate in PET bottled water. Chemistry Africa 5 (4):981–91. doi:10.1007/s42250-021-00267-3.
  • Bhardwaj, L. K., S. Sharma, and T. Jindal. 2023. Estimation of physicochemical and heavy metals in the lakes of grovnes & broknes peninsula, larsemann hill, East Antarctica. Chemistry Africa. in press. doi:10.1007/s42250-023-00668-6.
  • Bhardwaj, L., S. Sharma, and T. Jindal. 2021. Occurrence of polycyclic aromatic hydrocarbons (PAHs) in the lake water at grovnes peninsula over East Antarctica. Chemistry Africa 4 (4):965–80. doi:10.1007/s42250-021-00278-0.
  • Bhardwaj, L., S. Sharma, A. Ranjan, and T. Jindal. 2019. Persistent organic pollutants in lakes of broknes peninsula at larsemann hills area, East Antarctica. Ecotoxicology 28 (5):589–96. doi:10.1007/s10646-019-02045-x.
  • Bourdineaud, J. P. 2022. Toxicity of the herbicides used on herbicide-tolerant crops, and societal consequences of their use in France. Drug and Chemical Toxicology 45 (2):698–721. doi:10.1080/01480545.2020.1770781.
  • Carter, L. J., J. L. Wilkinson, and A. B. A. Boxall. 2020. Evaluation of existing models to estimate sorption coefficients for ionizable pharmaceuticals in soils and sludge. Toxics 8 (1):13. doi:10.3390/toxics8010013.
  • de Faria, A. C., J. K. Daré, E. F. F. da Cunha, and M. P. Freitas. 2022. Computer-assisted improvement of sulfonylureas with antifungal properties and limited herbicidal activity: Potential application in forage conservation. Journal of Agricultural and Food Chemistry 70 (10):3321–30. doi:10.1021/acs.jafc.1c07352.
  • de Jong, S. 1993. SIMPLS: An alternative approach to partial least squares regression. Chemometrics and intelligent laboratory systems 18 (3):251–63. doi:10.1016/0169-7439(93)85002-X.
  • Dennington, R. D., T. A. Keith, and M. J. Millam. 2008. GaussView 5.0. Wallingford, CT: Semichem, Inc.
  • Farrés, M., S. Platikanov, S. Tsakovski, and R. Tauler. 2015. Comparison of the variable importance in projection (VIP) and of the selectivity ratio (SR) methods for variable selection and interpretation. Journal of Chemometrics 29 (10):528–36. doi:10.1002/cem.2736.
  • Freitas, M. R., S. J. Barigye, and M. P. Freitas. 2015. Coloured chemical image-based models for the prediction of soil sorption of herbicides. RSC Advances 5 (10):7547–53. doi:10.1039/C4RA12070A.
  • Freitas, M. R., M. P. Freitas, and R. L. G. Macedo. 2014. Aug-MIA-QSPR modeling of the soil sorption of carboxylic acid herbicides. Bulletin of environmental Contamination and Toxicology 93 (4):489–92. doi:10.1007/s00128-014-1356-9.
  • Freitas, M. R., S. V. B. G. Matias, R. L. G. Macedo, M. P. Freitas, and N. Venturin. 2014. Three-parameter modeling of the soil sorption of acetanilide and triazine herbicide derivatives. Bulletin of Environmental Contamination and Toxicology 92 (2):143–47. doi:10.1007/s00128-013-1184-3.
  • Geladi, P., and B. R. Kowalski. 1986. Partial least squares regression: A tutorial. Analytica Chimica Acta 185:1–17. doi:10.1016/0003-2670(86)80028-9.
  • James, T. K., H. Ghanizadeh, K. C. Harrington, and N. S. Bolan. 2022. The leaching behavior of herbicides in cropping soils amended with forestry biowastes. Environmental Pollution 307:119466. doi:10.1016/j.envpol.2022.119466.
  • Jindal, T. 2021. New frontiers in environmental toxicology. Springer, Cham. doi:10.1007/978-3-030-72173-2.
  • Kamrin, M. 1997. Pesticide profiles-Toxicity, environmental impact, and fact. Boca Raton: CRC-Lewis Publishers.
  • Nunes, C. A., M. P. Freitas, A. C. M. Pinheiro, and S. C. Bastos. 2012. Chemoface: A novel free user-friendly interface for chemometrics. Journal of the Brazilian Chemical Society 23 (11):2003–10. doi:10.1590/S0103-50532012005000073.
  • Pannell, D. J., P. Tillie, E. Rodríguez-Cerezo, D. Ervin, and G. B. Frisvold. 2016. Herbicide resistance: Economic and environmental challenges. AgBioforum 19:141–55.
  • Paporisch, A., Y. Laor, B. Rubin, and H. Eizenberg. 2020. Effect of repeated application of sulfonylurea herbicides on sulfosulfuron dissipation rate in soil. Agronomy 10:1724. doi:10.3390/agronomy10111724.
  • Roy, K., and S. Paul. 2010. Docking and 3D-QSAR studies of acetohydroxy acid synthase inhibitor sulfonylurea derivatives. Journal of Molecular Modeling 16 (5):951–64. doi:10.1007/s00894-009-0596-9.
  • Sabljic, A., H. Güsten, H. Verhaar, and J. Hermens. 1995. QSAR modelling of soil sorption. Improvements and systematics of logKOC versus logKOW correlations. Chemosphere 31 (11–12):4489–514. doi:10.1016/0045-6535(95)00327-5.
  • Sadegh-Zadeh, F., S. A. Wahid, and B. Jalili. 2017. Sorption, degradation, and leaching of pesticides in soils amended with organic matter: A review. Advances in Environmental Technology 2:119–32. doi:10.22104/AET.2017.1740.1100.
  • Sarmah, A. K., and J. Sabadie. 2002. Hydrolysis of sulfonylurea herbicides in soils and aqueous solutions: A review. null 50 (22):6253–65. doi:10.1021/jf025575p.
  • Strawn, D. G. 2021. Sorption mechanisms of chemicals in soils. Soil Systems 5 (1):13. doi:10.3390/soilsystems5010013.
  • Thompson, A., and K. W. Goyne. 2012. Introduction to the sorption of chemical substituents in soils. Nature Education Knowledge 4:7.
  • Yang, G., H. Liu, and H. Yang. 1999. QSAR and 3D-QSAR analysis of structurally diverse ALS inhibitors: Sulfonylureas and triazolopyrimidine-2-sulfonamides. Pesticide Science 55:1143–50. doi:10.1002/(SICI)1096-9063(199912)55:12<1143:AID-PS28>3.0.CO;2-X.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.