Effects of Salinity on Herbicide Lactofen Residues in Soil
Author:
Publisher
Springer Science and Business Media LLC
Subject
Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering
Link
http://link.springer.com/article/10.1007/s11270-017-3665-1/fulltext.html
Reference26 articles.
1. Allbed, A., & Kumar, L. (2013). Soil salinity mapping and monitoring in arid and semi-arid regions using remote sensing technology: a review. Advances in Remote Sensing, 02(4), 373–385.
2. Bo, L., Zhao, Y. K., Peng, L., Li, S. P., & Xing, H. (2010). Biotransformation of the diphenyl ether herbicide lactofen and purification of a lactofen esterase from Brevundimonas sp. LY-2. Journal of Agricultural and Food Chemistry, 58(17), 9711–9715.
3. Cheng, J., Yuan, C., & Graham, T. L. (2011). Potential defense-related prenylated isoflavones in lactofen-induced soybean. Phytochemistry, 72(9), 875–881. https://doi.org/10.1016/j.phytochem.2011.03.010 .
4. Diao, J., Lv, C., Wang, X., Dang, Z., Zhu, W., & Zhou, Z. (2009). Influence of soil properties on the enantioselective dissipation of the herbicide lactofen in soils. Journal of Agricultural and Food Chemistry, 57(13), 5865.
5. Diao, J., Xu, P., Wang, P., Lu, D., Lu, Y., & Zhou, Z. (2010). Enantioselective degradation in sediment and aquatic toxicity to Daphnia magna of the herbicide lactofen enantiomers. Journal of Agricultural and Food Chemistry, 58(4), 2439–2445.
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