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Batch Leaching Studies of Penoxsulam Herbicide in Two Different Soils
Corresponding Author(s) : Monika Dayanand
Asian Journal of Chemistry,
Vol. 30 No. 7 (2018): Vol 30 Issue 7
Abstract
Penoxsulam possesses a leaching tendency in soil, therefore a research study was undertaken to assess the portability of penoxulam herbicide, in two soils of varying characteristics at two application rates (0.5 and 1.0 μg g-1) by batch method. The presence of penoxsulam was very low in the first and third leachate but it was determined in high amount in the second leachate, which was collected after 72 h of leaching initiation, indicating a high potential of this herbicide leaching. The residues of penoxsulam in leachate of acidic soil were slightly lower than that of neutral soil probably because of higher stability of the herbicide at low pH.
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- W.A. Kleschick, B.C. Gerwick, C.M. Carson, W.T. Monte and S.W. Snider, J. Agric. Food Chem., 40, 1083 (1992); https://doi.org/10.1021/jf00018a035.
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- T.W. Jabusch and R.S. Tjeerdema, J. Agric. Food Chem., 53, 7179 (2005); https://doi.org/10.1021/jf050767g.
- I.J. van Wesenbeeck, J.M. Zabik, J.D. Wolt, G.A. Bormett and D.W. Roberts, J. Agric. Food Chem., 45, 3299 (1997); https://doi.org/10.1021/jf9702050.
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- M. Kogan, M. Araya and C. Alister, Pest Manag. Sci., 68, 399 (2012); https://doi.org/10.1002/ps.2276.
- S. Sondhia, S. Rajput, R.K. Varma and A. Kumar, Appl. Soil Ecol., 105, 196 (2016); https://doi.org/10.1016/j.apsoil.2016.03.010.
- Monika, A. Srivastava, A. Suyal and P.C. Srivastava, Bull. Environ. Contam. Toxicol., 99, 470 (2017); https://doi.org/10.1007/s00128-017-2171-x.
- M.L. Jackson, Soil Chemical Analysis. Prentice Hall, Inc., New Jersey, USA. pp. 38-226 (1958).
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- G.P. Murphy and D.R. Shaw, Weed Sci., 45, 564 (1997).
- J. Rouchaud, O. Neus, H. Eelen and R. Bulcke, Meded. Fac. Landbouwwet. Rijksuniv. Gent., 67, 401 (2002).
- B.C. Gerwick and W.A. Kleschick, Weed Sci. Abstr., 31, 28 (1991).
- I.J. van Wesenbeeck, A.L. Peacock and P.L. Havens, J. Environ. Qual., 30, 553 (2001); https://doi.org/10.2134/jeq2001.302553x.
- R.N. Yoder, M.A. Huskin, L.M. Kennard and J.M. Zabik, J. Agric. Food Chem., 48, 4335 (2000); https://doi.org/10.1021/jf9911848.
- J.M. Zabik, I.J. van Wesenbeeck, A.L. Peacock, L.M. Kennard and D.W. Roberts, J. Agric. Food Chem., 49, 3284 (2001); https://doi.org/10.1021/jf001236p.
- M.S. Krieger, F. Pillar and J.A. Ostrander, J. Agric. Food Chem., 48, 4757 (2000); https://doi.org/10.1021/jf000009k.
- S.K. Pramanik, B. Kanrar, S. Dutta and A. Bhattacharyya, eds.: B. Marambe, U.R. Sangakkara, W.A.J.M. De Costa and A.S.K. Abeysekara, Laboratory Simulated Studies on the Persistence Behavior of “Penoxsulam 24 SC” in Soils of Different Agro-climatic Zones in India, Proceedings of 21st Asian Pacific Weed Science Society Conference, Colombo, Sri Lanka (2007).
References
W.A. Kleschick, B.C. Gerwick, C.M. Carson, W.T. Monte and S.W. Snider, J. Agric. Food Chem., 40, 1083 (1992); https://doi.org/10.1021/jf00018a035.
S. Baskaran, D.R. Lauren and P.T. Holland, J. Chromatogr. A, 746, 25 (1996); https://doi.org/10.1016/0021-9673(96)00295-6.
T.W. Jabusch and R.S. Tjeerdema, J. Agric. Food Chem., 54, 5962 (2006); https://doi.org/10.1021/jf0606454.
D.W. Roberts, J.A. Knuteson and R. Jackson, The Dissipation of Penoxsulam in Flooded Rice Fields, In: Pesticides in Air, Plant, Soil & Water Systems: XII Symposium Pesticide Chemistry, Piacenza, Italy, pp 349 (2003).
T.W. Jabusch and R.S. Tjeerdema, J. Agric. Food Chem., 53, 7179 (2005); https://doi.org/10.1021/jf050767g.
I.J. van Wesenbeeck, J.M. Zabik, J.D. Wolt, G.A. Bormett and D.W. Roberts, J. Agric. Food Chem., 45, 3299 (1997); https://doi.org/10.1021/jf9702050.
T.W. Jabusch and R.S. Tjeerdema, Rev. Environ. Contam. Toxicol., 193, 31 (2008); https://doi.org/10.1007/978-0-387-73163-6_2.
M. Kogan, M. Araya and C. Alister, Pest Manag. Sci., 68, 399 (2012); https://doi.org/10.1002/ps.2276.
S. Sondhia, S. Rajput, R.K. Varma and A. Kumar, Appl. Soil Ecol., 105, 196 (2016); https://doi.org/10.1016/j.apsoil.2016.03.010.
Monika, A. Srivastava, A. Suyal and P.C. Srivastava, Bull. Environ. Contam. Toxicol., 99, 470 (2017); https://doi.org/10.1007/s00128-017-2171-x.
M.L. Jackson, Soil Chemical Analysis. Prentice Hall, Inc., New Jersey, USA. pp. 38-226 (1958).
S. Saha, S.B. Singh and G. Kulshrestha, J. Environ. Sci. Health B, 38, 337 (2003); https://doi.org/10.1081/PFC-120019900.
G.P. Murphy and D.R. Shaw, Weed Sci., 45, 564 (1997).
J. Rouchaud, O. Neus, H. Eelen and R. Bulcke, Meded. Fac. Landbouwwet. Rijksuniv. Gent., 67, 401 (2002).
B.C. Gerwick and W.A. Kleschick, Weed Sci. Abstr., 31, 28 (1991).
I.J. van Wesenbeeck, A.L. Peacock and P.L. Havens, J. Environ. Qual., 30, 553 (2001); https://doi.org/10.2134/jeq2001.302553x.
R.N. Yoder, M.A. Huskin, L.M. Kennard and J.M. Zabik, J. Agric. Food Chem., 48, 4335 (2000); https://doi.org/10.1021/jf9911848.
J.M. Zabik, I.J. van Wesenbeeck, A.L. Peacock, L.M. Kennard and D.W. Roberts, J. Agric. Food Chem., 49, 3284 (2001); https://doi.org/10.1021/jf001236p.
M.S. Krieger, F. Pillar and J.A. Ostrander, J. Agric. Food Chem., 48, 4757 (2000); https://doi.org/10.1021/jf000009k.
S.K. Pramanik, B. Kanrar, S. Dutta and A. Bhattacharyya, eds.: B. Marambe, U.R. Sangakkara, W.A.J.M. De Costa and A.S.K. Abeysekara, Laboratory Simulated Studies on the Persistence Behavior of “Penoxsulam 24 SC” in Soils of Different Agro-climatic Zones in India, Proceedings of 21st Asian Pacific Weed Science Society Conference, Colombo, Sri Lanka (2007).