Effects of soil moisture and length of irrigation on soil wetting to deliver fumigants through microirrigation lines in sandy spodosols
Bielinski M. Santos, James P. Gilreath
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DOI: 10.4236/as.2011.24069   PDF    HTML     4,818 Downloads   7,606 Views   Citations

Abstract

Soil fumigant delivery through microirrigation (drip) lines has the potential to replace direct soil injection into planting beds. However, wetting coverage in these Spodosols must be improved to increase soilborne pest and weed control. Field trials were carried out to determine the impact of soil moisture on the extent of wetting cross-sectional areas through varying irrigation times. Soil moisture contents were: a) 7% moisture (field capacity), and b) 20% (saturation), along with 2, 4, 6, 8, and 10 h of irrigation. Pressed beds had 70 cm tops. Drip lines had emitters spaced 30 cm apart delivering 0.056 L·min–1 per m of row at 55 kPa, and two drip lines were buried at 2.5 cm below the surface and 30 cm apart from each other. Water was mixed with a blue marking dye to analyze the water distribution patterns. Beds were opened at the emitters and high-resolution digital pictures were taken for each treatment. Resulting images were adjusted using photographic software and covered areas across the beds were determined. Regression analysis showed significant quadratic equations for both soil moisture situations, with saturated soils obtaining the highest cross section coverage (90 and 94% after 8 and 10 h). In field capacity beds, the maximum cross section coverage obtained was 82%. Within each soil moisture situation, there were no differences between 8 and 10 h of irrigation.

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Santos, B. and Gilreath, J. (2011) Effects of soil moisture and length of irrigation on soil wetting to deliver fumigants through microirrigation lines in sandy spodosols. Agricultural Sciences, 2, 533-535. doi: 10.4236/as.2011.24069.

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] Noling, J.W. and J.P. Gilreath (2001) Methyl bromide, progress and problems: Identifying alternatives to methyl bromide. University of Florida, Gainesville, 2.
[2] Ferguson, L.M., Fernández, G.E., Brannen, P.M., Louws, F.J., Poling, E.B., Sydorovych, O.B., Safley, C.D., Monks, D.W., Van Esbroeck, Z.P., Sanders, D.C. and Smith, J.P. (2001) Alternative soil treatments for strawberry in the southeastern United States. 2011 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions, San Diego, 5-9 November 2001, 42-1-4. http://www.mbao.org/
[3] Brady, N.C. (1990) The nature and properties of soils. MacMillan, New York.
[4] Csinos, A., Laska, J.E., Seebold, K. and Eger, J. (2001) Evaluation of microirrigation wetting patterns in polyethylene film mulch beds. 2001 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions, San Diego, 5-9 November 2001, 47-1-4. http://www.mbao.org/
[5] Eger, J.E., Gilreath, J.P. and Noling, J.W. (2001) Effect of irrigation times on wetting patterns in Florida vegetable soils. 2001 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions, San Diego, 5-9 November 2001, 48-1-4. http://www.mbao.org/
[6] Noling, J.W. and Gilreath, J.P. (2002) Crop destruction, crop residue and the importance of weed control for nematode management. Proceedings of Florida Agricultural Conference and Trade Show 2002, Lakeland, 22-23 May 2002, 45-46.
[7] Hu, T. and Desai, J.P. (2004) Soft-tissue material properties under large deformation: Strain rate effect. Proceedings of the 26th Annual International Conference of the IEEE EMBS, San Francisco, 1-5 September 2004, 2758-2761.
[8] Huckaba, R.M., Mueller, J.D. and Weiss, A.W. (2001) Effect of irrigation times on wetting patterns in Mid-At- lantic vegetable soils. 2001 Annual International Research Conference on Methyl Bromide Alternatives and Emissions Reductions, San Diego, 5-9 November 2001, 51-1-2. http://www.mbao.org/

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