DocumentCode :
704790
Title :
Novel sprayable biodegradable polymer membrane to minimise soil evaporation
Author :
Adhikari, Raju ; Bristow, Keith L. ; Casey, Philip S. ; Freischmidt, George ; Hornbuckle, John W.
Author_Institution :
Manuf. Flagship, CSIRO, Melbourne, VIC, Australia
fYear :
2015
fDate :
4-6 Feb. 2015
Firstpage :
1
Lastpage :
4
Abstract :
Sprayable film systems for soil to prevent moisture loss have received increased attention as next generation alternatives to the use of preformed films. In this paper we report on the properties of a novel water dispersible, sprayable biodegradable polymer membrane and results of preliminary pot and field trials using this membrane to minimise soil evaporation. The polymer emulsion contains 40 wt% solid content with particle sizes in the 100-500 micron range and its viscosity is 400±70 mPa.s; it is stable at ambient temperature and can be sprayed using standard farm equipment. The small scale pot trial indicated a 10-50% reduction in soil evaporation across a number of different soils. The field trial, on a Hanwood loam soil showed that the polymer membrane treatment maintained approximately the same crop yield compared to the control, but used 28% less irrigation water. Water use productivity was 0.34 to 0.46 kg/100 L higher in the polymer treatment than in the control treatments, representing a 20-30% increase in water productivity. Refinement of the polymer membrane together with further field testing is ongoing.
Keywords :
biodegradable materials; emulsions; evaporation; irrigation; membranes; moisture; particle size; polymer films; productivity; soil; viscosity; Hanwood loam soil; control treatments; field testing; moisture loss prevention; particle sizes; polymer emulsion; size 100 micron to 500 micron; soil evaporation minimisation; sprayable film systems; standard farm equipment; viscosity; water dispersible sprayable biodegradable polymer membrane; water productivity; Biomembranes; Films; Irrigation; Polymers; Soil; Surface treatment; Sprayable; agriculture; biodegradable; irrigation; membrane; moisture loss;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Technologies for Sustainable Development (ICTSD), 2015 International Conference on
Conference_Location :
Mumbai
Type :
conf
DOI :
10.1109/ICTSD.2015.7095875
Filename :
7095875
Link To Document :
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