Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 1 de 1
Filter
Add more filters











Database
Language
Publication year range
1.
J Sci Food Agric ; 93(5): 995-1002, 2013 Mar 30.
Article in English | MEDLINE | ID: mdl-23070937

ABSTRACT

BACKGROUND: There is a need for field trials on testing agronomic potential of coal fly ash to engender routine use of this technology. Two field trials were undertaken with alkaline and acidic fly ashes supplied at between 3 and 6 Mg ha⁻¹ to acidic soils and sown to wheat and canola at Richmond (Eastern Australia) and to wheat only at Merredin (Western Australia). RESULTS: Ash addition marginally (P< 0.10) raised the pH in the top soil layers at both sites. The exceptionally dry season at both sites constrained yields and thwarted any likelihood of gaining yield benefits from ash-induced improvements in soil conditions. Yield improvements due to ash addition were absent at Merredin and only marginal at Richmond, where no elevated accumulation of B, Mo, Se, P or S in either the straw or seeds of wheat was observed; canola increased accumulation of Mo and Se in its shoot with acidic fly ash, but it was well below phyto toxic levels. Simulations of wheat using APSIM at Richmond over a 100-year period (1909-2008) predicted yield increases in 52% of years with addition of ash at 3.0 Mg ha⁻¹ compared with 24% of years with addition of ash at 6.0 Mg ha⁻¹. The simulated yield increases did not exceed 40% over the control with addition of 6 Mg ha⁻¹ ash, but was between 40% and 50% with an addition rate of 3 Mg ha⁻¹. CONCLUSION: We found no evidence of phytotoxicity in either crop in this unusually dry year and there is still a need for further field assessment in years with favourable rainfall to enable development of clear recommendations on fly ash rates for optimum yield benefits.


Subject(s)
Brassica napus/growth & development , Coal Ash/metabolism , Crops, Agricultural/growth & development , Fertilizers , Soil/chemistry , Triticum/growth & development , Calcium Carbonate/adverse effects , Calcium Carbonate/metabolism , Calcium Sulfate/adverse effects , Calcium Sulfate/metabolism , Coal Ash/adverse effects , Coal Ash/chemistry , Coal Ash/economics , Crops, Agricultural/economics , Droughts , Extraction and Processing Industry/economics , Fertilizers/economics , Hydrogen-Ion Concentration , Industrial Waste/analysis , Industrial Waste/economics , Metals, Heavy/adverse effects , Metals, Heavy/analysis , Metals, Heavy/metabolism , Models, Biological , New South Wales , Plant Leaves/chemistry , Plant Leaves/growth & development , Plant Stems/chemistry , Plant Stems/growth & development , Seeds/chemistry , Seeds/growth & development , Trace Elements/adverse effects , Trace Elements/analysis , Trace Elements/metabolism , Triticum/economics , Western Australia
SELECTION OF CITATIONS
SEARCH DETAIL