Published 1994 | Version v1
Journal article

Phosphorus, nitrogen, and radionuclide retention and leaching from a Joel sand amended with red mud/gypsum

  • 1. Dept. of Agriculture Western Australia, South Perth (Australia)
  • 2. Chemistry Centre, East Perth (Australia)
  • 3. Western Australia Dept. of Health, Nedlands (Australia)
  • 4. Australian Radiation Labs., Yallambie, Victoria (Australia)

Description

The leaching of phosphorus (P), nitrogen (N), and radionuclides 232Th, 226Ra, 228Ra, and 40K from Joel sands amended with red mud/gypsum (RMG) at 9 rates (0, 2, 4, 8, 16, 32, 64, 128, and 256 t/ha) was measured using columns. Intense leaching conditions (34 mm/day for 12 days) and a high rate of applied P (320 kg/ha as superphosphate) and N (680 kg/ha as ammonium nitrate) were used to simulate extremes of irrigated vegetable production on the Swan Coastal Plain. Addition of the highest rate of RMG (256 t/ha) reduced leaching of fertiliser P and ammonium-nitrogen (NH4-N) by 85% and 50%, respectively, compared with 0 t/ha after 12 days. At 64 t RMG/ha P leaching was reduced 50% compared with 0 t/ha. Nitrate-nitrogen (NO3-N) leaching was not affected by addition of RMG. Reduced leaching of NH4-N was attributed to an increase in cation exchange capacity of the soil with the addition of RMG. Bicarbonate-extractable P in the soil increased with rate of RMG to >50 μg P/g soil at 256 t/ha. This indicates that soil testing of residual P could be used to reduce P inputs to vegetable crops after soils were amended with RMG. This would further reduce the impact of vegetable production on the water systems of the Swan Coastal Plain and extend the period of effectiveness of RMG amended soils. The increase in 232Th specific activity in Joel sand amended with RMG was well below statutory limits even at the highest rate. Neither 40K nor 226Ra were detectable in RMG amended sands up to 256 t RMG/ha. There was no evidence of leaching of 226Ra or 228Ra at any rate of RMG. These results suggest that the use of RMG amendment on commercial horticultural properties on the Swan Coastal Plain could be feasible. 30 refs., 7 figs., 2 tabs

Additional details

Publishing Information

Journal Title
Communications in Soil Science and Plant Analysis
Journal Volume
25
Journal Issue
17-18
Journal Page Range
p. 2925-2944.
ISSN
0010-3624
CODEN
CSOSA2