Patches of poor crop and pasture growth within paddocks, caused by the accumulation of salts in soil layers and not associated with saline water tables, are a common and persistent issue across the lower rainfall areas of Eyre Peninsula. Whilst these dry saline patches, historically referred to as ‘magnesia patches’, have been present for many years (Kennewell 1999), the results of a recent landholder survey (McDonough and Scholz, 2021) identifies landholder concerns that both the area of land impacted, and severity of production loss has increased in recent years. In 2021 an AIR EP project, funded by the Australian Government’s National Landcare Program in conjunction with the Eyre Peninsula Landscape Board, investigated the differences in soil characteristics between areas of good crop growth and poor crop growth on sites at Karcultaby and Buckleboo. Results indicated that the soil profile in the better production zones had better drainage due to coarse carbonate fragments in the soil profile and less “wicking ability” limiting the capacity capillary rise of salts (Masters and Guidera, 2021). Growers have tried several management approaches with varying levels of success, including the addition of soil ameliorants such as sand or organic matter to the topsoil. Under a project funded by the Australian Government’s Future Drought Fund and in collaboration with landholders, AIR EP and PIRSA-SARDI researchers, several demonstration sites were established in 2022 to assess a range of treatments, aimed at reducing the impact of these salts on crop and pasture production. This article summarises plant growth responses from treatments during the 2022 season.
Key messages
Key messages • The application of ameliorants, including sand and manures can provide improved plant establishment and growth on dry saline land. • Understanding the nature of site soil constraints and of the applied ameliorants is key to maximising crop production benefits. • The improved cover on treated areas, if maintained over summer, is expected to reduce evaporation and the capillary rise of salts to the surface, which could provide production benefits over multiple years
Lead research organisation
Mallee Sustainable Farming Inc.
Host research organisation
Agricultural Innovation & Research Eyre Peninsula
Trial funding source
Future Drought Fund: Drought resilient soils
Related program
N/A
Acknowledgments
The project “Building resilience to drought with landscape scale remediation of saline land” has been funded through the Future Drought Fund’s Drought Resilient Soils and Landscapes grants program and is supported by the SA Drought Resilience and Adoption Hub. Mallee Sustainable Farming is the project lead, AIR EP is hosting the project on Eyre Peninsula, and on-ground activities and technical support are being delivered by the PIRSA/SARDI team. Activity ID: 4-H8FU6SC. The authors would also like to thank the landholders involved in this project; Matthew and Amanda Cook, the staff at Minnipa Agricultural Centre, Tristan and Lisa Baldock and Mick McCallum as well as AIR EP for their support of these demonstrations.
Other trial partners
SARDI, University of Adelaide, Frontier Farming Systems, Insight Extension, Northern Sustainable Soils, Trengove Consulting, UniSA
Trial source data and summary not available Check the trial
report PDF for trial results.
Climate
Derived climate information
No observed climate data available for this trial. Derived climate data is
determined from trial site location and national weather sources.
Buckleboo SA
Karcultaby SA
Minnipa SA
Tumby Bay SA
Buckleboo SA
NOTE: Exact trial site locality unknown - Climate data may not be accurate
Karcultaby SA
NOTE: Exact trial site locality unknown - Climate data may not be accurate
Minnipa SA
Tumby Bay SA
NOTE: Exact trial site locality unknown - Climate data may not be accurate
SILO weather estimates sourced from https://www.longpaddock.qld.gov.au/silo/
Jeffrey, S.J., Carter, J.O., Moodie, K.B. and Beswick, A.R. (2001). Using spatial interpolation to
construct a comprehensive archive of Australian climate data , Environmental Modelling and Software, Vol
16/4, pp 309-330. DOI: 10.1016/S1364-8152(01)00008-1.