Sustainable grazing systems for the Central Tablelands of New South Wales. 4. Soil water dynamics and runoff events for differently-managed pasture types

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dc.contributor Hughes, J D
dc.contributor Packer, I J
dc.contributor Michalk, D L
dc.contributor Dowling, P M
dc.contributor King, W McG
dc.contributor Brisbane, S
dc.contributor Millar, G D
dc.contributor Priest, S M
dc.contributor Kemp, D R
dc.contributor Koen, T B
dc.date.accessioned 2012-03-07T22:18:57Z
dc.date.available 2012-03-07T22:18:57Z
dc.date.issued 2006
dc.identifier.citation Aust. J. Exp. Agr. (2006) 46(4): 483-494
dc.identifier.issn 0816-1089
dc.identifier.uri http://livestocklibrary.com.au/handle/1234/22596
dc.description.abstract Soil water, runoff amount and quality, pasture production and environmental data were measured for a pastoral prime lamb enterprise in the Central Tablelands of New South Wales from 1998 to 2002. There were 4 pasture treatments: fertilised and sown chicory (CH), fertilised and sown introduced pastures (SP), fertilised naturalised pastures (FN) and unfertilised naturalised pastures (UN). Two grazing management regimes, tactically grazed (TG) and continuously grazed (CG) were imposed on the SP, FN and UN treatments. The CH treatment was rotationally grazed. To compare pasture and grazing system water use, maximum soil water deficit values (SWDMax) were calculated from neutron moisture meter data. SWDMax was influenced by both environmental and management factors. Management factors that influenced SWDMax were herbage mass of perennials, degree of perenniality, and the perennial species present. Environmental factors accounted for >50% of the variation in SWDMax. Inclusion of management factors (perennial herbage mass of C3 and C4 species and percentage perennial herbage mass), accounted for an additional 16% of variation. While the influence of pasture management appears to be relatively small, importantly, management is the only avenue available to land managers for influencing SWDMax. The UNTG and all sown treatments, with greater perennial herbage mass or greater C4 herbage mass consistently produced the highest SWDMax. Runoff amount and quality data are presented for ground cover percentages which generally exceeded 80% for the experimental period. Runoff as a proportion of rain received during the experiment was <3%. Environmental factors explained 47% of variation in runoff, while pasture herbage mass and ground cover percentage explained an additional 2% of variation. Water quality was monitored on 3 treatments (SPTG, FNTG and UNCG) for total nitrogen (N), total phosphorus (P) and total suspended solids (TST) over a 6-month period. The mean values for total N and P were below the acceptable contaminant concentration for agricultural irrigation water. An important outcome of this research is the concept of a practical Targeted Water Management Plan (TWMP) which devises a framework for optimum water usage and productivity at a landscape scale.
dc.publisher CSIRO Publishing
dc.source.uri http://www.publish.csiro.au/?act=view_file&file_id=EA04269.pdf
dc.subject continuous grazing
dc.subject herbage mass
dc.subject runoff
dc.subject soil water deficit
dc.subject tactical grazing
dc.subject Targeted Water Management Plan
dc.subject water quality
dc.title Sustainable grazing systems for the Central Tablelands of New South Wales. 4. Soil water dynamics and runoff events for differently-managed pasture types
dc.type Research
dc.description.version Journal article
dc.identifier.volume 46
dc.identifier.page 483-494
dc.identifier.issue 4


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