The NZAGRC is staffed by a dedicated and enthusiastic team.
The NZAGRC Director, Operations Manager, Project Analyst, International Capability and Training Coordinator, and Administrator are employed by AgResearch on behalf of the NZAGRC, and are based in Palmerston North. The Deputy Director (International) and Operations Manager (International), also employed by AgResearch, are based in Wellington. Read more about the NZAGRC staff
The NZAGRC team includes more than 50 highly motivated scientists and technical staff delivering high quality science. This team is led by 7 experts in their field providing science leadership and advice to the NZAGRC. Read more about the NZAGRC SLT
The NZAGRC receives direction from its Steering Group who met quarterly and oversee the NZAGRC's performance against its strategic plan. Read more about the NZAGRC SG
The NZAGRC receives expert advice on the relevance and quality of its research programme for the international and Maori communities. See more about our advisors page for more information.
Below are some profiles of Our People and the work they do.
Changes in denitrification rate and N2O/N2 ratio with varying soil moisture conditions in New Zealand pasture soils
Jha, N., Saggar, S., Tillman, R., & Giltrap, D. (2012). Changes in denitrification rate and N2O/N2 ratio with varying soil moisture conditions in New Zealand pasture soils In: Advanced Nutrient Management: Gains from the Past - Goals for the Future. (Eds L.D. Currie and C L. Christensen).
Denitrification is the primary process of N2O production in temperate grassland soils and accounts for 60% of the total N2O emissions globally. There are various soil and environmental factors that regulate denitrification and affect denitrification rate (DR) and N2O/ N2 ratio. Among these, soil moisture is the most important. Generally, DR increases and N2O/N2 ratio decreases with increasing soil water content. However, the effect of changing soil moisture on DR and N2O/N2 ratio may vary with the type of soil, its nutrient status and the management practices followed on the farm. The interrelationships among the various factors affecting DR are not very well quantified.
Therefore, the current study was planned to investigate the effect of soil moisture on DR and N2O/N2 ratio in five different New Zealand pasture soils with varying physical and chemical characteristics such as soil texture, total porosity, pH, NO3- and NH4+ content, total nitrogen (TN), total carbon (TC), microbial biomass carbon (MBC) and denitrification enzyme activity (DEA). The experiment involved incubation of surface (0-10cm) and subsurface (10-20cm) soil samples at field capacity (FC) and complete saturation at constant temperature (25oC). DR and N2O/N2 ratio were estimated using an acetylene inhibition (AI) technique.
Denitrification rates were higher in soils incubated at saturation than in soils incubated at FC. Similarly, the N2O/N2 ratio decreased in soils when incubated at saturation as compared to FC. The extent of these increases in DR and decreases in N2O/N2 ratio with increasing moisture content varied among the soils due to differences in NO3- and NH4+ content, MBC and DEA of the soils.
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