Estimated Effects Of Climate Change On Grassland Production And Legume Content Across Southern Australia,
2020
CSIRO, Australia
Estimated Effects Of Climate Change On Grassland Production And Legume Content Across Southern Australia, Andrew D. Moore, Afshin Ghahramani
IGC Proceedings (1977-2023)
Climate changes caused by anthropogenic increases in greenhouse gases such as CO2 will affect southern Australia along with the rest of the globe. Dryland pastures supporting extensive beef, sheepmeat and wool production occupy a third of southern Australia’s farming zone. These livestock production systems are highly sensitive to climatic variation, because they depend almost entirely on pasture as their source of feed. Given the diversity of current climates, soils and pastures that are found across southern Australia, and the spatial variation in projected climate changes (CSIRO 2007), it can also be expected that the impacts of changing climates on …
Assessing Resilience Of Pasture Production To Climatic Changes,
2020
University of Melbourne, Australia
Assessing Resilience Of Pasture Production To Climatic Changes, Brendan R. Cullen, Richard P. Rawnsley, Richard J. Eckard
IGC Proceedings (1977-2023)
Increasing temperatures and atmospheric carbon dioxide (CO2) concentrations, together with changes to rainfall patterns, will influence seasonal pasture production; however climate change projections for south eastern Australia are uncertain (CSIRO and BoM 2007). Despite this, climate change impact assessments generally rely on specific climate projections, but in this study an alternative approach was developed to test the resilience of production to incremental changes in climate.
Impacts Of Projected Climate Change On Pasture Growth And Safe Carrying Capacities For Three Extensive Grazing Land Regions In Northern Australia,
2020
Department of Agriculture, Fisheries and Forestry, Australia
Impacts Of Projected Climate Change On Pasture Growth And Safe Carrying Capacities For Three Extensive Grazing Land Regions In Northern Australia, Giselle L. Whish, Robyn A. Cowley, Lester I. Pahl, Joe C. Scanlan, Neil D. Macleod
IGC Proceedings (1977-2023)
The northern beef industry is a major component of the regional economies of Queensland, Northern Territory and northern Western Australia, and has contributed an estimated $5 billion to Australia’s economy in 2009-10. Projected climate change will have an adverse impact on Australia’s agricultural production (McKeon et al. 2008) with an expected 3.5% decline in beef production in northern Australia by 2030 (Heyhoe et al. 2008). The GRASP pasture production model (McKeon et al. 2000) has been used to evaluate impacts of climate change in Australia’s rangelands (Crimp et al. 2002, McKeon et al. 2008), with …
Impact On Grassland Biomass From Climate Warming And Drying,
2020
Inner Mongolia University of Technology, China
Impact On Grassland Biomass From Climate Warming And Drying, Suying Li, Li Yang
IGC Proceedings (1977-2023)
It is becoming increasingly urgent to assess the impact of climate change on grassland biomass due to the important role these grasslands play in animal production. The typical steppe in Xilinhot of Inner Mongolia is the most representative vegetation types in the temperate grasslands of the northern China. One means to determine climate change is using the Aridity index (AI, also referred to as the dry degree of climate in this article) that is based on both temperature and precipitation (Arora 2002; Bannayan et al.. 2010; Nastos et al. 2012). The objective of this paper was to indicate how …
Impacts Of Future Climate Change On Net Primary Productivity Of Grassland In Inner Mongolia, China,
2020
China Agricultural University, China
Impacts Of Future Climate Change On Net Primary Productivity Of Grassland In Inner Mongolia, China, Qiuyue Li, Xuebiao Pan, Jiaguo Qi, Lizhen Zhang, Xiaoyu Wei, Zhihua Pan, Yinlong Xu
IGC Proceedings (1977-2023)
Net Primary Productivity (NPP) of grassland is a key variable of terrestrial ecosystems and is an important parameter for characterizing carbon cycles in grassland ecosystems. In this research, the Inner Mongolia grassland NPP was calculated using the Miami Model and the impact of climate change on grassland NPP was subsequently analyzed under the Special Report on Emissions Scenarios (SRES) A2, B2, and A1B scenarios, which are inferred from Providing Regional Climates for Impacts Studies (PRECIS) climate model system. The results showed that: (1) the NPP associated with these three scenarios had a similar distribution in Inner Mongolia: the grassland NPP …
Future Climate Change Impacts On Pasture Biomass In Mongolia,
2020
Institute of Meteorology, Hydrology and Environment, Mongolia
Future Climate Change Impacts On Pasture Biomass In Mongolia, Erdenetsetseg Baasandai, Erdenetuya Magsar
IGC Proceedings (1977-2023)
The main objective of this study is to estimate pasture biomass changes in Mongolia using the simulation model CENTURY. For the study framework we used the fenced pasture biomass data from 1960’s to 2008, over 60 meteorological stations and simulation data of the carbon, nitrogen, aboveground and belowground biomass, potential evapotranspiration, evaporation, transpiration and precipitation data across these grasslands. The simulated climatic and other parameters were estimated meteorological station based and their differences between 2 time periods were calculated. With purpose to make comparison of the present situation to the future situation used Climate Change Scenarios under A2, A1B and …
Comparative Analysis Of Climate Change Adaptation Options Across The Southern Australian Livestock Industry,
2020
CSIRO, Australia
Comparative Analysis Of Climate Change Adaptation Options Across The Southern Australian Livestock Industry, Afshin Ghahramani, Andrew D. Moore
IGC Proceedings (1977-2023)
Climate change is predicted to have a substantial negative effect on the productivity of grasslands across southern Australia (Moore and Ghahramani 2013). We used the GRAZPLAN biophysical simulation models to assess several possible grassland management and animal genetic improvement adaptations under SRES A2 climate change scenario. Simulations spanned the five dimensions of geography, time, global circulation models, enterprise, and adaptations. Impact of climate change was predicted to reduce profitability of livestock industry by 46%, 58%, and 72% at 2030, 2050 and 2070, respectively. Increasing soil fertility could return the average profitability of five livestock enterprises to its historical level at …
Eco-Efficiency Of Forage Production In Northern Germany,
2020
Kiel University, Germany
Eco-Efficiency Of Forage Production In Northern Germany, Antje Herrmann, Sandra Claus, Christof Kluß, Friedhelm Taube
IGC Proceedings (1977-2023)
A 2-year field experiment was conducted at two sites in Schleswig-Holstein, northern Germany, to quantify and evaluate the carbon footprint of arable forage cropping systems (continuous silage maize, maize-wheat-grass rotation, perennial ryegrass ley) as affected by N fertilizer type and N amount. Total greenhouse gas emission showed a linear increase with N application, with mineral N supply resulting in a higher slope. Product carbon footprint ranged between -66 and 119 kg CO2eq/(GJ NEL) and revealed a quadratic or linear response to fertilizer N input, depending on the cropping system. At N input required for achieving maximum energy yield, perennial ryegrass …
Elevated Co2 Impacts On Grazed Pasture: Long-Term Lessons From The New Zealand Face,
2020
AgResearch, New Zealand
Elevated Co2 Impacts On Grazed Pasture: Long-Term Lessons From The New Zealand Face, Michael B. Dodd
IGC Proceedings (1977-2023)
A grazed pasture Free Air CO2 Enrichment (FACE) experiment has been operating for almost 15 years in the Rangitikei Region of New Zealand, following earlier work studying CO2, temperature and moisture effects on pasture in growth chambers. The longer-term results are reviewed with a focus on primary productivity, pasture compositional dynamics, nutrient cycling feedbacks and soil carbon supply. In terms of the direct effects of CO2 elevated to 475 ppm, increases in primary production were reflected in belowground allocation and legume stimulation, with the latter diminishing in the longer term and annual aboveground net herbage accumulation …
Assessing Climate Change Impacts On Managed Grassland Production Using A Bio-Economic Modelling Approach,
2020
ART Research Station, Switzerland
Assessing Climate Change Impacts On Managed Grassland Production Using A Bio-Economic Modelling Approach, Robert Finger, Pierluigi Calanca, Simon Briner
IGC Proceedings (1977-2023)
We develop a bio-economic model that combines the process based grassland simulation model PROGRASS with an economic decision model, which accounts for income risks and yield quality, to derive optimal nitrogen application rates in a grass-clover system in Switzerland. The model is applied to current as well as to future climate conditions. Though nitrogen increases yields, it also leads to a higher variance and more negative skewness of yields, i.e. is risk increasing. Accounting for farmers’ risk aversion thus reduces optimal nitrogen use. We find climate change, ceteris paribus, to lead to higher grassland yields but also to increase the …
Tithonia Diversifolia For Ruminant Nutrition,
2020
Universidade Federal de São João del-Rei, Brazil
Tithonia Diversifolia For Ruminant Nutrition, Rogerio M. Mauricio, Rafael S. Ribeiro, Sylvia R. Silveira, Person L. Silva, Leonardo Calsavara, Luiz G. R. Pereira, Domingos S. C. Paciullo
IGC Proceedings (1977-2023)
India and Brazil lead the world ranking of livestock enteric methane emissions (FAO 2006). According to FAO (2006), Brazil (9.6 Tg of CH4/year) is the highest emitter of methane from cattle, followed by India (8.6 Tg of CH4/year) and the USA (5.1 Tg of CH4/year). In livestock, methane (CH4) formed from enteric fermentation of carbohydrates is primarily responsible for the emissions in the sector. Regarding livestock methane emission, Delgado et al. (2012) evaluated 20 tree and shrub species using in vitro technique and demonstrated a reducing effect on the amount of methane when Tithonia diversifolia was compared with, for …
Herbage Intake, Methane Emissions And Animal Performance Of Steers Grazing Dwarf Elephant Grass With Or Without Access To Arachis Pintoi Pastures,
2020
Universidade do Estado de Santa Catarina, Brazil
Herbage Intake, Methane Emissions And Animal Performance Of Steers Grazing Dwarf Elephant Grass With Or Without Access To Arachis Pintoi Pastures, Ederson A. De Andrade, Henrique M. N. Ribeiro-Filho, Diego M. De Liz, João G. R. Almeida, Marcolino F. Miguel, Gutierri T. Raupp, Fabiana R. Ramos, Edison X. Almeida
IGC Proceedings (1977-2023)
The inclusion of legumes in diets based on grass has nutritional benefits due to ingestive and digestive interactions (Niderkorn and Baumont 2009). Moreover, it is speculated that tropical legumes can contribute to reducing the emission of greenhouse gases (GHG) compared to diets exclusively composed of grasses (Archimède et al. 2011). However, under grazing conditions, these advantages are not always possible to obtain. This occurs when the spatial distribution of sward grasses impose limitations on access to legumes by grazing animals (Solomon et al. 2011). This can be the case, for example, when legumes are overlapped by the leaves …
Modelling Adaptation And Mitigation Strategies For Southern Livestock Industries Of Australia,
2020
University of Melbourne, Australia
Modelling Adaptation And Mitigation Strategies For Southern Livestock Industries Of Australia, Richard J. Eckard, Richard P. Rawnsley, Brendan R. Cullen, Matthew Bell, Karen Christie
IGC Proceedings (1977-2023)
Climate change will impact on the Australian grazing industries both through mitigation policies and the impact of warmer temperatures, increased atmospheric CO2 and changed rainfall patterns (Cullen et al. 2009; Eckard et al. 2010). Mechanistic models are useful tools to inform our understanding of the complex interactions between future climates and the soil, plant, animal and management in livestock production systems.
This paper summarises the results of a number of whole farm systems modelling studies investigating likely impacts of climate change, adaptation options and emissions implications for livestock production in southern Australia.
Effect Of Soil Moisture Status And Animal Treading On N2O Emissions And The Effectiveness Of A Nitrification Inhibitor Mitigation Technology,
2020
Lincoln University, New Zealand
Effect Of Soil Moisture Status And Animal Treading On N2O Emissions And The Effectiveness Of A Nitrification Inhibitor Mitigation Technology, H. J. Di, K. C. Cameron, B. Ball, A. Podolyan, Jizheng He
IGC Proceedings (1977-2023)
Nitrous oxide (N2O) is a potent greenhouse gas with a long-term global warming potential about 298 times that of carbon dioxide (CO2). In grazed grassland, most of the N2O is emitted from nitrogen (N) excreted by the grazing animal, particularly in the animal urine. When the soil is wet, such as that in winter grazing conditions, animal grazing can cause soil structural damage, leading to soil compaction. The combination of a wet soil plus soil compaction is particularly conducive for N2O production. A nitrification inhibitor technology using dicyandiamide (DCD) has been developed …
The Potential Of Carbon Sequestration And N2O Emissions Due To Different Sward Ages After Grassland Re-Sowing,
2020
Christian-Albrechts-University Kiel, Germany
The Potential Of Carbon Sequestration And N2O Emissions Due To Different Sward Ages After Grassland Re-Sowing, Thorsten Biegemann, Ralf Loges, Friedhelm Taube
IGC Proceedings (1977-2023)
In order to quantify carbon (C) sequestration and nitrous oxide (N2O) emission rates from grassland of different sward ages (2, 5 and 18 years) after grassland re-establishment, a 2-year field experiment was conducted on a sandy loam in 2010/2011 (2011/2012). The trial was set up in a randomized plot experiment with three replicates including a control (no N-fertilizer) and a fertilized treatment (240 kg N/ha/year as cattle slurry). N2O emissions were measured on a weekly basis using the closed chamber method. The soil carbon content was measured twice a year from soil cores. Results showed a …
Challenges And Opportunities For Improving Eco-Efficiency Of Tropical Forage-Based Systems To Mitigate Greenhouse Gas Emissions,
2020
Centro Internacional de Agricultura Tropical, Colombia
Challenges And Opportunities For Improving Eco-Efficiency Of Tropical Forage-Based Systems To Mitigate Greenhouse Gas Emissions, Michael Peters, Mario Herrero, Myles Fish, Karl-Heinz Erb, Idupulapati M. Rao, Guntur V. Subbarao, Aracely Castro, Jacobo Arango, Julian Chará, Enrique Murgueitio, Rein Van Der Hoek, Peter Läderach, Glenn Hyman, Jeimar Tapasco, Bernardo Strassburg, Birthe K. Paul, Alvaro Rincón, Rainer Schultze-Kraft, Steve Fonte, Timothy Searchinger
IGC Proceedings (1977-2023)
Forage-based livestock production plays a key role in national and regional economies, for food security and poverty alleviation. Livestock production is also considered as a major contributor to agricultural GHG emissions, however. While demand for livestock products is predicted to continue to increase, there is political and societal pressure both to reduce environmental impacts and to convert some of the pasture area to alternative uses such as crop production and environmental conservation. Thus it is essential to develop approaches for sustainable intensification of livestock systems to mitigate GHG emissions, addressing biophysical, socioeconomic and policy challenges. This paper highlights the potential …
Effects Of Rain Events On Carbon Fluxes From Biological Soil Crusts,
2020
Lanzhou University, China
Effects Of Rain Events On Carbon Fluxes From Biological Soil Crusts, Chunping Zhang, Xudong Li, Decao Niu, Hongrong Zhang, Hua Fu
IGC Proceedings (1977-2023)
In dry ecosystems, biological soil crusts (BSCs) have been suggested as one of the factors responsible for the large rate of annual CO2 net uptake (Xie et al. 2009). However, most studies carried out on carbon (C) fluxes in arid and semi-arid ecosystems, such as soil respiration, have neglected the carbon fluxes from BSCs. Although BSCs are a vital component of the dry-land soil C cycle, few studies have parameterized the conditions required for photosynthesis in BSCs or determined BSCs respiration (Elbert et al. 2009, Castillo-Monroy et al. 2011). Precipitation in dry land is dominated by …
Carbon Density Distribution And Carbon Storage Estimation Under Different Grazing Degradation In The Typical Steppe,
2020
Institute of Grassland Research of CAAS, China
Carbon Density Distribution And Carbon Storage Estimation Under Different Grazing Degradation In The Typical Steppe, Sarula Wu, Xiangyang Hou, Yong Ding, Weibo Ren
IGC Proceedings (1977-2023)
Carbon (C) is a crucial component of living organisms on planet earth, and C cycling is an important symbol of healthy development of the biosphere (Han et al. 1999). Human activity has adversely affected the global C cycle, and contributed to an alteration of climate that will generate discernible feedbacks to all organisms and ecosystems on earth (He et al. 2008). Grasslands are one of the most widely distributed terrestrial ecosystems on the earth and it is estimated that C storage of global grassland ecosystem was 761Gt (1Gt = 09t), which accounts for about 15.2% C storage in …
Effect Of Grazing On Soil Carbon And Nitrogen In Alpine Madow, Eastern Of Tibetan Plateau,
2020
Lanzhou University, China
Effect Of Grazing On Soil Carbon And Nitrogen In Alpine Madow, Eastern Of Tibetan Plateau, Shiqing Li, Zhenggang Guo, Xue Ran, Yuying Shen
IGC Proceedings (1977-2023)
As the grassland ecosystem in the Tibetan Plateau is very fragile, overgrazing likely leads to more serious damages to it than other ecosystems. In the past 30 years, 37% of the alpine meadows have been heavily damaged by grazing causing degradation of native vegetation, a decline in species richness and feed value, and more seriously soil erosion (Six et al. 2004). The impact of grazing on alpine grasslands appears to be hysteresis, as the soil needs more time to recover than the vegetation. So analysing the effect of grazing intensity on soil characteristics is an important way to reveal how …
Carbon Sequestration In Relation To Shrub Size In The Desert Ecosystem,
2020
Lanzhou University, China
Carbon Sequestration In Relation To Shrub Size In The Desert Ecosystem, Decao Niu, Hongyang Chen, Shigao Jiang, Li Liu, Hongrong Zhang, Hua Fu
IGC Proceedings (1977-2023)
Desert ecosystems have been reported as the location of the long-sought ‘missing sink’ for atmospheric carbon dioxide and as a potentially important area for carbon sequestering from fossil fuel combustion in the future (Stone 2008). Researchers have found that net uptake of carbon in the Mojave Desert ranged from 102 to 127 g C m2/yr during a 3-year period, which is equivalent to the net ecosystem production of many forest ecosystems with a much higher biomass (Luyssaert et al. 2007; Wohlfahrt et al. 2008). Shrub is the dominant plant of desert ecosystems (Gratani et al. 2011); hence, it …
