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Electricity generation/consumption, renewable energy, smart grid, oil/gas, carbon emissions
4,887 datasets
Australian soil pH (CaCl2) maps modelled at a 3 arc-second resolution (~90m pixels). The dataset contains 24 gridded maps representing pH estimates and confidence limits for six standard soil depths from 0-5 cm to 100-200 cm. It is Version 2 of the product from the Soil and Landscape Grid of Australia, superseding Release 1.
18 gridded maps model the bulk density of Australian soils at six standard depths from 0-5 cm to 100-200 cm. The Soil and Landscape Grid of Australia produced this release, which supersedes a previous version. The raster data has a spatial resolution of 3 arc seconds, approximately 90 by 90 meters.
Isotopic and biomarker analyses characterize five distinct petroleum systems from Cambrian to Permian periods in the Arafura, Bonaparte, and Canning Basins. The dataset includes specific isotopic signatures, such as δ13Csat values ranging from -32‰ to -24‰, and correlates oils to source rock formations like the Middle Cambrian Jigaimara Formation. This research was published by Edwards et al. in The APPEA Journal in 1997.
Version 2 of the Australian Soil Clay Content product from the Soil and Landscape Grid of Australia. It provides 18 raster maps estimating clay mass fraction at six standard depths from 0-5cm to 100-200cm, with a spatial resolution of 3 arc seconds (~90 meters). The data is produced by the Terrestrial Ecosystem Research Network and adheres to GlobalSoilMap specifications.
Eighteen raster maps model the 15 Bar Lower Limit Volumetric Water Content of Australian soils at six standard depths from the surface to 200 cm. The Soil and Landscape Grid of Australia produced this version 1 product at a 3 arc-second resolution, aligning with GlobalSoilMap.net specifications. Data coverage spans approximately 1950 to 2021.
Australia-wide modelled estimates of soil silt content, released by the Terrestrial Ecosystem Research Network. The product contains 18 gridded raster maps representing the attribute and its confidence limits across six standard soil depths, with a spatial resolution of approximately 90 meters. Data collection likely spans the period from approximately 1950 to 2021.
Version 2 of the Soil and Landscape Grid of Australia's modelled total soil nitrogen maps provides estimates across the continent at a 3 arc-second resolution. The product includes 24 raster maps covering six standard soil depths from 0-5 cm to 100-200 cm, each with upper and lower confidence limits and a measure of model extrapolation risk. Data collection spans approximately 1950 to 2021 and conforms to GlobalSoilMap specifications.
Australian Ocean Data Network hosts a review document on sequence stratigraphy concepts and their application to petroleum exploration and development in Australia. The document discusses the analysis of cyclic sedimentation patterns to predict stratal architecture and hydrocarbon systems. It highlights applications in the onshore Canning and offshore Carnarvon Basins.
Eight selected PAHs, including acenaphthene and pyrene, were present at an initial concentration of 4 g/kg soil. Tuomo A. Aunola of Tampere University conducted a laboratory-scale study combining modified Fenton's reaction with 30% H2O2 and aerobic biological treatment, achieving up to a 55% reduction in total PAHs. The soil was rich in iron at 16.4 g Fe/kg and had a pH of 5-6.
Australia-wide modelled estimates of soil depth across six standard soil layers, produced by the Soil and Landscape Grid of Australia. The dataset contains 18 gridded raster maps at a 3 arc-second resolution (~90 meters) and covers an approximate period from 1950 to 2021. It is released under a Creative Commons Attribution 4.0 license and adheres to GlobalSoilMap specifications.
A 34-day research cruise in early 1990 aimed to acquire 2500 km of multichannel seismic profiles, about 15 dredges, and up to 5 cores. The project by the Australian Ocean Data Network's Marine Division assesses the petroleum potential of Triassic and Jurassic carbonate reefs on Australia's Northwest Shelf. It maps known reef complexes on the Wombat Plateau and extends the analysis into the Canning Basin.
18 modelled raster maps estimate the Drained Upper Limit Volumetric Water Content of Australian soils at six standard depths from 0-200cm. The data has a spatial resolution of 3 arc seconds (~90 meters) and represents conditions from approximately 1950 to 2021. Produced by the Soil and Landscape Grid of Australia, the maps follow GlobalSoilMap specifications and are provided in Cloud Optimised GeoTIFF format.
Version 2 of the Soil and Landscape Grid of Australia's sand content product provides 18 raster maps estimating the mass fraction of sand across the continent. The maps cover six standard depths from 0-5 cm to 100-200 cm at a spatial resolution of 3 arc seconds (~90 meters). Data collection for this modelled estimate spans approximately the period from 1950 to 2021.
Several scenarios of a 3D petroleum systems model for the Vulcan Sub-basin were simulated using PetroMod 3D V.10 software. The modelling study, sourced from the Australian Ocean Data Network, confirms the timing of hydrocarbon generation and present-day maturity from prior work while incorporating new PhaseKinetic models for source rocks. Results include predictions for source rock transformation, bulk generation rates, and fluid compositions, highlighting areas of higher maturity and untested potential accumulations.
Dewi A. Ballard from the University of Leeds published data on the aggregation behavior of asphaltene fractions. The dataset includes small-angle neutron scattering (SANS) measurements of characteristic lengths and power-law exponents for interfacially active and remaining asphaltene nanoaggregates dispersed in deuterated toluene. The study compares results from whole asphaltenes extracted from heavy crude oil and bitumen.
The Gippsland Basin in southeastern Victoria is Australia's major crude oil and natural gas producing province. This report details cumulative production to the end of 1986, including 344.66 million cubic meters of oil and 66.14 billion cubic meters of sales gas, and lists discovered economic, subeconomic, and uneconomic petroleum accumulations. It was published by the Australian Ocean Data Network.
Geoscience Australia undertook a five-year multi-purpose basin analysis under the National CO2 Infrastructure Plan. The assessment integrated data from an airborne magnetic survey, two marine surveys, and geochemical analysis of oils, gases, and rocks, alongside 60 wells and extensive 2D/3D seismic data. Outputs include models and maps of depositional environments, petroleum systems, and play fairways to identify prospective CO2 storage sites with minimal conflict to hydrocarbon exploration.
Geoscience Australia's Organic Geochemistry Database provides petroleum geochemical and geological data from onshore and offshore Australian basins. The services offer up-to-date information on source rocks and derived fluids through visualizations of pyrolysis, organic petrology, and molecular analyses. This data supports petroleum systems analysis and economic assessment of hydrocarbon resources.
17 Paleozoic marine crude oil samples from the Canning Basin, Western Australia, analyzed for stable carbon (13C) and hydrogen (D) isotopic compositions of bulk, saturated, and aromatic hydrocarbons. The dataset, sourced via the Australian Ocean Data Network, compares these oils to other Australian and global marine oils to track isotopic changes throughout the Paleozoic era. The data has been used to refine the characterization of oil families and petroleum systems.
Soil macrofauna communities were evaluated in three semi-deciduous seasonal Atlantic Forest fragments with different disturbance levels in Londrina, Paraná, Brazil. Sampling was performed in August and December 2005 at three sites representing primary forest, intermediate regeneration, and initial regeneration stages. The data likely contains the abundance of 42 taxa, assessed using the standard Tropical Soil Biology and Fertility Programme methodology.