Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0668536
Funder
Australian Research Council
Funding Amount
$485,000.00
Summary
Western Australian Facility for High Throughput Biological and Organic Gas Chromatography-Mass Spectrometry. Disciplines such as pharmaceuticals, plant protection, mineral extraction, and conservation all need to separate, identify and quantify molecules. The method of choice for small molecules (< 500 amu) is gas chromatography and mass spectrometry (GC-MS). A broad range of laboratories in WA are using GC-MS, but the equipment is fully utilised, outdated and limiting progress. This applicatio ....Western Australian Facility for High Throughput Biological and Organic Gas Chromatography-Mass Spectrometry. Disciplines such as pharmaceuticals, plant protection, mineral extraction, and conservation all need to separate, identify and quantify molecules. The method of choice for small molecules (< 500 amu) is gas chromatography and mass spectrometry (GC-MS). A broad range of laboratories in WA are using GC-MS, but the equipment is fully utilised, outdated and limiting progress. This application seeks to purchase research grade GC-MS equipment with order-of-magnitude improvements in mass range, sample throughput, discrimination and data handling capacities. This equipment will transform capabilities and will enhance projects supporting the minerals and agricultural industries and enhance biodiversity conservation efforts.Read moreRead less
Linking modern biolipids and pigments to ancient biomolecules using innovative laser and hydro pyrolysis and compound specific stable isotope techniques. This project will help scientists understand recent and past climate changes and in turn will improve our ability to forecast future climate change and help Australia manage current threats to biodiversity. Furthermore, this research involving analyses of discrete trace hydrocarbon materials will increase the ability to identify crude oil sourc ....Linking modern biolipids and pigments to ancient biomolecules using innovative laser and hydro pyrolysis and compound specific stable isotope techniques. This project will help scientists understand recent and past climate changes and in turn will improve our ability to forecast future climate change and help Australia manage current threats to biodiversity. Furthermore, this research involving analyses of discrete trace hydrocarbon materials will increase the ability to identify crude oil sources, to the benefit of petroleum exploration in Australia and world-wide. Importantly, this project will enable students and young researchers to be trained in state-of-the-art technologies, leading to quality scientists ready for employment in geoscience industries, and raising the profile of science careers in Australia.Read moreRead less
Geology and geochemistry of Permian and Triassic sediments in Perth Basin for exploration of petroleum in WA. A mutlidisciplinery approach using molecular organic geochemical analyses combined with geological information will innovatively contribute to a coherent portrayal of the decline, collapse and subsequent recovery of biological species at the Permian/Triassic extinction event in Western Australia and other parts of the world. The proposed study will particulary focus on environmental ch ....Geology and geochemistry of Permian and Triassic sediments in Perth Basin for exploration of petroleum in WA. A mutlidisciplinery approach using molecular organic geochemical analyses combined with geological information will innovatively contribute to a coherent portrayal of the decline, collapse and subsequent recovery of biological species at the Permian/Triassic extinction event in Western Australia and other parts of the world. The proposed study will particulary focus on environmental changes closely related to deposition of petroleum source rocks globally but also focussing on the Perth Basin of the Triassic. This information will then be used to better identify rocks in Australia offering good sources of petroleum.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0347945
Funder
Australian Research Council
Funding Amount
$182,000.00
Summary
Extension to Stable Isotope Facility: Elemental Analyser and GC-GC Preparative Systems. To carry out compound specific stable isotope analysis, compounds need to be resolved by GC, and with samples such as petroleum, this is uncommon. We therefore seek to explore GC-GC as a novel additional preparative system in isotope ratio mass spectrometry. Within our new State Centre of Excellence we will be confronted with samples such as soils, sediments, and natural organic matter which require examinati ....Extension to Stable Isotope Facility: Elemental Analyser and GC-GC Preparative Systems. To carry out compound specific stable isotope analysis, compounds need to be resolved by GC, and with samples such as petroleum, this is uncommon. We therefore seek to explore GC-GC as a novel additional preparative system in isotope ratio mass spectrometry. Within our new State Centre of Excellence we will be confronted with samples such as soils, sediments, and natural organic matter which require examination by bulk isotope analysis. If equipped with a customised elemental analyser as an inlet system, both our existing mass analysers will be capable of measuring carbon, hydrogen, nitrogen, oxygen and sulphur isotope values of whole samples.Read moreRead less
Stable Carbon and Hydrogen Isotope Signatures of Chemical Fossils to Infer Palaeoenvironmental Change. Aims are to selectively measure the stable carbon and hydrogen isotopic composition of individual chemical fossils (biomarkers) in sediments and petroleum. Biomarkers are derived from biochemicals in algae, bacteria and higher plants and their isotopic compositions reflects important information about the climate and environment under which the precursor organisms lived. Periods of palaeoenvir ....Stable Carbon and Hydrogen Isotope Signatures of Chemical Fossils to Infer Palaeoenvironmental Change. Aims are to selectively measure the stable carbon and hydrogen isotopic composition of individual chemical fossils (biomarkers) in sediments and petroleum. Biomarkers are derived from biochemicals in algae, bacteria and higher plants and their isotopic compositions reflects important information about the climate and environment under which the precursor organisms lived. Periods of palaeoenvironmental change will be established through the varied stable isotope compositions of certain biomarkers within samples sectioned from sediment profiles of different age. This information will then be used to better identify rocks in Australia offering good sources of petroleum.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0668452
Funder
Australian Research Council
Funding Amount
$290,000.00
Summary
A research grade liquid chromatograph - mass spectrometer for quantitative analysis of trace organic analytes in complex matrices. The ARC has provided matching funding of $300K to a consortium of Australian universities, CSIRO, CRCs, water utilities and other research centres for an investment in a modern system for measurement of organic species in complex mixtures. The system, called a liquid chromatograph-mass spectrometer, has application in environmental studies of soils, sediments and nat ....A research grade liquid chromatograph - mass spectrometer for quantitative analysis of trace organic analytes in complex matrices. The ARC has provided matching funding of $300K to a consortium of Australian universities, CSIRO, CRCs, water utilities and other research centres for an investment in a modern system for measurement of organic species in complex mixtures. The system, called a liquid chromatograph-mass spectrometer, has application in environmental studies of soils, sediments and natural waters; in control of quality of potable water supplies; studies of natural products and plant extracts; and in studies related to petroleum exploration, production, and environmental issues. Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0561166
Funder
Australian Research Council
Funding Amount
$193,876.00
Summary
Facility for analysis of organic micropollutants in natural, recreational, and potable water systems. Certain organic components of natural and potable waters are a major concern for water utilities and public health authorities. Investment in the analytical technology proposed here will enable the full range of target compounds to be addressed in a holistic manner to support research students and projects at three WA universities. As well as the usual modes of international transfer of research ....Facility for analysis of organic micropollutants in natural, recreational, and potable water systems. Certain organic components of natural and potable waters are a major concern for water utilities and public health authorities. Investment in the analytical technology proposed here will enable the full range of target compounds to be addressed in a holistic manner to support research students and projects at three WA universities. As well as the usual modes of international transfer of research outcomes, the links between the State Centre of Excellence for Applied Organic Geochemistry (CAOG), the three Universities, the Water Corporation of WA, the Measurement Program of the CRCWQT and CSIRO will facilitate technology transfer to relevant practitioners around Australia.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0775650
Funder
Australian Research Council
Funding Amount
$170,000.00
Summary
Advanced multi-purpose analytical pyrolysis facility. Investment by the ARC, two WA universities, a government research agency, a CRC (and idirectly by a water utility) demonstrate the national need for this analytical facility and the broad commitment to maintain Australia's reputation in the field of analytical pyrolysis. An innovative laser micropyrolysis facility will be concurrently used with a recent commercially available unit to support research of present day and palaeo-environmental o ....Advanced multi-purpose analytical pyrolysis facility. Investment by the ARC, two WA universities, a government research agency, a CRC (and idirectly by a water utility) demonstrate the national need for this analytical facility and the broad commitment to maintain Australia's reputation in the field of analytical pyrolysis. An innovative laser micropyrolysis facility will be concurrently used with a recent commercially available unit to support research of present day and palaeo-environmental occurrences of OM, directly assisting an eclectic range of research activities including environmental protection and petroleum exploration. This facility will also aid the chemical fingerprinting of minute forensic evidence, ultimately helping to convict perpetrators of crime.
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Novel approaches to the forensic identification of human remains: integration of studies of bone form and chemistry. In a global era of terrorism, crime and even natural disasters, new approaches to identify victims, and prosecute offenders, are greatly required and long overdue. The combination of new computer and chemical methods will help identify unknowns, reconstruct missing parts and separate commingled remains. Its affect on understanding bones may be like that of DNA on soft tissues. The ....Novel approaches to the forensic identification of human remains: integration of studies of bone form and chemistry. In a global era of terrorism, crime and even natural disasters, new approaches to identify victims, and prosecute offenders, are greatly required and long overdue. The combination of new computer and chemical methods will help identify unknowns, reconstruct missing parts and separate commingled remains. Its affect on understanding bones may be like that of DNA on soft tissues. The results will update our ability as forensic scientists to strengthen Australian security systems by improving our ability to manage accidents, disasters, terrorism and crime. This project will start international collaborations and train a new generation of Australian forensic experts.Read moreRead less
Chemostat experiments to mimic toxic environments associated with mass extinction events. This project will help scientists understand past climate changes and understand the mechanisms of global warming. This in turn will improve our ability to forecast future climate change, and help Australia manage current threats to its biodiversity. Importantly, this project will enable students and young professionals to be trained in state-of-the-art technologies, leading to quality scientists ready for ....Chemostat experiments to mimic toxic environments associated with mass extinction events. This project will help scientists understand past climate changes and understand the mechanisms of global warming. This in turn will improve our ability to forecast future climate change, and help Australia manage current threats to its biodiversity. Importantly, this project will enable students and young professionals to be trained in state-of-the-art technologies, leading to quality scientists ready for employment in geoscience industries, and raising the profile of science careers in Australia.Read moreRead less