Linkage Infrastructure, Equipment And Facilities - Grant ID: LE240100092
Funder
Australian Research Council
Funding Amount
$1,100,000.00
Summary
Quantum microscopy facility for ultrasensitive nanoscale magnetic imaging. Investigations of 2D and van der Waals materials, biological samples, energy materials, and quantum devices on the nano- and microscale are revolutionising medicine, communications, information technology, energy production and storage by virtue of new phenomena. The new quantum microscopy facility will enable state-of-the-art capabilities in mapping chemical, magnetic, optical, electronic, and spectral properties, provid ....Quantum microscopy facility for ultrasensitive nanoscale magnetic imaging. Investigations of 2D and van der Waals materials, biological samples, energy materials, and quantum devices on the nano- and microscale are revolutionising medicine, communications, information technology, energy production and storage by virtue of new phenomena. The new quantum microscopy facility will enable state-of-the-art capabilities in mapping chemical, magnetic, optical, electronic, and spectral properties, providing cutting-edge tools that will enable breakthroughs in both existing and future multi-disciplinary projects in photonics, quantum devices, nanomaterials, nanoelectronics, biotechnology, and energy technology as key drivers of the new economy in Australia.Read moreRead less
New Directions in Silicon Solar Cell Technology. The fabrication of pure silicon is energy intensive, but solar cells can return 10 times more energy than is used to fabricate them. By investing in the development of silicon solar cells, Australia will develop a technology capable of encapsulating its vast coal resources within pure silicon. This has the potential to create an export market of clean energy and have an explosive effect on the growth of the local industry and skilled jobs.
Th ....New Directions in Silicon Solar Cell Technology. The fabrication of pure silicon is energy intensive, but solar cells can return 10 times more energy than is used to fabricate them. By investing in the development of silicon solar cells, Australia will develop a technology capable of encapsulating its vast coal resources within pure silicon. This has the potential to create an export market of clean energy and have an explosive effect on the growth of the local industry and skilled jobs.
This project will bolster the already prominent position of Australia in the field of photovoltaic solar energy by establishing collaborations with the top international organisations in the field. It will also coordinate efforts with all the main university research groups in the country. Read moreRead less
Photonic structures for high efficiency, low cost solar cells. Photovoltaics is a non-polluting, environmentally sustainable way of converting sunlight directly to electricity. The reduction of cost is the most important issue in photovoltaic solar energy conversion. This project will lead to the development of solar cell structures and techniques that have the potential to significantly reduce the cost of thin film solar cells, which are the major contender for the lowest cost photovoltaic te ....Photonic structures for high efficiency, low cost solar cells. Photovoltaics is a non-polluting, environmentally sustainable way of converting sunlight directly to electricity. The reduction of cost is the most important issue in photovoltaic solar energy conversion. This project will lead to the development of solar cell structures and techniques that have the potential to significantly reduce the cost of thin film solar cells, which are the major contender for the lowest cost photovoltaic technology. If the cost of photovoltaics was sufficiently reduced it could have a major impact on reducing greenhouse gas emissions and pollution in Australia.Read moreRead less
Overcoming performance limitations in multicrystalline silicon solar cells. This project aims to address the major impediments to improved efficiency of multicrystalline silicon solar cells, the most prevalent in industry today. Three key areas have been identified: understanding the fundamental source of carrier recombination in this material, the application of plasma silicon nitride to reducing this recombination, and developing a suitable technique for texturing the front surface of the cell ....Overcoming performance limitations in multicrystalline silicon solar cells. This project aims to address the major impediments to improved efficiency of multicrystalline silicon solar cells, the most prevalent in industry today. Three key areas have been identified: understanding the fundamental source of carrier recombination in this material, the application of plasma silicon nitride to reducing this recombination, and developing a suitable technique for texturing the front surface of the cells. By using novel, advanced techniques to gain a deeper physical understanding of these issues, it will be possible to develop new, cost-effective processes that improve efficiency and are applicable in industry.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0882262
Funder
Australian Research Council
Funding Amount
$135,000.00
Summary
Photoluminescence imaging equipment for advanced silicon materials and solar cells. As the search for carbon-neutral sources of electricity intensifies during this century, an early lead in key technologies will be of great importance. Photovoltaics, in which Australian research is world-class, is clearly one such technology. The proposed equipment would enable Australia to maintain and extend its leading role in the development of silicon photovoltaics. As a result, it will help Australia take ....Photoluminescence imaging equipment for advanced silicon materials and solar cells. As the search for carbon-neutral sources of electricity intensifies during this century, an early lead in key technologies will be of great importance. Photovoltaics, in which Australian research is world-class, is clearly one such technology. The proposed equipment would enable Australia to maintain and extend its leading role in the development of silicon photovoltaics. As a result, it will help Australia take advantage of the growing global boom in solar energy. The proposal is likely to generate commercially valuable outcomes, as well as scientific knowledge of intrinsic value. It will also increase support for Australia's existing photovoltaic industry.Read moreRead less
Lifetime spectroscopy of impurities in silicon solar cells. This project aims to apply recently developed experimental techniques to the important problem of characterising impurities in silicon, with a strong focus on solar cell applications. These new spectroscopic techniques, which are based on carrier lifetime measurements, are more sensitive and less ambiguous than most existing methods. The results will have important implications for solar cell technologies in two independent ways - first ....Lifetime spectroscopy of impurities in silicon solar cells. This project aims to apply recently developed experimental techniques to the important problem of characterising impurities in silicon, with a strong focus on solar cell applications. These new spectroscopic techniques, which are based on carrier lifetime measurements, are more sensitive and less ambiguous than most existing methods. The results will have important implications for solar cell technologies in two independent ways - firstly, by allowing accurate diagnosis of the performance-limiting impurities in standard silicon solar cells - and secondly, by identifying particular impurities which could boost cell performance beyond the conventional limit through the impurity photovoltaic effect.Read moreRead less
Spray-on Hydrogenated Films for Solar Cells. A successful project will contribute to a reduction in the cost of photovoltaic solar energy. This goal might be reached directly, via the development of spray-on hydrogenated films, or indirectly, through an improved knowledge of hydrogen passivation. Either way, the project will provide Australian Partner Investigator, Spark Solar, with a manufacturing edge over its global competitors. In so doing, it will support the burgeoning photovoltaic industr ....Spray-on Hydrogenated Films for Solar Cells. A successful project will contribute to a reduction in the cost of photovoltaic solar energy. This goal might be reached directly, via the development of spray-on hydrogenated films, or indirectly, through an improved knowledge of hydrogen passivation. Either way, the project will provide Australian Partner Investigator, Spark Solar, with a manufacturing edge over its global competitors. In so doing, it will support the burgeoning photovoltaic industry in Australia, providing jobs in manufacturing and research, and increasing the viability of photovoltaic energy as an alternative to fossil fuels. The project will also help keep Australia at the forefront of advances in photovoltaics and semiconductors.Read moreRead less
Can Sawfish Bycatch Within The NPF Be Mitigated Using An Electric Field?
Funder
Fisheries Research and Development Corporation
Funding Amount
$113,468.11
Summary
The Northern Prawn Fishery (NPF) is the largest Australian prawn fishery and the most valuable Commonwealth managed fishery. Annual gross value of production of the fishery was valued at $115.2 million in 2014. In recent decades, the incidental take of bycatch species has become an important issue in trawl fisheries worldwide. Impacts of fishing activities on the marine environment, including bycatch interactions are heavily scrutinised by organisations assessing the sustainability of fisheries ....The Northern Prawn Fishery (NPF) is the largest Australian prawn fishery and the most valuable Commonwealth managed fishery. Annual gross value of production of the fishery was valued at $115.2 million in 2014. In recent decades, the incidental take of bycatch species has become an important issue in trawl fisheries worldwide. Impacts of fishing activities on the marine environment, including bycatch interactions are heavily scrutinised by organisations assessing the sustainability of fisheries such as the MSC. Various Threatened, Endangered and Protected (TEP) species are still regularly caught by the fishery, including sawfishes. All four sawfish species caught within the NPF are listed on the Convention on International Trade in Endangered Species (CITES) Appendix I and the Convention of Migratory Species (CMS) Appendices I & II. Within Australia, three species are listed as Vulnerable, and all four species are listed as Migratory on the EPBC Act 1999.
Sawfishes are among the most threatened family of marine fishes and the most threatened family of cartilaginous fishes (Dulvy et al 2014). Incidental capture, particularly in trawls and gillnets, is the primary threat to sawfishes (Harrison and Duly 2014). Based on a risk assessment of the bycatch species in the NPF, all sawfishes have been identified as ‘at risk’ to trawling and least likely to be sustainable from prawn trawl fishing. A bycatch sustainability assessment also showed little change in catches of sawfishes as a result of the introduction of TEDs into the commercial fleet. The threatened status of sawfishes, vulnerability to fisheries, ongoing catches, and the inefficiency of current bycatch reduction devices to reduce sawfish bycatch suggest an urgent need for the development of new bycatch reduction devices to minimise interactions with fishing gear. This will also have the benefit of improving crew safety on the vessels as the removal of sawfish entangled in the nets is quite dangerous.
Objectives: 1. Assess whether sawfish behaviourally respond to electric fields as measured by reaction from a stationary position 2. Compare sawfish behavioural response across three fields of different characteristics Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0561240
Funder
Australian Research Council
Funding Amount
$121,510.00
Summary
Combined reactor for the plasma-enhanced chemical vapour deposition (PECVD) of amorphous layers of silicon, silicon nitride and silicon oxide, and for Reactive Ion Etching. Our small, but very productive group (up to 30 publications per Discovery grant) has reached critical mass (8 people), and the acquisition of essential infrastructure is peremptory. Without the proposed plasma reactor our strong international impact (10 papers, one invited, at the 2003 world conference on photovoltaics) will ....Combined reactor for the plasma-enhanced chemical vapour deposition (PECVD) of amorphous layers of silicon, silicon nitride and silicon oxide, and for Reactive Ion Etching. Our small, but very productive group (up to 30 publications per Discovery grant) has reached critical mass (8 people), and the acquisition of essential infrastructure is peremptory. Without the proposed plasma reactor our strong international impact (10 papers, one invited, at the 2003 world conference on photovoltaics) will wane. This machine permits to deposit thin layers of silicon nitride and amorphous silicon and is a versatile tool for investigating silicon materials for photovoltaics and microelectronics. Such reactors have become an essential tool for silicon solar cell work. Most laboratories across the world have at least one, including UNSW, but access to the latter is impractical.Read moreRead less
Electronic On Board Monitoring Pilot Project For The Eastern Tuna And Billfish Fishery
Funder
Fisheries Research and Development Corporation
Funding Amount
$579,431.00
Summary
ETBF Pilot Progect In 2007, an AFMA commissioned cost benefit study and business case showed reduced costs if electronic monitoring technologies were adopted in several Commonwealth fisheries. However, there is considerable uncertainty regarding the extent to which onboard observer coverage can be replaced in the ETBF and the costs involved in intergrating electronic monitoring into AFMA management practices. This pilot project will collect suffiecient information to enable an in-depth cost ....ETBF Pilot Progect In 2007, an AFMA commissioned cost benefit study and business case showed reduced costs if electronic monitoring technologies were adopted in several Commonwealth fisheries. However, there is considerable uncertainty regarding the extent to which onboard observer coverage can be replaced in the ETBF and the costs involved in intergrating electronic monitoring into AFMA management practices. This pilot project will collect suffiecient information to enable an in-depth cost benefit analysis of future monitoring options. It will resolve the uncertainty surrounding the utility of electronic monitoring technologies in the ETBF and the costs associated with integrating an electronic monitoring program within AFMA.
In addition to the time and cost savings from reduced onboard observer requirements, there are also potential efficiencies for both industry and AFMA from the use of electronic monitoring reporting. Some of these efficiencies include; 1. better understanding of fishing effort, 2. better understanding and management of fishing operations, and 3. increased data accuracy (resulting in more responsive fisheries management).
Pilbara Trawl Fishery Pilot Project Monitoring of remote small vessel fisheries in Australia is often difficult and always costly. Travel costs, observer wages, and operational inefficiencies and restrictions of small vessels in accommodating on-board observers are all factors which act to restrict monitoring coverage while still incurring a relatively high cost to industry. With the a growing need for accurate catch and effort data and the high costs and operational restrictions of using human observers there is a subsequent need to find a cost-effective alternative that will not only improve coverage levels but also reduce costs. Objectives: 1. To deploy electronic monitoring systems on ten commercial fishing vessels in the ETBF and maintain their continuous operation for a period of up to one year. 2. To evaluate the efficacy of electronic monitoring for a number of fishery monitoring issues. 3. To develop an audit-based approach to electronic monitoring data analysis for evaluating fisher logbook data quality. 4. To undertake a cost and benefit analysis of monitoring options and programs required to meet the fisheries data needs. 5. To develop and evaluate the feasibility of establishing a third party service delivery structure with Archipelago Marine Research Ltd. for an ongoing electronic monitoring program in the ETBF. 6. To assess the feasibility of electronic monitoring systems to provide better fishery monitoring outcomes, their future capacity and applications in the Pilbara Trawl Fishery and other fisheries. Read moreRead less