College of Science & Engineering
Sophia Love
- Doctor of Philosophy (Natural and Physical Sciences)
- sophie.love@jcu.edu.au
Elle Robertson
- Doctor of Philosophy (Agriculture, Environmental and Related Studies)
- elle.robertson@jcu.edu.au
Romain Vaucher
- Senior Lecturer, Sedimentology
- romain.vaucher@jcu.edu.au
Jenny Fisher
- Associate Dean, Learning and Teaching
- jenny.fisher@jcu.edu.au
Ambili Narayanan
- Doctor of Philosophy (Natural and Physical Sciences)
- ambili.narayanan@my.jcu.edu.au
Sarfaraz Ali
- Postdoctoral Research Fellow
- sarfaraz.ali@jcu.edu.au
Mikaeylah Davidson
- Postdoctoral Research Fellow
- mikaeylah.davidson@jcu.edu.au
Liuxin Chen
- Lecturer
- liuxin.chen@jcu.edu.au
Rafael Cabral Carvalho
- Lecturer, Marine Geoscience
- rafael.cabralcarvalho@jcu.edu.au
Tom Lloyd
- Postdoctoral Research Fellow, Global Ecosystems
- tom.lloyd@jcu.edu.au
Development of Customised Hospital Waste Processing Technology (Old ID 26326)
Phase 1 aims to use microwave pyrolysis technology to process a mix medical waste supplied by Medafield Pty Ltd, and study the pyrolysis conditions and resulting byproducts (syngas, bio-oil and biochar) material analysis using the different analytical tools. Phase 2 of this project will focus on the optimisation of the material properties especially to increase the value of the byproducts of particular interest. We will also undertake the biological characterisation of the samples to better understand the hazardous nature of the syngas and the biochar.
Monitoring of avian influenza in samples collected from aquatic birds in North Queensland (Old ID 27162)
At least 576 fresh faecal samples from wild ducks and magpie geese will be collected as environmental samples in the Townsville region. Swabs in transport media and immediately transported to the laboratory. Samples will be pooled and nucleic acid extracted. The extracted nucleic acid will be screened using assays based on TaqMan that will detect avian influenza. Pools that react will be individually extracted and tested. Avian influenza isolates will be checked using TaqMan specific for H5 and H7. Should the samples react in these assays it will be sent to AAHL for further testing and the CVO will be notified. Sequencing on all isolates other than those reacting in H5 and H7 will be carried out to determine genotype and to confirm pathotype.
ARC Research Hub for Supercharging Tropical Aquaculture Through Genetic Solutions (Old ID 27374)
This project aims to integrate cutting edge genetic and genomic approaches into innovative aquaculture enterprises that farm in tropical northern Australia. It will deliver the requisite genetic knowledge to instigate world-leading and highly productive breeding programs for five species (barramundi, pearl oyster, prawn, grouper and marine seaweed), along with a novel understanding of the genetic basis of disease resistance and how the production environment interfaces with the bacterial microbiome, pathogens and water quality to cause disease. It will increase Australia's capacity to deliver advanced genetics outcomes to the aquaculture sector, while increasing productivity, international competitiveness, and lowered risk due to disease.
ARC Research Hub for Supercharging Tropical Aquaculture Through Genetic Solutions (Old ID 27374)
This project aims to integrate cutting edge genetic and genomic approaches into innovative aquaculture enterprises that farm in tropical northern Australia. It will deliver the requisite genetic knowledge to instigate world-leading and highly productive breeding programs for five species (barramundi, pearl oyster, prawn, grouper and marine seaweed), along with a novel understanding of the genetic basis of disease resistance and how the production environment interfaces with the bacterial microbiome, pathogens and water quality to cause disease. It will increase Australia's capacity to deliver advanced genetics outcomes to the aquaculture sector, while increasing productivity, international competitiveness, and lowered risk due to disease.
ARC Research Hub for Supercharging Tropical Aquaculture Through Genetic Solutions (Old ID 27374)
This project aims to integrate cutting edge genetic and genomic approaches into innovative aquaculture enterprises that farm in tropical northern Australia. It will deliver the requisite genetic knowledge to instigate world-leading and highly productive breeding programs for five species (barramundi, pearl oyster, prawn, grouper and marine seaweed), along with a novel understanding of the genetic basis of disease resistance and how the production environment interfaces with the bacterial microbiome, pathogens and water quality to cause disease. It will increase Australia's capacity to deliver advanced genetics outcomes to the aquaculture sector, while increasing productivity, international competitiveness, and lowered risk due to disease.
ARC Research Hub for Supercharging Tropical Aquaculture Through Genetic Solutions (Old ID 27374)
This project aims to integrate cutting edge genetic and genomic approaches into innovative aquaculture enterprises that farm in tropical northern Australia. It will deliver the requisite genetic knowledge to instigate world-leading and highly productive breeding programs for five species (barramundi, pearl oyster, prawn, grouper and marine seaweed), along with a novel understanding of the genetic basis of disease resistance and how the production environment interfaces with the bacterial microbiome, pathogens and water quality to cause disease. It will increase Australia's capacity to deliver advanced genetics outcomes to the aquaculture sector, while increasing productivity, international competitiveness, and lowered risk due to disease.
ARC Research Hub for Supercharging Tropical Aquaculture Through Genetic Solutions (Old ID 27374)
This project aims to integrate cutting edge genetic and genomic approaches into innovative aquaculture enterprises that farm in tropical northern Australia. It will deliver the requisite genetic knowledge to instigate world-leading and highly productive breeding programs for five species (barramundi, pearl oyster, prawn, grouper and marine seaweed), along with a novel understanding of the genetic basis of disease resistance and how the production environment interfaces with the bacterial microbiome, pathogens and water quality to cause disease. It will increase Australia's capacity to deliver advanced genetics outcomes to the aquaculture sector, while increasing productivity, international competitiveness, and lowered risk due to disease.
Population connectivity in the Kuranda Tree frog (Litoria myola) (Old ID 22198)
The critically endangered Kuranda Tree frog (Litoria myola) occurs only in a small distribution near Kuranda. This population is divided into 13 known breeding sites (subpopulations). Connectivity between these subpopulations is not known; therefore I will use genetic analysis to gain insight into both historical and current connectivity. Knowledge of population connectivity is of great importance for management, as it will help focus conservation efforts. This study will provide information on genetic distinctness of subpopulations, potential for natural recolonization if subpopulations decline or disappear, and where individuals should be sourced from if managers wanted to reintroduce the species to a site.
Population connectivity in the Kuranda Tree frog (Litoria myola) (Old ID 22198)
The critically endangered Kuranda Tree frog (Litoria myola) occurs only in a small distribution near Kuranda. This population is divided into 13 known breeding sites (subpopulations). Connectivity between these subpopulations is not known; therefore I will use genetic analysis to gain insight into both historical and current connectivity. Knowledge of population connectivity is of great importance for management, as it will help focus conservation efforts. This study will provide information on genetic distinctness of subpopulations, potential for natural recolonization if subpopulations decline or disappear, and where individuals should be sourced from if managers wanted to reintroduce the species to a site.
Fire and Environmental Change in Northern Australia during the Late Holocene (Old ID 23372)
This project addresses the lack of palaeoenvironmental and palaeofire records available for northern Australia. I will analyse both micro-(<125µm) and macroscopic (>125µm) charcoal from sediment cores collected from lacustrine sites in Cape York and Arnhem Land. I will also analyse modern charcoal collected in fire traps placed during fieldwork to create a modern analogue. Collaboration with AINSE/ANSTO will result in a high-resolution chronology for each site, with implications for the wider region.
Cetacean bycatch in Indian Ocean tuna gillnet fisheries
- 2020
- Inter-Research
- Researchers:Putu Mustika
Start Date:
01 Jan 2023
Title:
Sefunda AG consultancy
Start Date:
01 Jan 2021
End Date:
01 Jan 2022
Start Date:
01 Jan 2019
End Date:
01 Jan 2024
Start Date:
01 Jan 2020
Start Date:
01 Jan 2022
Start Date:
01 Jan 2013
Start Date:
01 Jan 2018
Start Date:
01 Jan 2022
Start Date:
01 Jan 2023
Start Date:
01 Jan 2010
