Academic literature on the topic 'Waste minimization Australia'

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Journal articles on the topic "Waste minimization Australia"

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Langston, Craig, and Weiwei Zhang. "DfMA: Towards an Integrated Strategy for a More Productive and Sustainable Construction Industry in Australia." Sustainability 13, no. 16 (August 17, 2021): 9219. http://dx.doi.org/10.3390/su13169219.

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Design for manufacture and assembly (DfMA) is an important part of the future of the construction industry due to the promise of speed of project delivery, quality control, worker safety, and waste minimization onsite via the purposeful design for manufacture and assembly offsite. However, the adoption of DfMA in Australia has been slow. This paper investigates the barriers prohibiting widespread uptake and how digital construction will be a catalyst for improving use on commercial-scale projects. A total of six leading experts were interviewed to elicit their opinions, and seven recent case studies of high-rise modular apartment and hotel buildings constructed by Hickory were cross-referenced as evidence of DfMA capability. The experts suggested that the reasons for slow adoption in Australia were community mindset, government regulations and incentives, planning and building codes, unionization and business politics, finance, and supply chain management. The case studies suggest that compatible building type and transportation distance are also factors. These barriers can be addressed by the clever integration of building information modelling tools with lean construction processes as part of a proposed strategy leading to smarter (more productive) and better (more sustainable) outcomes predicated on growth in digital construction practices. The paper concludes with a proposed framework for change that conceptualizes the ‘ecosystem’ needed to support widespread DfMA in the Australian context, including the paradigm shift from building to manufacturing/assembly, the displacement of workers from onsite to offsite activity, and the expansion of interdisciplinary design and construct collaboration.
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Hossain, Nazia, Sabzoi Nizamuddin, Gregory Griffin, Periasamy Selvakannan, Nabisab Mujawar Mubarak, and Teuku Meurah Indra Mahlia. "Synthesis and characterization of rice husk biochar via hydrothermal carbonization for wastewater treatment and biofuel production." Scientific Reports 10, no. 1 (November 2, 2020). http://dx.doi.org/10.1038/s41598-020-75936-3.

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Abstract The recent implication of circular economy in Australia spurred the demand for waste material utilization for value-added product generations on a commercial scale. Therefore, this experimental study emphasized on agricultural waste biomass, rice husk (RH) as potential feedstock to produce valuable products. Rice husk biochar (RB) was obtained at temperature: 180 °C, pressure: 70 bar, reaction time: 20 min with water via hydrothermal carbonization (HTC), and the obtained biochar yield was 57.9%. Enhancement of zeta potential value from − 30.1 to − 10.6 mV in RB presented the higher suspension stability, and improvement of surface area and porosity in RB demonstrated the wastewater adsorption capacity. Along with that, an increase of crystallinity in RB, 60.5%, also indicates the enhancement of the catalytic performance of the material significantly more favorable to improve the adsorption efficiency of transitional compounds. In contrast, an increase of the atomic O/C ratio in RB, 0.51 delineated high breakdown of the cellulosic component, which is favorable for biofuel purpose. 13.98% SiO2 reduction in RB confirmed ash content minimization and better quality of fuel properties. Therefore, the rice husk biochar through HTC can be considered a suitable material for further application to treat wastewater and generate bioenergy.
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Dissertations / Theses on the topic "Waste minimization Australia"

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Arbuckle, Trevor James. "Reduce, reuse, recycle or regulate : the national packaging covenant and its application to the fruit and vegetable industry in Western Australia /." Access via Murdoch University Digital Theses Project, 2004. http://wwwlib.murdoch.edu.au/adt/browse/view/adt-MU20050505.135542.

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Larwood, Andrew John. "Cleaner production : promoting and achieving it in the South Australian foundry industry." Title page, table of contents and abstract only, 2000. http://web4.library.adelaide.edu.au/theses/09ENV/09envl336.pdf.

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Bibliography: leaves 123-130. The literature search and the findings from the investigation have been used to provide recommendations for a sector specific cooperative approach using regulation, self-regulation, voluntary agreements, economic incentatives and educational/information strategies to promote and acheive cleaner production in the South Australian foundry industry.
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Books on the topic "Waste minimization Australia"

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Scott, J. Ashley (John Ashley), Pagan, Robert J. (Robert Jack), and Australian Cleaner Production Association Inc, eds. Global competitiveness through cleaner production: Proceedings of the 2nd Asia Pacific Cleaner Production Roundtable, 21-23 April 1999, Brisbane, Australia. Brisbane, Qld: Australian Cleaner Production Association Inc., 1999.

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2

Australia. Waste disposal: A report from the Senate Standing Committee on Environment, Recreation and the Arts (Parliamentary paper / Parliament of the Commonwealth of Australia). Parliament of the Commonwealth of Australia, 1994.

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