Inter-sectoral economic linkages in the Australian mining industry: Analysis using partial hypothetical extraction method

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-11-21 DOI:10.1111/1467-8489.12544
Fitsum S. Weldegiorgis, Evelyn Dietsche, Shabbir Ahmad, Daniel M. Franks, James Cust
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Abstract

The mining industry is not only one of Australia's main economic sectors but also one that the country is considered to have managed well. However, little is known about the industry's potential to contribute to the structural change of Australia's economy. We use the national input–output (IO) tables and apply the partial hypothetical extraction method (P-HEM) within both the Leontief and Gosh IO frameworks to examine the inter-sectoral linkages of the Australian mining and quarrying sector. Ee find that this sector demonstrates strong backward linkages (BL), but forward linkages (FL) appear to be weak, and they mainly involve non-metallic materials. The mining and quarrying sector appears to generate linkages with the business services sector and the construction sector, which can potentially contribute to diversifying the economy. Such linkages may be realised via skilling and reallocating skilled labour and technical supplier capacity as well as via developing physical infrastructure that supports existing and new economic sectors. We find that the identified linkage pathways via the construction sector are tied to energy-intensive but coal-dependent sectors. Thus, these pathways are vulnerable because of the climate-related need to move away from combusting coal and invest in cleaner sources of energy.

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澳大利亚采矿业的部门间经济联系:使用部分假设开采法进行分析
采矿业不仅是澳大利亚的主要经济部门之一,也是该国被认为管理良好的部门之一。然而,人们对该行业促进澳大利亚经济结构变化的潜力知之甚少。我们利用国家投入产出(IO)表,并在 Leontief 和 Gosh IO 框架内应用部分假设提取法(P-HEM),研究了澳大利亚采矿和采石业的部门间联系。我们发现,该部门的后向联系(BL)很强,但前向联系(FL)似乎很弱,而且主要涉及非金属材料。采矿和采石业似乎能与商业服务业和建筑业产生联系,从而为经济多样化做出潜在贡献。这种联系可以通过技能培训、重新分配熟练劳动力和技术供应商能力以及发展支持现有和新经济部门的有形基础设施来实现。我们发现,已确定的通过建筑部门建立联系的途径与能源密集型但依赖煤炭的部门息息相关。因此,这些联系途径很脆弱,因为与气候相关的需求需要摆脱煤炭燃烧,投资于更清洁的能源。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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