Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption

With the world’s consensus on low-carbon emission reduction, all walks of life have formulated low-carbon development goals. As a high-energy consumption industry, it is urgent for mining industry to implement the development strategy of low-carbon emission reduction. Therefore, this study tries to...

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Main Authors: Lili Wei, Guangyu Jia, Xiaohui Xu, Lingyun Zhao
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2022/5143501
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author Lili Wei
Guangyu Jia
Xiaohui Xu
Lingyun Zhao
author_facet Lili Wei
Guangyu Jia
Xiaohui Xu
Lingyun Zhao
author_sort Lili Wei
collection DOAJ
description With the world’s consensus on low-carbon emission reduction, all walks of life have formulated low-carbon development goals. As a high-energy consumption industry, it is urgent for mining industry to implement the development strategy of low-carbon emission reduction. Therefore, this study tries to provide reasonable suggestions and references for the low-carbon development of the mining industry. Firstly, this study analyzes the industry development, energy consumption, and carbon emission of mining industry from 2000 to 2020. Then, using the Tapio theory, this study constructs the analysis model of decoupling between carbon emission of mining industry and industry growth. The analysis method of decoupling state assignment is proposed for the first time in the model. At the same time, the energy efficiency decoupling index and energy structure decoupling index are introduced to explain the causes of carbon emission decoupling. The research shows that the carbon emission of energy consumption in China’s mining industry peaked in 2013, and the energy efficiency decoupling in 2001–2014 is the main driver of carbon emission decoupling. The sharp growth of industrial output value leads to the decoupling of energy efficiency. At present, the improvement of energy efficiency of China’s mining industry faces great resistance. At the same time, the inhibition effect of energy efficiency on carbon emissions is limited, and the energy structure will be the main factor to inhibit carbon emissions.
format Article
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institution Kabale University
issn 1687-8094
language English
publishDate 2022-01-01
publisher Wiley
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series Advances in Civil Engineering
spelling doaj-art-176d90107c9b4ed79786f276a2c6be6e2025-02-03T01:23:36ZengWileyAdvances in Civil Engineering1687-80942022-01-01202210.1155/2022/5143501Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy ConsumptionLili Wei0Guangyu Jia1Xiaohui Xu2Lingyun Zhao3School of BusinessSchool of BusinessSchool of BusinessSchool of BusinessWith the world’s consensus on low-carbon emission reduction, all walks of life have formulated low-carbon development goals. As a high-energy consumption industry, it is urgent for mining industry to implement the development strategy of low-carbon emission reduction. Therefore, this study tries to provide reasonable suggestions and references for the low-carbon development of the mining industry. Firstly, this study analyzes the industry development, energy consumption, and carbon emission of mining industry from 2000 to 2020. Then, using the Tapio theory, this study constructs the analysis model of decoupling between carbon emission of mining industry and industry growth. The analysis method of decoupling state assignment is proposed for the first time in the model. At the same time, the energy efficiency decoupling index and energy structure decoupling index are introduced to explain the causes of carbon emission decoupling. The research shows that the carbon emission of energy consumption in China’s mining industry peaked in 2013, and the energy efficiency decoupling in 2001–2014 is the main driver of carbon emission decoupling. The sharp growth of industrial output value leads to the decoupling of energy efficiency. At present, the improvement of energy efficiency of China’s mining industry faces great resistance. At the same time, the inhibition effect of energy efficiency on carbon emissions is limited, and the energy structure will be the main factor to inhibit carbon emissions.http://dx.doi.org/10.1155/2022/5143501
spellingShingle Lili Wei
Guangyu Jia
Xiaohui Xu
Lingyun Zhao
Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
Advances in Civil Engineering
title Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
title_full Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
title_fullStr Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
title_full_unstemmed Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
title_short Construction and Application of Relationship Model between Development of Mining Industry and Carbon Emission of Energy Consumption
title_sort construction and application of relationship model between development of mining industry and carbon emission of energy consumption
url http://dx.doi.org/10.1155/2022/5143501
work_keys_str_mv AT liliwei constructionandapplicationofrelationshipmodelbetweendevelopmentofminingindustryandcarbonemissionofenergyconsumption
AT guangyujia constructionandapplicationofrelationshipmodelbetweendevelopmentofminingindustryandcarbonemissionofenergyconsumption
AT xiaohuixu constructionandapplicationofrelationshipmodelbetweendevelopmentofminingindustryandcarbonemissionofenergyconsumption
AT lingyunzhao constructionandapplicationofrelationshipmodelbetweendevelopmentofminingindustryandcarbonemissionofenergyconsumption