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Comparison of Methods for Calculating Indirect Upstream Carbon Emissions from Information and Communication Technology Manufacturing

Authors :
Jha, Abhishek Kumar Rajesh
Andrae, Anders S. G.
Mainali, Brijesh
Jha, Abhishek Kumar Rajesh
Andrae, Anders S. G.
Mainali, Brijesh
Publication Year :
2023

Abstract

The use of Information Communication technology (ICT) is rapidly increasing in an age ofdigitalization. Measurement of carbon dioxide equivalent (CO2e) emissions from ICT is crucial for reducingthem. Most ICT organizations focus on Scope 1 and 2 emissions as they have greater control over them, commonly ignoring Scope 3 emissions. Scope 3 Category 1 (S3C1) emissions occur throughout the rawmaterial acquisition and manufacturing stages of an ICT product's life cycle accounting for a large portion ofthe sector's overall CO2e emissions and energy consumption. By not reporting Scope 3 emissions, companieslose the ability to reduce their overall CO2e corporate emissions. Although Category 1 and 11 under Scope 3account for 85% of ICT's worldwide CO2e emissions, the methodologies for calculating S3C1 emissions in ICTare understudied. This study focuses on these emissions in the framework of Sustainable Development Goals 9,12, and 13. Product life cycle assessment (PLCA) and Spend-based methods have been used to analyze S3C1emissions in the ICT sector with two case examples of laptop computers and smartphones. The ExcelManagement Life Cycle Assessment (EMLCA) tool has been used for the S3C1 emissions estimation. PLCAand Spend-based methods are compared on their ability to calculate CO2e emissions. It is concluded that theSpend-based is faster than PLCA for predicting ICT emissions with modest uncertainty for smartphone andlaptop components. Furthermore, this work explores the advantages and downsides of both methods.

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1414359103
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.37394.232015.2023.19.99